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Godde, Claus Reinsberger, C. Voelcker-Rehage, and S. Vieluf. “Classification of Visuomotor Tasks Based on Electroencephalographic Data Depends on Age-Related Differences in Brain Activity Patterns.” <i>Neural Networks</i> 142 (2021): 363–74. <a href=\"https://doi.org/10.1016/j.neunet.2021.04.029\">https://doi.org/10.1016/j.neunet.2021.04.029</a>.","mla":"Goelz, C., et al. “Classification of Visuomotor Tasks Based on Electroencephalographic Data Depends on Age-Related Differences in Brain Activity Patterns.” <i>Neural Networks</i>, vol. 142, Elsevier BV, 2021, pp. 363–74, doi:<a href=\"https://doi.org/10.1016/j.neunet.2021.04.029\">10.1016/j.neunet.2021.04.029</a>.","ama":"Goelz C, Mora K, Rudisch J, et al. 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Evaluation of Open-Source and Pre-Trained Deep Convolutional Neural Networks Suitable for Player Detection and Motion Analysis in Squash. . <i>Sensors (Basel)</i>. 2021;21(13):4550."},"publication":"Sensors (Basel)","issue":"13","date_created":"2022-06-07T09:10:15Z","external_id":{"pmid":["34283127"]},"department":[{"_id":"35"},{"_id":"176"},{"_id":"17"}],"type":"journal_article"},{"publication":"8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)","citation":{"ieee":"O. Müller, M. Caron, M. Döring, T. Heuwinkel, and J. Baumeister, “PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data,” presented at the European Conference on Machine Learning and Principles and Practice of Knowledge Discovery (ECML PKDD 2021), Online.","apa":"Müller, O., Caron, M., Döring, M., Heuwinkel, T., &#38; Baumeister, J. (n.d.). PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data. <i>8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)</i>. European Conference on Machine Learning and Principles and Practice of Knowledge Discovery (ECML PKDD 2021), Online.","chicago":"Müller, Oliver, Matthew Caron, Michael Döring, Tim Heuwinkel, and Jochen Baumeister. “PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball Using Tracking Data.” In <i>8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)</i>, n.d.","short":"O. Müller, M. Caron, M. Döring, T. Heuwinkel, J. Baumeister, in: 8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021), n.d.","mla":"Müller, Oliver, et al. “PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball Using Tracking Data.” <i>8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)</i>.","bibtex":"@inproceedings{Müller_Caron_Döring_Heuwinkel_Baumeister, title={PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data}, booktitle={8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)}, author={Müller, Oliver and Caron, Matthew and Döring, Michael and Heuwinkel, Tim and Baumeister, Jochen} }","ama":"Müller O, Caron M, Döring M, Heuwinkel T, Baumeister J. PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data. In: <i>8th Workshop on Machine Learning and Data Mining for Sports Analytics (ECML PKDD 2021)</i>."},"abstract":[{"lang":"eng","text":"Over the last years, several approaches for the data-driven estimation of expected possession value (EPV) in basketball and association football (soccer) have been proposed. In this paper, we develop and evaluate PIVOT: the first such framework for team handball. Accounting for the fast-paced, dynamic nature and relative data scarcity of hand- ball, we propose a parsimonious end-to-end deep learning architecture that relies solely on tracking data. This efficient approach is capable of predicting the probability that a team will score within the near future given the fine-grained spatio-temporal distribution of all players and the ball over the last seconds of the game. Our experiments indicate that PIVOT is able to produce accurate and calibrated probability estimates, even when trained on a relatively small dataset. We also showcase two interactive applications of PIVOT for valuing actual and counterfactual player decisions and actions in real-time."}],"date_created":"2021-09-16T08:33:04Z","type":"conference","keyword":["expected possession value","handball","tracking data","time series classification","deep learning"],"department":[{"_id":"196"},{"_id":"172"}],"title":"PIVOT: A Parsimonious End-to-End Learning Framework for Valuing Player Actions in Handball using Tracking Data","status":"public","year":"2021","author":[{"id":"72849","last_name":"Müller","first_name":"Oliver","full_name":"Müller, Oliver"},{"id":"60721","first_name":"Matthew","last_name":"Caron","full_name":"Caron, Matthew"},{"full_name":"Döring, Michael","last_name":"Döring","first_name":"Michael"},{"last_name":"Heuwinkel","first_name":"Tim","full_name":"Heuwinkel, Tim"},{"id":"46","full_name":"Baumeister, Jochen","first_name":"Jochen","orcid":"0000-0003-2683-5826","last_name":"Baumeister"}],"conference":{"location":"Online","name":"European Conference on Machine Learning and Principles and Practice of Knowledge Discovery (ECML PKDD 2021)","start_date":"2021-09-13","end_date":"2021-09-17"},"publication_status":"inpress","date_updated":"2023-02-28T08:58:24Z","main_file_link":[{"url":"https://dtai.cs.kuleuven.be/events/MLSA21/papers/MLSA21_paper_muller.pdf"}],"_id":"24547","language":[{"iso":"eng"}],"user_id":"60721"},{"citation":{"chicago":"Sherman, David A., Tim Lehmann, Jochen Baumeister, Dustin R. Grooms, and Grant E. Norte. “Somatosensory Perturbations Influence Cortical Activity Associated with Single-Limb Balance Performance.” <i>Experimental Brain Research</i> 240, no. 2 (2021): 407–20. <a href=\"https://doi.org/10.1007/s00221-021-06260-z\">https://doi.org/10.1007/s00221-021-06260-z</a>.","short":"D.A. Sherman, T. Lehmann, J. Baumeister, D.R. Grooms, G.E. Norte, Experimental Brain Research 240 (2021) 407–420.","apa":"Sherman, D. A., Lehmann, T., Baumeister, J., Grooms, D. R., &#38; Norte, G. E. (2021). Somatosensory perturbations influence cortical activity associated with single-limb balance performance. <i>Experimental Brain Research</i>, <i>240</i>(2), 407–420. <a href=\"https://doi.org/10.1007/s00221-021-06260-z\">https://doi.org/10.1007/s00221-021-06260-z</a>","ieee":"D. A. Sherman, T. Lehmann, J. Baumeister, D. R. Grooms, and G. E. Norte, “Somatosensory perturbations influence cortical activity associated with single-limb balance performance,” <i>Experimental Brain Research</i>, vol. 240, no. 2, pp. 407–420, 2021, doi: <a href=\"https://doi.org/10.1007/s00221-021-06260-z\">10.1007/s00221-021-06260-z</a>.","ama":"Sherman DA, Lehmann T, Baumeister J, Grooms DR, Norte GE. Somatosensory perturbations influence cortical activity associated with single-limb balance performance. <i>Experimental Brain Research</i>. 