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Bode, S. Goetz, S. Wartzack, Procedia CIRP 129 (2024) 151–156.","ama":"Bode C, Goetz S, Wartzack S. On the transferability of nominal surrogate models to uncertainty consideration of clinch joint characteristics. <i>Procedia CIRP</i>. 2024;129:151-156. doi:<a href=\"https://doi.org/10.1016/j.procir.2024.10.027\">10.1016/j.procir.2024.10.027</a>","ieee":"C. Bode, S. Goetz, and S. Wartzack, “On the transferability of nominal surrogate models to uncertainty consideration of clinch joint characteristics,” <i>Procedia CIRP</i>, vol. 129, pp. 151–156, 2024, doi: <a href=\"https://doi.org/10.1016/j.procir.2024.10.027\">10.1016/j.procir.2024.10.027</a>.","chicago":"Bode, Christoph, Stefan Goetz, and Sandro Wartzack. “On the Transferability of Nominal Surrogate Models to Uncertainty Consideration of Clinch Joint Characteristics.” <i>Procedia CIRP</i> 129 (2024): 151–56. <a href=\"https://doi.org/10.1016/j.procir.2024.10.027\">https://doi.org/10.1016/j.procir.2024.10.027</a>."},"year":"2024","department":[{"_id":"157"}],"user_id":"107109","_id":"58342","project":[{"_id":"132","name":"TRR 285 - B: TRR 285 - Project Area B"},{"name":"TRR 285:  Methodenentwicklung zur mechanischen Fügbarkeit in wandlungsfähigen Prozessketten","_id":"130"},{"_id":"144","name":"TRR 285 - Subproject B05"}],"language":[{"iso":"eng"}],"publication":"Procedia CIRP","type":"journal_article","status":"public"},{"extern":"1","language":[{"iso":"eng"}],"user_id":"118819","_id":"61509","status":"public","type":"journal_article","publication":"epd-Dokumentation","title":"Mystik und Befreiung. Dorothee Sölles Verständnis des Glaubens als riskanter Lebensform","author":[{"full_name":"König, Katrin","id":"118819","last_name":"König","first_name":"Katrin"}],"date_created":"2025-10-02T09:46:55Z","volume":"16/17","date_updated":"2025-10-02T09:47:05Z","citation":{"ieee":"K. König, “Mystik und Befreiung. Dorothee Sölles Verständnis des Glaubens als riskanter Lebensform,” <i>epd-Dokumentation</i>, vol. 16/17, pp. 75–84, 2024.","chicago":"König, Katrin. “Mystik Und Befreiung. Dorothee Sölles Verständnis Des Glaubens Als Riskanter Lebensform.” <i>Epd-Dokumentation</i> 16/17 (2024): 75–84.","ama":"König K. Mystik und Befreiung. Dorothee Sölles Verständnis des Glaubens als riskanter Lebensform. <i>epd-Dokumentation</i>. 2024;16/17:75-84.","apa":"König, K. (2024). Mystik und Befreiung. Dorothee Sölles Verständnis des Glaubens als riskanter Lebensform. <i>Epd-Dokumentation</i>, <i>16/17</i>, 75–84.","bibtex":"@article{König_2024, title={Mystik und Befreiung. Dorothee Sölles Verständnis des Glaubens als riskanter Lebensform}, volume={16/17}, journal={epd-Dokumentation}, author={König, Katrin}, year={2024}, pages={75–84} }","mla":"König, Katrin. “Mystik Und Befreiung. Dorothee Sölles Verständnis Des Glaubens Als Riskanter Lebensform.” <i>Epd-Dokumentation</i>, vol. 16/17, 2024, pp. 75–84.","short":"K. König, Epd-Dokumentation 16/17 (2024) 75–84."},"page":"75-84","year":"2024"},{"abstract":[{"lang":"eng","text":"<jats:title>Zusammenfassung</jats:title>\r\n               <jats:p>Wie kann Gottes Gegenwart trotz ihrer Verborgenheit wahrgenommen werden? In dem folgenden Beitrag möchte ich zeigen, wie Simone Weil die Erfahrungen der Verborgenheit und der Abwesenheit Gottes als Signatur des Unglücks und der Entwurzelung der Menschen in der Moderne analysiert. Des Weiteren wird dargestellt, wie Simone Weil vor diesem Hintergrund mit einer kreuzestheologischen Denkfigur reflektiert, wie die Gottesliebe in besonderer Weise im Unglück verborgen anwesend sein kann, trotz Erfahrung der Abwesenheit Gottes. Hier schließt sich die erkenntnistheoretische Frage nach