2021;240(2):407-420. doi:<a href=\"https://doi.org/10.1007/s00221-021-06260-z\">10.1007/s00221-021-06260-z</a>","bibtex":"@article{Sherman_Lehmann_Baumeister_Grooms_Norte_2021, title={Somatosensory perturbations influence cortical activity associated with single-limb balance performance}, volume={240}, DOI={<a href=\"https://doi.org/10.1007/s00221-021-06260-z\">10.1007/s00221-021-06260-z</a>}, number={2}, journal={Experimental Brain Research}, publisher={Springer Science and Business Media LLC}, author={Sherman, David A. and Lehmann, Tim and Baumeister, Jochen and Grooms, Dustin R. and Norte, Grant E.}, year={2021}, pages={407–420} }","mla":"Sherman, David A., et al. “Somatosensory Perturbations Influence Cortical Activity Associated with Single-Limb Balance Performance.” <i>Experimental Brain Research</i>, vol. 240, no. 2, Springer Science and Business Media LLC, 2021, pp. 407–20, doi:<a href=\"https://doi.org/10.1007/s00221-021-06260-z\">10.1007/s00221-021-06260-z</a>."},"page":"407-420","publisher":"Springer Science and Business Media LLC","_id":"32437","user_id":"46","volume":240,"status":"public","date_created":"2022-07-27T07:49:07Z","type":"journal_article","keyword":["General Neuroscience"],"department":[{"_id":"17"},{"_id":"172"}],"publication":"Experimental Brain Research","issue":"2","language":[{"iso":"eng"}],"doi":"10.1007/s00221-021-06260-z","title":"Somatosensory perturbations influence cortical activity associated with single-limb balance performance","year":"2021","author":[{"full_name":"Sherman, David A.","last_name":"Sherman","first_name":"David A."},{"id":"41584","first_name":"Tim","last_name":"Lehmann","full_name":"Lehmann, Tim"},{"id":"46","orcid":"0000-0003-2683-5826","last_name":"Baumeister","first_name":"Jochen","full_name":"Baumeister, Jochen"},{"full_name":"Grooms, Dustin R.","first_name":"Dustin R.","last_name":"Grooms"},{"last_name":"Norte","first_name":"Grant E.","full_name":"Norte, Grant E."}],"publication_identifier":{"issn":["0014-4819","1432-1106"]},"publication_status":"published","date_updated":"2023-03-13T15:18:55Z","intvolume":"       240"},{"citation":{"short":"D.A. Sherman, T. Lehmann, J. Baumeister, A. Gokeler, L. Donovan, G.E. Norte, Physical Therapy (2021).","chicago":"Sherman, David A, Tim Lehmann, Jochen Baumeister, Alli Gokeler, Luke Donovan, and Grant E Norte. “External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance.” <i>Physical Therapy</i>, 2021. <a href=\"https://doi.org/10.1093/ptj/pzab223\">https://doi.org/10.1093/ptj/pzab223</a>.","apa":"Sherman, D. A., Lehmann, T., Baumeister, J., Gokeler, A., Donovan, L., &#38; Norte, G. E. (2021). External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance. <i>Physical Therapy</i>. <a href=\"https://doi.org/10.1093/ptj/pzab223\">https://doi.org/10.1093/ptj/pzab223</a>","ieee":"D. A. Sherman, T. Lehmann, J. Baumeister, A. Gokeler, L. Donovan, and G. E. Norte, “External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance,” <i>Physical Therapy</i>, 2021, doi: <a href=\"https://doi.org/10.1093/ptj/pzab223\">10.1093/ptj/pzab223</a>.","ama":"Sherman DA, Lehmann T, Baumeister J, Gokeler A, Donovan L, Norte GE. External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance. <i>Physical Therapy</i>. Published online 2021. doi:<a href=\"https://doi.org/10.1093/ptj/pzab223\">10.1093/ptj/pzab223</a>","bibtex":"@article{Sherman_Lehmann_Baumeister_Gokeler_Donovan_Norte_2021, title={External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance}, DOI={<a href=\"https://doi.org/10.1093/ptj/pzab223\">10.1093/ptj/pzab223</a>}, journal={Physical Therapy}, publisher={Oxford University Press (OUP)}, author={Sherman, David A and Lehmann, Tim and Baumeister, Jochen and Gokeler, Alli and Donovan, Luke and Norte, Grant E}, year={2021} }","mla":"Sherman, David A., et al. “External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance.” <i>Physical Therapy</i>, Oxford University Press (OUP), 2021, doi:<a href=\"https://doi.org/10.1093/ptj/pzab223\">10.1093/ptj/pzab223</a>."},"publication":"Physical Therapy","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title>\r\n               <jats:sec>\r\n                  <jats:title>Objective</jats:title>\r\n                  <jats:p>External focus (EF) of attention leads to improved balance performance. Consideration of the neuromodulatory effects of EF may inform its clinical utility in addressing neuroplastic impairments after musculoskeletal injuries. We aimed to determine whether electrocortical activity and balance performance changed with attentional foci that prioritized differing sensory feedback and whether changes in electrocortical activity and balance were associated.</jats:p>\r\n               </jats:sec>\r\n               <jats:sec>\r\n                  <jats:title>Methods</jats:title>\r\n                  <jats:p>Individuals who were healthy (n = 15) performed a single-limb balance task under 3 conditions: internal focus (IF), somatosensory focus [EF with a baton (EF-baton)], and visual focus [EF with a laser (EF-laser)]. Electrocortical activity and postural sway were recorded concurrently using electroencephalography and a triaxial force plate. Electroencephalographic signals were decomposed, localized, and clustered to generate power spectral density in θ and α-2 frequency bands. Postural sway signals were analyzed with center-of-pressure sway metrics (eg, area, distance, velocity) and knee angle. The relationship between percent change in clustered brain activity and task performance metrics was assessed.</jats:p>\r\n               </jats:sec>\r\n               <jats:sec>\r\n                  <jats:title>Results</jats:title>\r\n                  <jats:p>Both EF conditions resulted in increased cortical activity and improved balance performance compared to IF. EF-laser had the largest effect, demonstrating increased frontal θ power (d = 0.64), decreased central θ power (d = −0.30), and decreased bilateral motor, bilateral parietal, and occipital α-2 power (d = −1.38 to −4.27) as well as a shorter path distance (d = −0.94) and a deeper (d = 0.70) and less variable (d = −1.15) knee angle than IF. Weak to moderate associations exist between increases in cortical activity and improved balance performance (ρ = 0.405–0.584).</jats:p>\r\n               </jats:sec>\r\n               <jats:sec>\r\n                  <jats:title>Conclusions</jats:title>\r\n                  <jats:p>EF resulted in increased cortical activity associated with cognitive, motor, somatosensory, and visual processing. EF-laser, which prioritized visual feedback, had the largest and broadest effects. Changes in cortical activity resulting from EF were independently associated with improved balance performance.