der Wahrnehmbarkeit der verborgenen Gegenwart Gottes an. So soll ausgeführt werden, wie Simone Weil aufzeigt, wie durch ästhetische Formen der Schönheit und Ordnung der Welt, durch ethische Formen von Nächstenliebe und Freundschaft und durch die religiöse Formen in Liturgie und Gebet als höchster Form der Aufmerksamkeit die verborgen gegenwärtige Gottesliebe indirekt wahrgenommen werden kann. Dies spricht schließlich für eine andere Deutung der Verborgenheit Gottes als im sog. Verborgenheitsargument von J. L. Schellenberg, mit dem von der Verborgenheit auf die Nichtexistenz Gottes geschlossen wird.</jats:p>"}],"status":"public","type":"journal_article","publication":"Neue Zeitschrift für Systematische Theologie und Religionsphilosophie","language":[{"iso":"eng"}],"extern":"1","_id":"61499","user_id":"118819","department":[{"_id":"20"}],"year":"2024","citation":{"mla":"Koenig, Katrin. “Verborgene Gegenwart. Simone Weils Existenzphilosophische Deutung Der in Abwesenheit Anwesenden Gottesliebe.” <i>Neue Zeitschrift Für Systematische Theologie Und Religionsphilosophie</i>, vol. 66, no. 2, Walter de Gruyter GmbH, 2024, pp. 179–96, doi:<a href=\"https://doi.org/10.1515/nzsth-2024-0017\">10.1515/nzsth-2024-0017</a>.","bibtex":"@article{Koenig_2024, title={Verborgene Gegenwart. Simone Weils existenzphilosophische Deutung der in Abwesenheit anwesenden Gottesliebe}, volume={66}, DOI={<a href=\"https://doi.org/10.1515/nzsth-2024-0017\">10.1515/nzsth-2024-0017</a>}, number={2}, journal={Neue Zeitschrift für Systematische Theologie und Religionsphilosophie}, publisher={Walter de Gruyter GmbH}, author={Koenig, Katrin}, year={2024}, pages={179–196} }","short":"K. Koenig, Neue Zeitschrift Für Systematische Theologie Und Religionsphilosophie 66 (2024) 179–196.","apa":"Koenig, K. (2024). Verborgene Gegenwart. Simone Weils existenzphilosophische Deutung der in Abwesenheit anwesenden Gottesliebe. <i>Neue Zeitschrift Für Systematische Theologie Und Religionsphilosophie</i>, <i>66</i>(2), 179–196. <a href=\"https://doi.org/10.1515/nzsth-2024-0017\">https://doi.org/10.1515/nzsth-2024-0017</a>","ieee":"K. Koenig, “Verborgene Gegenwart. Simone Weils existenzphilosophische Deutung der in Abwesenheit anwesenden Gottesliebe,” <i>Neue Zeitschrift für Systematische Theologie und Religionsphilosophie</i>, vol. 66, no. 2, pp. 179–196, 2024, doi: <a href=\"https://doi.org/10.1515/nzsth-2024-0017\">10.1515/nzsth-2024-0017</a>.","chicago":"Koenig, Katrin. “Verborgene Gegenwart. Simone Weils Existenzphilosophische Deutung Der in Abwesenheit Anwesenden Gottesliebe.” <i>Neue Zeitschrift Für Systematische Theologie Und Religionsphilosophie</i> 66, no. 2 (2024): 179–96. <a href=\"https://doi.org/10.1515/nzsth-2024-0017\">https://doi.org/10.1515/nzsth-2024-0017</a>.","ama":"Koenig K. Verborgene Gegenwart. 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Behörde für Schule und Berufsbildung","date_updated":"2025-10-10T15:29:18Z","author":[{"first_name":"Alexandra ","last_name":"Dube","full_name":"Dube, Alexandra "},{"last_name":"Jäger","full_name":"Jäger, Christina","first_name":"Christina"},{"first_name":"Eckehardt","last_name":"Knöpfel","full_name":"Knöpfel, Eckehardt"},{"last_name":"Wüllner","id":"105046","full_name":"Wüllner, Sabrina","first_name":"Sabrina"}],"date_created":"2025-04-13T17:46:40Z","status":"public","type":"misc","extern":"1","language":[{"iso":"ger"}],"_id":"59554","user_id":"105046"},{"date_updated":"2025-10-10T15:29:25Z","publisher":"Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung","date_created":"2025-04-13T17:48:19Z","author":[{"first_name":"Alexandra","full_name":"Dube, Alexandra","last_name":"Dube"},{"full_name":"Jäger, Christina","last_name":"Jäger","first_name":"Christina"},{"first_name":"Eckehardt","full_name":"Knöpfel, Eckehardt","last_name":"Knöpfel"},{"id":"105046","full_name":"Wüllner, Sabrina","last_name":"Wüllner","first_name":"Sabrina"}],"title":"Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik","year":"2024","citation":{"apa":"Dube, A., Jäger, C., Knöpfel, E., &#38; Wüllner, S. (2024). <i>Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik</i>. Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung.","short":"A. Dube, C. Jäger, E. Knöpfel, S. Wüllner, Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik, Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung, 2024.","mla":"Dube, Alexandra, et al. <i>Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik</i>. Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung, 2024.","bibtex":"@book{Dube_Jäger_Knöpfel_Wüllner_2024, title={Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik}, publisher={Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung}, author={Dube, Alexandra and Jäger, Christina and Knöpfel, Eckehardt and Wüllner, Sabrina}, year={2024} }","ieee":"A. Dube, C. Jäger, E. Knöpfel, and S. Wüllner, <i>Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik</i>. Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung, 2024.","chicago":"Dube, Alexandra, Christina Jäger, Eckehardt Knöpfel, and Sabrina Wüllner. <i>Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik</i>. Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung, 2024.","ama":"Dube A, Jäger C, Knöpfel E, Wüllner S. <i>Bildungsplan Gymnasium. Sekundarstufe I. Pädagogik</i>. Freie und Hansestadt Hamburg. Behörde für Schule und Berufsbildung; 2024."},"_id":"59555","user_id":"105046","language":[{"iso":"ger"}],"extern":"1","type":"misc","status":"public"},{"article_number":"025401","language":[{"iso":"eng"}],"_id":"61788","user_id":"107107","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title>\r\n               <jats:p>Industrial x-ray computed tomography (CT) systems with high geometric flexibility are increasingly utilized for large-scale measurement objects or challenging measurement tasks. To maintain high accuracy when deviating from the established circular scan trajectory, trajectory calibration methods using multi-sphere reference objects with known marker positions are commonly employed. These multi-sphere objects can either be scanned together with the measurement object (online trajectory calibration) or in a separate scan (offline trajectory calibration). While offline calibration increases machine time, it generally results in higher scan quality. However, a sufficient pose repeatability is necessary to ensure comparable or even superior accuracy to online calibration. In this contribution, we present a straightforward procedure to compare both types of trajectory calibration in a way that the differences of the results can directly be traced back to the influence of the pose repeatability. The multi-sphere reference object is not only used for trajectory calibration, but simultaneously as a measurement object for repeated measurements. The methodology is tested on both a twin robotic CT system and a conventional CT system that is additionally equipped with a hexapod manipulator for adaptive object tilting. Results showed, independent from the type of trajectory calibration, systematic measurement errors in the order of 10<jats:sup>−5</jats:sup>–10<jats:sup>−4</jats:sup> of measured sphere distances and sphericity values below 50 <jats:inline-formula>\r\n                     <jats:tex-math/>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\" overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mrow>\r\n                              <mml:mtext>μ</mml:mtext>\r\n                           </mml:mrow>\r\n                           <mml:mrow>\r\n                              <mml:mi mathvariant=\"normal\">m</mml:mi>\r\n                           </mml:mrow>\r\n                        </mml:mrow>\r\n                     </mml:math>\r\n                  </jats:inline-formula>. For sphere distances, random errors were increased by a factor of 5 due to the offline trajectory calibration, but were still low (<jats:inline-formula>\r\n                     <jats:tex-math/>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\" overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mrow>\r\n                              <mml:mo>&lt;</mml:mo>\r\n                           </mml:mrow>\r\n                           <mml:mrow>\r\n                              <mml:mn>1</mml:mn>\r\n                           </mml:mrow>\r\n                           <mml:mstyle scriptlevel=\"0\"/>\r\n                           <mml:mrow>\r\n                              <mml:mtext>μ</mml:mtext>\r\n                           </mml:mrow>\r\n                           <mml:mrow>\r\n                              <mml:mi mathvariant=\"normal\">m</mml:mi>\r\n                           </mml:mrow>\r\n                        </mml:mrow>\r\n                     </mml:math>\r\n                  </jats:inline-formula>) in comparison to systematic errors and the spread of different measurement features. Overall, both investigated systems demonstrated sufficient positioning repeatability for offline trajectory calibration. The method is in general also applicable to any other types of manipulator systems used for CT devices. It provides a workflow for the decision which type of trajectory calibration is preferable for a given CT system.</jats:p>"}],"status":"public","publication":"Measurement Science and Technology","type":"journal_article","title":"Direct assessment of the influence of pose repeatability on the accuracy of dimensional measurements for computed tomography systems with high degrees of freedom","doi":"10.1088/1361-6501/ada05a","date_updated":"2025-10-11T08:00:02Z","publisher":"IOP Publishing","volume":36,"author":[{"first_name":"Lorenz","last_name":"Butzhammer","full_name":"Butzhammer, Lorenz"},{"last_name":"Handke","full_name":"Handke, Niklas","first_name":"Niklas"},{"first_name":"Simon","full_name":"Wittl, Simon","last_name":"Wittl"},{"full_name":"Herl, Gabriel","last_name":"Herl","first_name":"Gabriel"},{"last_name":"Hausotte","full_name":"Hausotte, Tino","first_name":"Tino"}],"date_created":"2025-10-11T07:56:47Z","year":"2024","intvolume":"        36","citation":{"ama":"Butzhammer L, Handke N, Wittl S, Herl G, Hausotte T. Direct assessment of the influence of pose repeatability on the accuracy of dimensional measurements for computed tomography systems with high degrees of freedom. <i>Measurement Science and Technology</i>. 2024;36(2). doi:<a href=\"https://doi.org/10.1088/1361-6501/ada05a\">10.1088/1361-6501/ada05a</a>","chicago":"Butzhammer, Lorenz, Niklas Handke, Simon Wittl, Gabriel Herl, and Tino Hausotte. “Direct Assessment of the Influence of Pose Repeatability on the Accuracy of Dimensional Measurements for Computed Tomography Systems with High Degrees of Freedom.” <i>Measurement Science and Technology</i> 36, no. 2 (2024). <a href=\"https://doi.org/10.1088/1361-6501/ada05a\">https://doi.org/10.1088/1361-6501/ada05a</a>.","ieee":"L. Butzhammer, N. Handke, S. Wittl, G. Herl, and T. Hausotte, “Direct assessment of the influence of pose repeatability on the accuracy of dimensional measurements for computed tomography systems with high degrees of freedom,” <i>Measurement