</jats:p>\r\n               </jats:sec>\r\n               <jats:sec>\r\n                  <jats:title>Impact</jats:title>\r\n                  <jats:p>This study demonstrates that goal-oriented attention results in functional increases in brain activity compared to internally directed self-focus. These results suggest EF may target neurophysiologic impairments and improve balance in clinical populations.</jats:p>\r\n               </jats:sec>"}],"date_created":"2022-11-07T11:57:53Z","department":[{"_id":"17"},{"_id":"172"}],"keyword":["Physical Therapy","Sports Therapy and Rehabilitation"],"type":"journal_article","author":[{"full_name":"Sherman, David A","first_name":"David A","last_name":"Sherman"},{"id":"41584","last_name":"Lehmann","first_name":"Tim","full_name":"Lehmann, Tim"},{"id":"46","full_name":"Baumeister, Jochen","last_name":"Baumeister","orcid":"0000-0003-2683-5826","first_name":"Jochen"},{"full_name":"Gokeler, Alli","first_name":"Alli","last_name":"Gokeler"},{"full_name":"Donovan, Luke","first_name":"Luke","last_name":"Donovan"},{"last_name":"Norte","first_name":"Grant E","full_name":"Norte, Grant E"}],"publication_identifier":{"issn":["0031-9023","1538-6724"]},"year":"2021","title":"External Focus of Attention Influences Cortical Activity Associated with Single Limb Balance Performance","status":"public","publication_status":"published","date_updated":"2023-03-13T15:07:10Z","_id":"34024","language":[{"iso":"eng"}],"publisher":"Oxford University Press (OUP)","user_id":"46","doi":"10.1093/ptj/pzab223"},{"date_created":"2022-07-27T07:47:56Z","type":"journal_article","keyword":["Behavioral Neuroscience","Biological Psychiatry","Psychiatry and Mental health","Neurology","Neuropsychology and Physiological Psychology"],"department":[{"_id":"17"},{"_id":"172"}],"publication":"Frontiers in Human Neuroscience","abstract":[{"lang":"eng","text":"<jats:p>Whereas initial findings have already identified cortical patterns accompanying proprioceptive deficiencies in patients after anterior cruciate ligament reconstruction (ACLR), little is known about compensatory sensorimotor mechanisms for re-establishing postural control. Therefore, the aim of the present study was to explore leg dependent patterns of cortical contributions to postural control in patients 6 weeks following ACLR. A total of 12 patients after ACLR (25.1 ± 3.2 years, 178.1 ± 9.7 cm, 77.5 ± 14.4 kg) and another 12 gender, age, and activity matched healthy controls participated in this study. All subjects performed 10 × 30 s. single leg stances on each leg, equipped with 64-channel mobile electroencephalography (EEG). Postural stability was quantified by area of sway and sway velocity. Estimations of the weighted phase lag index were conducted as a cortical measure of functional connectivity. The findings showed significant group × leg interactions for increased functional connectivity in the anterior cruciate ligament (ACL) injured leg, predominantly including fronto−parietal [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 8.41, <jats:italic>p</jats:italic> ≤ 0.008, η<jats:sup>2</jats:sup> = 0.28], fronto−occipital [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 4.43, <jats:italic>p</jats:italic> ≤ 0.047, η<jats:sup>2</jats:sup> = 0.17], parieto−motor [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 10.30, <jats:italic>p</jats:italic> ≤ 0.004, η<jats:sup>2</jats:sup> = 0.32], occipito−motor [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 5.21, <jats:italic>p</jats:italic> ≤ 0.032, η<jats:sup>2</jats:sup> = 0.19], and occipito−parietal [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 4.60, <jats:italic>p</jats:italic> ≤ 0.043, η<jats:sup>2</jats:sup> = 0.17] intra−hemispherical connections in the contralateral hemisphere and occipito−motor [<jats:italic>F</jats:italic><jats:sub>(1, 22)</jats:sub> = 7.33, <jats:italic>p</jats:italic> ≤ 0.013, η<jats:sup>2</jats:sup> = 0.25] on the ipsilateral hemisphere to the injured leg. Higher functional connectivity in patients after ACLR, attained by increased emphasis of functional connections incorporating the somatosensory and visual areas, may serve as a compensatory mechanism to control postural stability of the injured leg in the early phase of rehabilitation. These preliminary results may help to develop new neurophysiological assessments for detecting functional deficiencies after ACLR in the future.</jats:p>"}],"language":[{"iso":"eng"}],"doi":"10.3389/fnhum.2021.655116","title":"Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction","year":"2021","publication_identifier":{"issn":["1662-5161"]},"author":[{"id":"41584","last_name":"Lehmann","first_name":"Tim","full_name":"Lehmann, Tim"},{"full_name":"Büchel, Daniel","first_name":"Daniel","last_name":"Büchel","id":"41088"},{"last_name":"Mouton","first_name":"Caroline","full_name":"Mouton, Caroline"},{"first_name":"Alli","last_name":"Gokeler","full_name":"Gokeler, Alli"},{"first_name":"Romain","last_name":"Seil","full_name":"Seil, Romain"},{"id":"46","first_name":"Jochen","orcid":"0000-0003-2683-5826","last_name":"Baumeister","full_name":"Baumeister, Jochen"}],"date_updated":"2023-03-13T15:20:11Z","publication_status":"published","intvolume":"        15","citation":{"bibtex":"@article{Lehmann_Büchel_Mouton_Gokeler_Seil_Baumeister_2021, title={Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction}, volume={15}, DOI={<a href=\"https://doi.org/10.3389/fnhum.2021.655116\">10.3389/fnhum.2021.655116</a>}, journal={Frontiers in Human Neuroscience}, publisher={Frontiers Media SA}, author={Lehmann, Tim and Büchel, Daniel and Mouton, Caroline and Gokeler, Alli and Seil, Romain and Baumeister, Jochen}, year={2021} }","ama":"Lehmann T, Büchel D, Mouton C, Gokeler A, Seil R, Baumeister J. Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction. <i>Frontiers in Human Neuroscience</i>. 2021;15. doi:<a href=\"https://doi.org/10.3389/fnhum.2021.655116\">10.3389/fnhum.2021.655116</a>","mla":"Lehmann, Tim, et al. “Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction.” <i>Frontiers in Human Neuroscience</i>, vol. 15, Frontiers Media SA, 2021, doi:<a href=\"https://doi.org/10.3389/fnhum.2021.655116\">10.3389/fnhum.2021.655116</a>.","chicago":"Lehmann, Tim, Daniel Büchel, Caroline Mouton, Alli Gokeler, Romain Seil, and Jochen Baumeister. “Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction.” <i>Frontiers in Human Neuroscience</i> 15 (2021). <a href=\"https://doi.org/10.3389/fnhum.2021.655116\">https://doi.org/10.3389/fnhum.2021.655116</a>.","short":"T. Lehmann, D. Büchel, C. Mouton, A. Gokeler, R. Seil, J. Baumeister, Frontiers in Human Neuroscience 15 (2021).","ieee":"T. Lehmann, D. Büchel, C. Mouton, A. Gokeler, R. Seil, and J. Baumeister, “Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction,” <i>Frontiers in Human Neuroscience</i>, vol. 15, 2021, doi: <a