Science and Technology</i>, vol. 36, no. 2, Art. no. 025401, 2024, doi: <a href=\"https://doi.org/10.1088/1361-6501/ada05a\">10.1088/1361-6501/ada05a</a>.","mla":"Butzhammer, Lorenz, et al. “Direct Assessment of the Influence of Pose Repeatability on the Accuracy of Dimensional Measurements for Computed Tomography Systems with High Degrees of Freedom.” <i>Measurement Science and Technology</i>, vol. 36, no. 2, 025401, IOP Publishing, 2024, doi:<a href=\"https://doi.org/10.1088/1361-6501/ada05a\">10.1088/1361-6501/ada05a</a>.","bibtex":"@article{Butzhammer_Handke_Wittl_Herl_Hausotte_2024, title={Direct assessment of the influence of pose repeatability on the accuracy of dimensional measurements for computed tomography systems with high degrees of freedom}, volume={36}, DOI={<a href=\"https://doi.org/10.1088/1361-6501/ada05a\">10.1088/1361-6501/ada05a</a>}, number={2025401}, journal={Measurement Science and Technology}, publisher={IOP Publishing}, author={Butzhammer, Lorenz and Handke, Niklas and Wittl, Simon and Herl, Gabriel and Hausotte, Tino}, year={2024} }","short":"L. Butzhammer, N. Handke, S. Wittl, G. Herl, T. Hausotte, Measurement Science and Technology 36 (2024).","apa":"Butzhammer, L., Handke, N., Wittl, S., Herl, G., &#38; Hausotte, T. (2024). Direct assessment of the influence of pose repeatability on the accuracy of dimensional measurements for computed tomography systems with high degrees of freedom. <i>Measurement Science and Technology</i>, <i>36</i>(2), Article 025401. <a href=\"https://doi.org/10.1088/1361-6501/ada05a\">https://doi.org/10.1088/1361-6501/ada05a</a>"},"publication_identifier":{"issn":["0957-0233","1361-6501"]},"publication_status":"published","issue":"2"},{"date_created":"2025-10-10T18:16:13Z","publisher":"MDPI AG","title":"Practical Approaches for Determining the Structural Resolution Capability of X-ray Computed Tomography Measurement Tasks","issue":"3","year":"2024","language":[{"iso":"eng"}],"publication":"Metrology","abstract":[{"text":"<jats:p>The structural resolution describes the ability of a measuring device to detect small structures on the surface of a component or test specimen by means of a quantitative value. However, the structural resolution in the computer tomograph depends on the object and must therefore be determined separately for each measurement task. The previous approaches to structural resolution determination are only related to test specimens. In this paper, less discrete approaches based on a circular pattern are presented, which can be integrated into the measured component. A voxel-based methodology as well as two surface-based methodologies are described. The investigation results regarding the effect of the component position on the structural resolution are obtained on the basis of real CT measurements. A comparison is also completed with the well-known hourglass method. The results show that the resolution depends on the object being measured, with similar values being obtained for the same object using different methods.</jats:p>","lang":"eng"}],"volume":4,"author":[{"last_name":"Busch","full_name":"Busch, Matthias","first_name":"Matthias"},{"first_name":"Tino","full_name":"Hausotte, Tino","last_name":"Hausotte"}],"date_updated":"2025-10-11T08:01:49Z","doi":"10.3390/metrology4030028","publication_identifier":{"issn":["2673-8244"]},"publication_status":"published","intvolume":"         4","page":"457-468","citation":{"ama":"Busch M, Hausotte T. Practical Approaches for Determining the Structural Resolution Capability of X-ray Computed Tomography Measurement Tasks. <i>Metrology</i>. 