href=\"https://doi.org/10.3389/fnhum.2021.655116\">10.3389/fnhum.2021.655116</a>.","apa":"Lehmann, T., Büchel, D., Mouton, C., Gokeler, A., Seil, R., &#38; Baumeister, J. (2021). Functional Cortical Connectivity Related to Postural Control in Patients Six Weeks After Anterior Cruciate Ligament Reconstruction. <i>Frontiers in Human Neuroscience</i>, <i>15</i>. <a href=\"https://doi.org/10.3389/fnhum.2021.655116\">https://doi.org/10.3389/fnhum.2021.655116</a>"},"_id":"32434","publisher":"Frontiers Media SA","user_id":"46","volume":15,"status":"public"},{"volume":239,"user_id":"46","publisher":"Springer Science and Business Media LLC","_id":"32435","page":"1193-1202","status":"public","citation":{"mla":"Büchel, Daniel, et al. “Stance Leg and Surface Stability Modulate Cortical Activity during Human Single Leg Stance.” <i>Experimental Brain Research</i>, vol. 239, no. 4, Springer Science and Business Media LLC, 2021, pp. 1193–202, doi:<a href=\"https://doi.org/10.1007/s00221-021-06035-6\">10.1007/s00221-021-06035-6</a>.","bibtex":"@article{Büchel_Lehmann_Ullrich_Cockcroft_Louw_Baumeister_2021, title={Stance leg and surface stability modulate cortical activity during human single leg stance}, volume={239}, DOI={<a href=\"https://doi.org/10.1007/s00221-021-06035-6\">10.1007/s00221-021-06035-6</a>}, number={4}, journal={Experimental Brain Research}, publisher={Springer Science and Business Media LLC}, author={Büchel, Daniel and Lehmann, Tim and Ullrich, Sarah and Cockcroft, John and Louw, Quinette and Baumeister, Jochen}, year={2021}, pages={1193–1202} }","ama":"Büchel D, Lehmann T, Ullrich S, Cockcroft J, Louw Q, Baumeister J. Stance leg and surface stability modulate cortical activity during human single leg stance. <i>Experimental Brain Research</i>. 2021;239(4):1193-1202. doi:<a href=\"https://doi.org/10.1007/s00221-021-06035-6\">10.1007/s00221-021-06035-6</a>","ieee":"D. Büchel, T. Lehmann, S. Ullrich, J. Cockcroft, Q. Louw, and J. Baumeister, “Stance leg and surface stability modulate cortical activity during human single leg stance,” <i>Experimental Brain Research</i>, vol. 239, no. 4, pp. 1193–1202, 2021, doi: <a href=\"https://doi.org/10.1007/s00221-021-06035-6\">10.1007/s00221-021-06035-6</a>.","apa":"Büchel, D., Lehmann, T., Ullrich, S., Cockcroft, J., Louw, Q., &#38; Baumeister, J. (2021). Stance leg and surface stability modulate cortical activity during human single leg stance. <i>Experimental Brain Research</i>, <i>239</i>(4), 1193–1202. <a href=\"https://doi.org/10.1007/s00221-021-06035-6\">https://doi.org/10.1007/s00221-021-06035-6</a>","short":"D. Büchel, T. Lehmann, S. Ullrich, J. Cockcroft, Q. Louw, J. Baumeister, Experimental Brain Research 239 (2021) 1193–1202.","chicago":"Büchel, Daniel, Tim Lehmann, Sarah Ullrich, John Cockcroft, Quinette Louw, and Jochen Baumeister. “Stance Leg and Surface Stability Modulate Cortical Activity during Human Single Leg Stance.” <i>Experimental Brain Research</i> 239, no. 4 (2021): 1193–1202. <a href=\"https://doi.org/10.1007/s00221-021-06035-6\">https://doi.org/10.1007/s00221-021-06035-6</a>."},"doi":"10.1007/s00221-021-06035-6","language":[{"iso":"eng"}],"intvolume":"       239","publication_status":"published","date_updated":"2023-03-13T15:19:44Z","publication_identifier":{"issn":["0014-4819","1432-1106"]},"author":[{"first_name":"Daniel","last_name":"Büchel","full_name":"Büchel, Daniel","id":"41088"},{"full_name":"Lehmann, Tim","last_name":"Lehmann","first_name":"Tim","id":"41584"},{"first_name":"Sarah","last_name":"Ullrich","full_name":"Ullrich, Sarah"},{"first_name":"John","last_name":"Cockcroft","full_name":"Cockcroft, John"},{"first_name":"Quinette","last_name":"Louw","full_name":"Louw, Quinette"},{"full_name":"Baumeister, Jochen","first_name":"Jochen","last_name":"Baumeister","orcid":"0000-0003-2683-5826","id":"46"}],"title":"Stance leg and surface stability modulate cortical activity during human single leg stance","year":"2021","department":[{"_id":"17"},{"_id":"172"}],"type":"journal_article","keyword":["General Neuroscience"],"date_created":"2022-07-27T07:48:10Z","abstract":[{"text":"<jats:title>Abstract </jats:title><jats:p>Mobile Electroencephalography (EEG) provides insights into cortical contributions to postural control. Although changes in theta (4–8 Hz) and alpha frequency power (8–12 Hz) were shown to reflect attentional and sensorimotor processing during balance tasks, information about the effect of stance leg on cortical processing related to postural control is lacking. Therefore, the aim was to examine patterns of cortical activity during single-leg stance with varying surface stability. EEG and force plate data from 21 healthy males (22.43 ± 2.23 years) was recorded during unipedal stance (left/right) on a stable and unstable surface. Using source-space analysis, power spectral density was analyzed in the theta, alpha-1 (8–10 Hz) and alpha-2 (10–12 Hz) frequency bands. Repeated measures ANOVA with the factors leg and surface stability revealed significant interaction effects in the left (<jats:italic>p</jats:italic> = 0.045, <jats:italic>η</jats:italic><jats:sub><jats:italic>p</jats:italic></jats:sub><jats:sup>2</jats:sup> = 0.13) and right motor clusters (<jats:italic>F</jats:italic> = 16.156; <jats:italic>p</jats:italic> = 0.001, <jats:italic>η</jats:italic><jats:sub><jats:italic>p</jats:italic></jats:sub><jats:sup>2</jats:sup> = 0.41). Furthermore, significant main effects for surface stability were observed for the fronto-central cluster (theta), left and right motor (alpha-1), as well as for the right parieto-occipital cluster (alpha-1/alpha-2). Leg dependent changes in alpha-2 power may indicate lateralized patterns of cortical processing in motor areas during single-leg stance. Future studies may therefore consider lateralized patterns of cortical activity for the interpretation of postural deficiencies in unilateral lower limb injuries.</jats:p>","lang":"eng"}],"publication":"Experimental Brain Research","issue":"4"},{"user_id":"46","volume":11,"_id":"35626","publisher":"Springer Science and Business Media LLC","status":"public","citation":{"short":"D. Büchel, T. Lehmann, Ø. Sandbakk, J. Baumeister, Scientific Reports 11 (2021).","chicago":"Büchel, Daniel, Tim Lehmann, Øyvind Sandbakk, and Jochen Baumeister. “EEG‑derived Brain Graphs Are Reliable Measures for Exploring Exercise‑induced Changes in Brain Networks.” <i>Scientific Reports</i> 11, no. 1 (2021). <a href=\"https://doi.org/10.1038/s41598-021-01494-x\">https://doi.org/10.1038/s41598-021-01494-x</a>.","ieee":"D. Büchel, T. Lehmann, Ø. Sandbakk, and J. Baumeister, “EEG‑derived brain graphs are reliable measures for exploring exercise‑induced changes in brain networks,” <i>Scientific Reports</i>, vol. 11, no. 1, Art. no. 21868, 2021, doi: <a href=\"https://doi.org/10.1038/s41598-021-01494-x\">10.1038/s41598-021-01494-x</a>.","apa":"Büchel, D., Lehmann, T., Sandbakk, Ø., &#38; Baumeister, J. (2021). EEG‑derived brain graphs are reliable measures for exploring exercise‑induced changes in brain networks. <i>Scientific Reports</i>, <i>11</i>(1), Article 21868. <a href=\"https://doi.org/10.1038/s41598-021-01494-x\">https://doi.org/10.1038/s41598-021-01494-x</a>","bibtex":"@article{Büchel_Lehmann_Sandbakk_Baumeister_2021, title={EEG‑derived brain graphs are reliable measures for exploring exercise‑induced changes in brain networks}, volume={11}, DOI={<a href=\"https://doi.org/10.1038/s41598-021-01494-x\">10.1038/s41598-021-01494-x</a>}, number={121868}, journal={Scientific Reports}, publisher={Springer Science and Business Media LLC}, author={Büchel, Daniel and Lehmann, Tim and Sandbakk, Øyvind and Baumeister, Jochen}, year={2021} }","ama":"Büchel D, Lehmann T, Sandbakk Ø, Baumeister J. EEG‑derived brain graphs are reliable measures for exploring exercise‑induced changes in brain networks. <i>Scientific Reports</i>. 2021;11(1). doi:<a href=\"https://doi.org/10.1038/s41598-021-01494-x\">10.1038/s41598-021-01494-x</a>","mla":"Büchel, Daniel, et al. “EEG‑derived Brain Graphs Are Reliable Measures for Exploring Exercise‑induced Changes in Brain Networks.” <i>Scientific Reports</i>, vol. 11, no. 1, 21868, Springer Science and Business Media LLC, 2021, doi:<a href=\"https://doi.org/10.1038/s41598-021-01494-x\">10.1038/s41598-021-01494-x</a>."},"doi":"10.1038/s41598-021-01494-x","article_number":"21868","language":[{"iso":"eng"}],"date_updated":"2023-03-13T15:21:32Z","publication_status":"published","intvolume":"        11","title":"EEG‑derived brain graphs are reliable measures for exploring exercise‑induced changes in brain networks","year":"2021","publication_identifier":{"issn":["2045-2322"]},"author":[{"first_name":"Daniel","last_name":"Büchel","full_name":"Büchel, Daniel","id":"41088"},{"id":"41584","first_name":"Tim","last_name":"Lehmann","full_name":"Lehmann, Tim"},{"full_name":"Sandbakk, Øyvind","first_name":"Øyvind","last_name":"Sandbakk"},{"full_name":"Baumeister, Jochen","orcid":"0000-0003-2683-5826","last_name":"Baumeister","first_name":"Jochen","id":"46"}],"keyword":["Multidisciplinary"],"type":"journal_article","department":[{"_id":"17"},{"_id":"172"}],"date_created":"2023-01-10T06:42:31Z","publication":"Scientific Reports","issue":"1"},{"publication":"-","file_date_updated":"2023-03-14T11:23:49Z","citation":{"short":"J. Möhring, A. Krumhöfner, E.G.S.I.M. Gräfin von Plettenberg, - (2021).","chicago":"Möhring, Julia, Anika Krumhöfner, and Elisabeth Gudila Sophia Ida Maria Gräfin von Plettenberg. “Bewegungsförderung in Ganztagsschulen.” <i>-</i>, 2021.","apa":"Möhring, J., Krumhöfner, A., &#38; Gräfin von Plettenberg, E. G. S. I. M. (2021). Bewegungsförderung in Ganztagsschulen. <i>-</i>.","ieee":"J. Möhring, A. Krumhöfner, and E. G. S. I. M. Gräfin von Plettenberg, “Bewegungsförderung in Ganztagsschulen,” <i>-</i>, 2021.","ama":"Möhring J, Krumhöfner A, Gräfin von Plettenberg EGSIM. Bewegungsförderung in Ganztagsschulen. <i>-</i>. Published online 2021.","bibtex":"@article{Möhring_Krumhöfner_Gräfin von Plettenberg_2021, title={Bewegungsförderung in Ganztagsschulen}, journal={-}, publisher={Reinhard Mohn Stiftung, Kreissportbund Gütersloh e.V., Bezirksregierung Detmold}, author={Möhring, Julia and Krumhöfner, Anika and Gräfin von Plettenberg, Elisabeth Gudila Sophia Ida Maria}, year={2021} }","mla":"Möhring, Julia, et al. “Bewegungsförderung in Ganztagsschulen.” <i>-</i>, Reinhard Mohn Stiftung, Kreissportbund Gütersloh e.V., Bezirksregierung Detmold, 2021."},"type":"journal_article","oa":"1","department":[{"_id":"718"},{"_id":"17"},{"_id":"318"}],"file":[{"access_level":"open_access","file_size":11015744,"file_name":"Ratgeber_Bewegungsfoerderung_in_Ganztagsschulen.pdf.pdf","date_updated":"2023-03-14T11:23:49Z","relation":"main_file","content_type":"application/pdf","file_id":"43017","creator":"gudila","date_created":"2023-03-14T11:23:49Z"}],"date_created":"2023-03-14T11:24:13Z","date_updated":"2023-03-15T08:42:15Z","has_accepted_license":"1","status":"public","title":"Bewegungsförderung in Ganztagsschulen","year":"2021","author":[{"first_name":"Julia","last_name":"Möhring","full_name":"Möhring, Julia","id":"77400"},{"full_name":"Krumhöfner, Anika","last_name":"Krumhöfner","first_name":"Anika"},{"id":"68238","first_name":"Elisabeth Gudila Sophia Ida Maria","last_name":"Gräfin von Plettenberg","full_name":"Gräfin von Plettenberg, Elisabeth Gudila Sophia Ida Maria"}],"ddc":["370"],"user_id":"68238","alternative_title":["Ratgeber zur Gestaltung und Umsetzung qualitativ hochwertiger Bewegungs-, Spiel-, und Sportangebote außerhalb des Fach- und Sportunterrichts"],"_id":"43016","publisher":"Reinhard Mohn Stiftung, Kreissportbund Gütersloh e.V., Bezirksregierung Detmold","language":[{"iso":"ger"}]},{"date_created":"2023-01-21T13:35:23Z","department":[{"_id":"266"},{"_id":"17"}],"keyword":["Physical Therapy","Sports Therapy and Rehabilitation","Orthopedics and Sports Medicine"],"type":"journal_article","publication":"German Journal of Exercise and Sport Research","issue":"3","abstract":[{"text":"<jats:title>Zusammenfassung</jats:title><jats:p>Jegliche Art von Emotionen im Sport spielen vor allem in Wettkampfsituationen eine bedeutende Rolle, wenn es darum geht, zu einem bestimmten Zeitpunkt die optimale Leistung abzurufen. Emotionen können Auswirkungen auf der physiologischen, perzeptuell-kognitiven oder behavioralen Ebenen haben. Daher bildet den Schwerpunkt des vorliegenden Scoping-Reviews, die Untersuchung der Bedeutung wettkampfbezogener (state) Emotionen von Sporttreibenden. Die Literaturrecherche ergab 1126 Arbeiten, aus denen 15 Studien die Einschlusskriterien erfüllten. Diese wurden hinsichtlich ihrer Themenschwerpunkte betrachtet: 1) Emotionen, Kognitionen und Angst; 2) Emotionen, Leistungsbeurteilung und Stress; 3) Emotionen und Leistungsziele; 4) Unterschiede emotionaler Ausprägung im Geschlecht und Leistungsniveau; 5) Einfluss von Kausalzuschreibungen auf die Emotionen. Anschließend wurden die in den vorgestellten Studien verwendeten emotionserfassenden Messinstrumente betrachtet und vorgestellt. Zusammengefasst erscheint die Erfassung wettkampfbezogener (state) Emotionen rund um das sportliche Geschehen (vor, während, danach) ein wesentlicher Bestandteil der angewandten Sportpsychologie, davon abgeleiteter Emotionsregulationsstrategien und somit der optimalen Leistungserbringung zu sein, auch wenn der (deutschsprachigen) sportpsychologischen Praxis bisher nur begrenzte validierte Messinstrumente vorliegen.</jats:p>","lang":"eng"}],"language":[{"iso":"ger"}],"doi":"10.1007/s12662-021-00772-0","author":[{"first_name":"Änne","last_name":"Wetzel","full_name":"Wetzel, Änne"},{"id":"52931","full_name":"Güldenpenning, Iris","first_name":"Iris","last_name":"Güldenpenning","orcid":"0000-0003-0549-5543"},{"id":"36388","first_name":"Matthias","last_name":"Weigelt","full_name":"Weigelt, Matthias"}],"publication_identifier":{"issn":["2509-3142","2509-3150"]},"title":"Wettkampfbezogene Emotionen im Sport – ein Scoping-Review","year":"2021","intvolume":"        52","publication_status":"published","date_updated":"2023-09-12T09:09:03Z","citation":{"mla":"Wetzel, Änne, et al. “Wettkampfbezogene Emotionen im Sport – ein Scoping-Review.” <i>German Journal of Exercise and Sport Research</i>, vol. 52, no. 3, Springer Science and Business Media LLC, 2021, pp. 419–32, doi:<a href=\"https://doi.org/10.1007/s12662-021-00772-0\">10.1007/s12662-021-00772-0</a>.","ama":"Wetzel Ä, Güldenpenning I, Weigelt M. Wettkampfbezogene Emotionen im Sport – ein Scoping-Review. <i>German Journal of Exercise and Sport Research</i>. 2021;52(3):419-432. doi:<a href=\"https://doi.org/10.1007/s12662-021-00772-0\">10.1007/s12662-021-00772-0</a>","bibtex":"@article{Wetzel_Güldenpenning_Weigelt_2021, title={Wettkampfbezogene Emotionen im Sport – ein Scoping-Review}, volume={52}, DOI={<a href=\"https://doi.org/10.1007/s12662-021-00772-0\">10.1007/s12662-021-00772-0</a>}, number={3}, journal={German Journal of Exercise and Sport Research}, publisher={Springer Science and Business Media LLC}, author={Wetzel, Änne and Güldenpenning, Iris and Weigelt, Matthias}, year={2021}, pages={419–432} }","apa":"Wetzel, Ä., Güldenpenning, I., &#38; Weigelt, M. (2021). Wettkampfbezogene Emotionen im Sport – ein Scoping-Review. <i>German Journal of Exercise and Sport Research</i>, <i>52</i>(3), 419–432. <a href=\"https://doi.org/10.1007/s12662-021-00772-0\">https://doi.org/10.1007/s12662-021-00772-0</a>","ieee":"Ä. Wetzel, I. Güldenpenning, and M. Weigelt, “Wettkampfbezogene Emotionen im Sport – ein Scoping-Review,” <i>German Journal of Exercise and Sport Research</i>, vol. 52, no. 3, pp. 419–432, 2021, doi: <a href=\"https://doi.org/10.1007/s12662-021-00772-0\">10.1007/s12662-021-00772-0</a>.","chicago":"Wetzel, Änne, Iris Güldenpenning, and Matthias Weigelt. “Wettkampfbezogene Emotionen im Sport – ein Scoping-Review.” <i>German Journal of Exercise and Sport Research</i> 52, no. 3 (2021): 419–32. <a href=\"https://doi.org/10.1007/s12662-021-00772-0\">https://doi.org/10.1007/s12662-021-00772-0</a>.","short":"Ä. Wetzel, I. Güldenpenning, M. Weigelt, German Journal of Exercise and Sport Research 52 (2021) 419–432."},"quality_controlled":"1","_id":"37830","publisher":"Springer Science and Business Media LLC","page":"419-432","volume":52,"user_id":"80673","status":"public"},{"publication":"Experimental Psychology","issue":"6","abstract":[{"text":"<jats:p> Abstract. In several kinds of sports, deceptive actions are used to hinder the anticipation performance of an opponent. During a head fake in basketball, a player turns the head to one side but passes the ball to the other side. A pass with a head fake generates a head-fake effect in the observer, which is characterized by slower and more error-prone responses to the pass direction as compared to passes without a head fake. Whereas the head-fake effect has been replicated several times, the question of its origin with dynamic stimuli has not been answered yet. The present study includes four experiments, which are conducted to examine the perceptual-cognitive mechanism underlying the effect by using the model of dimensional overlap ( Kornblum et al., 1990 ) and the additive factors logic ( Sternberg, 1969 ). Results point to multiple processes contributing to the head-fake effect for dynamic stimuli, which operate not only at a perceptual level but also at a level of response selection. </jats:p>","lang":"eng"}],"date_created":"2023-01-20T14:28:14Z","keyword":["General Psychology","Arts and Humanities (miscellaneous)","Experimental and Cognitive Psychology","General Medicine"],"type":"journal_article","department":[{"_id":"266"},{"_id":"17"}],"year":"2021","title":"Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports","publication_identifier":{"issn":["1618-3169","2190-5142"]},"author":[{"full_name":"Polzien, Andrea","last_name":"Polzien","first_name":"Andrea"},{"id":"52931","full_name":"Güldenpenning, Iris","orcid":"0000-0003-0549-5543","last_name":"Güldenpenning","first_name":"Iris"},{"first_name":"Matthias","last_name":"Weigelt","full_name":"Weigelt, Matthias","id":"36388"}],"date_updated":"2023-09-12T08:37:20Z","publication_status":"published","intvolume":"        67","language":[{"iso":"eng"}],"doi":"10.1027/1618-3169/a000503","alternative_title":["Different Processes Contribute to the Head-Fake Effect in Basketball"],"citation":{"ieee":"A. Polzien, I. Güldenpenning, and M. Weigelt, “Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports,” <i>Experimental Psychology</i>, vol. 67, no. 6, pp. 349–363, 2021, doi: <a href=\"https://doi.org/10.1027/1618-3169/a000503\">10.1027/1618-3169/a000503</a>.","apa":"Polzien, A., Güldenpenning, I., &#38; Weigelt, M. (2021). Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports. <i>Experimental Psychology</i>, <i>67</i>(6), 349–363. <a href=\"https://doi.org/10.1027/1618-3169/a000503\">https://doi.org/10.1027/1618-3169/a000503</a>","chicago":"Polzien, Andrea, Iris Güldenpenning, and Matthias Weigelt. “Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports.” <i>Experimental Psychology</i> 67, no. 6 (2021): 349–63. <a href=\"https://doi.org/10.1027/1618-3169/a000503\">https://doi.org/10.1027/1618-3169/a000503</a>.","short":"A. Polzien, I. Güldenpenning, M. Weigelt, Experimental Psychology 67 (2021) 349–363.","mla":"Polzien, Andrea, et al. “Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports.” <i>Experimental Psychology</i>, vol. 67, no. 6, Hogrefe Publishing Group, 2021, pp. 349–63, doi:<a href=\"https://doi.org/10.1027/1618-3169/a000503\">10.1027/1618-3169/a000503</a>.","bibtex":"@article{Polzien_Güldenpenning_Weigelt_2021, title={Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports}, volume={67}, DOI={<a href=\"https://doi.org/10.1027/1618-3169/a000503\">10.1027/1618-3169/a000503</a>}, number={6}, journal={Experimental Psychology}, publisher={Hogrefe Publishing Group}, author={Polzien, Andrea and Güldenpenning, Iris and Weigelt, Matthias}, year={2021}, pages={349–363} }","ama":"Polzien A, Güldenpenning I, Weigelt M. Examining the Perceptual-Cognitive Mechanism of Deceptive Actions in Sports. <i>Experimental Psychology</i>. 2021;67(6):349-363. doi:<a href=\"https://doi.org/10.1027/1618-3169/a000503\">10.1027/1618-3169/a000503</a>"},"quality_controlled":"1","status":"public","page":"349-363","publisher":"Hogrefe Publishing Group","_id":"37786","user_id":"80673","volume":67},{"language":[{"iso":"eng"}],"doi":"https://doi.org/10.1371/journal.pone.0251117","author":[{"first_name":"Andrea","last_name":"Polzien","full_name":"Polzien, Andrea"},{"id":"52931","last_name":"Güldenpenning","first_name":"Iris","orcid":"0000-0003-0549-5543","full_name":"Güldenpenning, Iris"},{"id":"36388","first_name":"Matthias","last_name":"Weigelt","full_name":"Weigelt, Matthias"}],"year":"2021","title":"A question of (perfect) timing: A preceding head turn increases the head-fake effect in basketball","intvolume":"        16","date_updated":"2023-09-12T09:29:46Z","publication_status":"published","date_created":"2023-08-25T13:41:52Z","department":[{"_id":"266"},{"_id":"17"}],"type":"journal_article","issue":"5","publication":"Plos one","_id":"46720","publisher":"Public Library of Science San Francisco, CA USA","page":"e0251117","volume":16,"user_id":"80673","status":"public","citation":{"mla":"Polzien, Andrea, et al. “A Question of (Perfect) Timing: A Preceding Head Turn Increases the Head-Fake Effect in Basketball.” <i>Plos One</i>, vol. 16, no. 5, Public Library of Science San Francisco, CA USA, 2021, p. e0251117, doi:<a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>.","ama":"Polzien A, Güldenpenning I, Weigelt M. A question of (perfect) timing: A preceding head turn increases the head-fake effect in basketball. <i>Plos one</i>. 2021;16(5):e0251117. doi:<a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>","bibtex":"@article{Polzien_Güldenpenning_Weigelt_2021, title={A question of (perfect) timing: A preceding head turn increases the head-fake effect in basketball}, volume={16}, DOI={<a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>}, number={5}, journal={Plos one}, publisher={Public Library of Science San Francisco, CA USA}, author={Polzien, Andrea and Güldenpenning, Iris and Weigelt, Matthias}, year={2021}, pages={e0251117} }","apa":"Polzien, A., Güldenpenning, I., &#38; Weigelt, M. (2021). A question of (perfect) timing: A preceding head turn increases the head-fake effect in basketball. <i>Plos One</i>, <i>16</i>(5), e0251117. <a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>","ieee":"A. Polzien, I. Güldenpenning, and M. Weigelt, “A question of (perfect) timing: A preceding head turn increases the head-fake effect in basketball,” <i>Plos one</i>, vol. 16, no. 5, p. e0251117, 2021, doi: <a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>.","short":"A. Polzien, I. Güldenpenning, M. Weigelt, Plos One 16 (2021) e0251117.","chicago":"Polzien, Andrea, Iris Güldenpenning, and Matthias Weigelt. “A Question of (Perfect) Timing: A Preceding Head Turn Increases the Head-Fake Effect in Basketball.” <i>Plos One</i> 16, no. 5 (2021): e0251117. <a href=\"https://doi.org/10.1371/journal.pone.0251117\">https://doi.org/10.1371/journal.pone.0251117</a>."},"quality_controlled":"1"},{"department":[{"_id":"266"}],"type":"conference_abstract","place":"North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p. 34)","date_created":"2023-01-21T14:30:46Z","citation":{"mla":"Krause, Daniel, et al. <i>Neural Correlates of Augmented Feedback Processing Are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning</i>. Journal of Sport &#38; Exercise Psychology, 43 , 2021.","bibtex":"@inproceedings{Krause_Margraf_Weigelt_2021, place={North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p. 34)}, title={Neural Correlates of Augmented Feedback Processing are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning}, publisher={Journal of Sport &#38; Exercise Psychology, 43 }, author={Krause, Daniel and Margraf, Linda and Weigelt, Matthias}, year={2021} }","ama":"Krause D, Margraf L, Weigelt M. Neural Correlates of Augmented Feedback Processing are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning. In: Journal of Sport &#38; Exercise Psychology, 43 ; 2021.","ieee":"D. Krause, L. Margraf, and M. Weigelt, “Neural Correlates of Augmented Feedback Processing are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning,” presented at the North American Society for the Psychology of Sport and Physical Activity (Naspa), 2021.","apa":"Krause, D., Margraf, L., &#38; Weigelt, M. (2021). <i>Neural Correlates of Augmented Feedback Processing are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning</i>. North American Society for the Psychology of Sport and Physical Activity (Naspa).","chicago":"Krause, Daniel, Linda Margraf, and Matthias Weigelt. “Neural Correlates of Augmented Feedback Processing Are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning.” North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p. 34): Journal of Sport &#38; Exercise Psychology, 43 , 2021.","short":"D. Krause, L. Margraf, M. Weigelt, in: Journal of Sport &#38; Exercise Psychology, 43 , North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p. 34), 2021."},"user_id":"77456","_id":"37842","language":[{"iso":"eng"}],"publisher":"Journal of Sport & Exercise Psychology, 43 ","date_updated":"2023-09-19T06:06:10Z","conference":{"end_date":"2021-06-11","start_date":"2021-06-09","name":"North American Society for the Psychology of Sport and Physical Activity (Naspa)"},"author":[{"full_name":"Krause, Daniel","last_name":"Krause","first_name":"Daniel"},{"orcid":"0000-0001-5972-612X","first_name":"Linda","last_name":"Margraf","full_name":"Margraf, Linda","id":"77456"},{"id":"36388","full_name":"Weigelt, Matthias","first_name":"Matthias","last_name":"Weigelt"}],"status":"public","year":"2021","title":"Neural Correlates of Augmented Feedback Processing are Associated to Short-Term Behavioral Changes and Automaticity in Motor Learning"},{"year":"2021","title":"Predictive value of valence-dependent neural correlates of augmented feedback processing for behavioral adaptation and learning in extensive motor learning","status":"public","author":[{"first_name":"Daniel","last_name":"Krause","full_name":"Krause, Daniel"},{"last_name":"Margraf","first_name":"Linda","orcid":"0000-0001-5972-612X","full_name":"Margraf, Linda","id":"77456"},{"last_name":"Weigelt","first_name":"Matthias","full_name":"Weigelt, Matthias","id":"36388"}],"conference":{"location":" Ulm","name":"63rd Conference of Experimental Psychologists (TeaP)","start_date":"2021-03-14","end_date":"2021-03-17"},"date_updated":"2023-09-19T06:00:57Z","_id":"38074","language":[{"iso":"eng"}],"user_id":"77456","editor":[{"full_name":"Huckauf, Anke","last_name":"Huckauf","first_name":"Anke"},{"first_name":"Martin","last_name":"Baumann","full_name":"Baumann, Martin"},{"full_name":"Ernst, Marc","last_name":"Ernst","first_name":"Marc"},{"last_name":"Herbert","first_name":"Cornelia","full_name":"Herbert, Cornelia"},{"full_name":"Kiefer, Markus","first_name":"Markus","last_name":"Kiefer"},{"full_name":"Sauter, Marian","last_name":"Sauter","first_name":"Marian"}],"citation":{"ama":"Krause D, Margraf L, Weigelt M. Predictive value of valence-dependent neural correlates of augmented feedback processing for behavioral adaptation and learning in extensive motor learning. In: Huckauf A, Baumann M, Ernst M, Herbert C, Kiefer M, Sauter M, eds. ; 2021.","bibtex":"@inproceedings{Krause_Margraf_Weigelt_2021, place={TeaP 2021 - Abstracts of the 63rd Conference of Experimental Psychologists (p. 136). }, title={Predictive value of valence-dependent neural correlates of augmented feedback processing for behavioral adaptation and learning in extensive motor learning}, author={Krause, Daniel and Margraf, Linda and Weigelt, Matthias}, editor={Huckauf, Anke and Baumann, Martin and Ernst, Marc and Herbert, Cornelia and Kiefer, Markus and Sauter, Marian}, year={2021} }","mla":"Krause, Daniel, et al. <i>Predictive Value of Valence-Dependent Neural Correlates of Augmented Feedback Processing for Behavioral Adaptation and Learning in Extensive Motor Learning</i>. Edited by Anke Huckauf et al., 2021.","chicago":"Krause, Daniel, Linda Margraf, and Matthias Weigelt. “Predictive Value of Valence-Dependent Neural Correlates of Augmented Feedback Processing for Behavioral Adaptation and Learning in Extensive Motor Learning.” edited by Anke Huckauf, Martin Baumann, Marc Ernst, Cornelia Herbert, Markus Kiefer, and Marian Sauter. TeaP 2021 - Abstracts of the 63rd Conference of Experimental Psychologists (p. 136). , 2021.","short":"D. Krause, L. Margraf, M. Weigelt, in: A. Huckauf, M. Baumann, M. Ernst, C. Herbert, M. Kiefer, M. Sauter (Eds.), TeaP 2021 - Abstracts of the 63rd Conference of Experimental Psychologists (p. 136). , 2021.","apa":"Krause, D., Margraf, L., &#38; Weigelt, M. (2021). <i>Predictive value of valence-dependent neural correlates of augmented feedback processing for behavioral adaptation and learning in extensive motor learning</i> (A. Huckauf, M. Baumann, M. Ernst, C. Herbert, M. Kiefer, &#38; M. Sauter, Eds.).","ieee":"D. Krause, L. Margraf, and M. Weigelt, “Predictive value of valence-dependent neural correlates of augmented feedback processing for behavioral adaptation and learning in extensive motor learning,”  Ulm, 2021."},"date_created":"2023-01-23T10:38:22Z","place":"TeaP 2021 - Abstracts of the 63rd Conference of Experimental Psychologists (p. 136). ","type":"conference_abstract","department":[{"_id":"266"}]},{"author":[{"orcid":"0000-0001-5972-612X","last_name":"Margraf","first_name":"Linda","full_name":"Margraf, Linda","id":"77456"},{"first_name":"Daniel","last_name":"Krause","full_name":"Krause, Daniel"},{"first_name":"Matthias","last_name":"Weigelt","full_name":"Weigelt, Matthias","id":"36388"}],"conference":{"name":"North American Society for the Psychology of Sport and Physical Activity  (Naspa)","start_date":"2021-06-09","end_date":"2021-06-11"},"year":"2021","status":"public","title":"Neural Processing of Augmented Feedback is Valence-Dependent and Changes After Extensive Practice of a New Motor Task","date_updated":"2023-09-19T06:04:31Z","language":[{"iso":"eng"}],"_id":"37840","publisher":"Journal of Sport & Exercise Psychology, 43","user_id":"77456","citation":{"mla":"Margraf, Linda, et al. <i>Neural Processing of Augmented Feedback Is Valence-Dependent and Changes After Extensive Practice of a New Motor Task</i>. Journal of Sport &#38; Exercise Psychology, 43, 2021.","ama":"Margraf L, Krause D, Weigelt M. Neural Processing of Augmented Feedback is Valence-Dependent and Changes After Extensive Practice of a New Motor Task. In: Journal of Sport &#38; Exercise Psychology, 43; 2021.","bibtex":"@inproceedings{Margraf_Krause_Weigelt_2021, place={North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p.39) }, title={Neural Processing of Augmented Feedback is Valence-Dependent and Changes After Extensive Practice of a New Motor Task}, publisher={Journal of Sport &#38; Exercise Psychology, 43}, author={Margraf, Linda and Krause, Daniel and Weigelt, Matthias}, year={2021} }","apa":"Margraf, L., Krause, D., &#38; Weigelt, M. (2021). <i>Neural Processing of Augmented Feedback is Valence-Dependent and Changes After Extensive Practice of a New Motor Task</i>. North American Society for the Psychology of Sport and Physical Activity  (Naspa).","ieee":"L. Margraf, D. Krause, and M. Weigelt, “Neural Processing of Augmented Feedback is Valence-Dependent and Changes After Extensive Practice of a New Motor Task,” presented at the North American Society for the Psychology of Sport and Physical Activity  (Naspa), 2021.","chicago":"Margraf, Linda, Daniel Krause, and Matthias Weigelt. “Neural Processing of Augmented Feedback Is Valence-Dependent and Changes After Extensive Practice of a New Motor Task.” North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p.39) : Journal of Sport &#38; Exercise Psychology, 43, 2021.","short":"L. Margraf, D. Krause, M. Weigelt, in: Journal of Sport &#38; Exercise Psychology, 43, North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p.39) , 2021."},"date_created":"2023-01-21T14:26:06Z","place":"North American Society for the Psychology of Sport and Physical Activity Virtual Conference (p.39) ","department":[{"_id":"266"}],"type":"conference_abstract"},{"type":"conference_abstract","department":[{"_id":"266"}],"place":"TeaP 2021 - Abstracts of the 63rd Conference of Experimental Psychologists (p. 156). Ulm: Universität Ulm","date_created":"2023-01-23T10:40:51Z","citation":{"ama":"Margraf L, Krause D, Weigelt M. Changes in valence-dependent neural correlates of augmented feedback processing after extensive motor sequence learning. In: Huckauf A, Baumann M, Ernst M, Herbert C, Kiefer M, Sauter M, eds. ; 2021.","short":"L. Margraf, D. Krause, M. Weigelt, in: A. Huckauf, M. Baumann, M. Ernst, C. Herbert, M. Kiefer, M. 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Ulm: Universität Ulm}, title={Changes in valence-dependent neural correlates of augmented feedback processing after extensive motor sequence learning}, author={Margraf, Linda and Krause, Daniel and Weigelt, Matthias}, editor={Huckauf, Anke and Baumann, Martin and Ernst, Marc and Herbert, Cornelia and Kiefer, Markus and Sauter, Marian}, year={2021} }","apa":"Margraf, L., Krause, D., &#38; Weigelt, M. (2021). <i>Changes in valence-dependent neural correlates of augmented feedback processing after extensive motor sequence learning</i> (A. Huckauf, M. Baumann, M. Ernst, C. Herbert, M. Kiefer, &#38; M. Sauter, Eds.).","mla":"Margraf, Linda, et al. <i>Changes in Valence-Dependent Neural Correlates of Augmented Feedback Processing after Extensive Motor Sequence Learning</i>. Edited by Anke Huckauf et al., 2021.","ieee":"L. Margraf, D. Krause, and M. 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