2024;4(3):457-468. doi:<a href=\"https://doi.org/10.3390/metrology4030028\">10.3390/metrology4030028</a>","chicago":"Busch, Matthias, and Tino Hausotte. “Practical Approaches for Determining the Structural Resolution Capability of X-Ray Computed Tomography Measurement Tasks.” <i>Metrology</i> 4, no. 3 (2024): 457–68. <a href=\"https://doi.org/10.3390/metrology4030028\">https://doi.org/10.3390/metrology4030028</a>.","ieee":"M. Busch and T. Hausotte, “Practical Approaches for Determining the Structural Resolution Capability of X-ray Computed Tomography Measurement Tasks,” <i>Metrology</i>, vol. 4, no. 3, pp. 457–468, 2024, doi: <a href=\"https://doi.org/10.3390/metrology4030028\">10.3390/metrology4030028</a>.","short":"M. Busch, T. Hausotte, Metrology 4 (2024) 457–468.","mla":"Busch, Matthias, and Tino Hausotte. “Practical Approaches for Determining the Structural Resolution Capability of X-Ray Computed Tomography Measurement Tasks.” <i>Metrology</i>, vol. 4, no. 3, MDPI AG, 2024, pp. 457–68, doi:<a href=\"https://doi.org/10.3390/metrology4030028\">10.3390/metrology4030028</a>.","bibtex":"@article{Busch_Hausotte_2024, title={Practical Approaches for Determining the Structural Resolution Capability of X-ray Computed Tomography Measurement Tasks}, volume={4}, DOI={<a href=\"https://doi.org/10.3390/metrology4030028\">10.3390/metrology4030028</a>}, number={3}, journal={Metrology}, publisher={MDPI AG}, author={Busch, Matthias and Hausotte, Tino}, year={2024}, pages={457–468} }","apa":"Busch, M., &#38; Hausotte, T. (2024). Practical Approaches for Determining the Structural Resolution Capability of X-ray Computed Tomography Measurement Tasks. <i>Metrology</i>, <i>4</i>(3), 457–468. <a href=\"https://doi.org/10.3390/metrology4030028\">https://doi.org/10.3390/metrology4030028</a>"},"department":[{"_id":"43"}],"user_id":"107107","_id":"61784","project":[{"name":"TRR 285 - Project Area C","_id":"133"}],"type":"journal_article","status":"public"},{"abstract":[{"lang":"eng","text":"<jats:title>Zusammenfassung</jats:title>\r\n               <jats:p>Eine Erweiterung der Scantrajektorie für die industrielle Röntgen-Computertomographie von einer kreisförmigen Form (entsprechend einer 360°-Rotation des Messobjekts) hin zu frei wählbaren Aufnahmeposen hat das Potenzial, durch eine geeignete Trajektorienanpassung Messabweichungen zu reduzieren. In diesem Beitrag wird eine solche Trajektorienanpassung durch einen Hexapoden als Messobjektmanipulator und eine güteparameterbasierte Methodik zur Wahl einzelner Trajektorienpunkte erreicht. Die Ergebnisse zeigen, dass sich vor allem für eine geringe Projektionszahl signifikante Vorteile ergeben, was vor allem im Hinblick auf Inline-CT mit hohem Durchsatz von Relevanz ist.</jats:p>"}],"status":"public","publication":"tm - Technisches Messen","type":"journal_article","language":[{"iso":"eng"}],"_id":"61779","user_id":"107107","year":"2024","intvolume":"        91","page":"2-7","citation":{"chicago":"Butzhammer, Lorenz, and Tino Hausotte. “Task-Specific Scan Trajectory Modification for Dimensional X-Ray Computed Tomography with High Throughput.” <i>Tm - Technisches Messen</i> 91, no. s1 (2024): 2–7. <a href=\"https://doi.org/10.1515/teme-2024-0044\">https://doi.org/10.1515/teme-2024-0044</a>.","ieee":"L. Butzhammer and T. Hausotte, “Task-specific scan trajectory modification for dimensional X-ray computed Tomography with high throughput,” <i>tm - Technisches Messen</i>, vol. 91, no. s1, pp. 2–7, 2024, doi: <a href=\"https://doi.org/10.1515/teme-2024-0044\">10.1515/teme-2024-0044</a>.","ama":"Butzhammer L, Hausotte T. Task-specific scan trajectory modification for dimensional X-ray computed Tomography with high throughput. <i>tm - Technisches Messen</i>. 2024;91(s1):2-7. doi:<a href=\"https://doi.org/10.1515/teme-2024-0044\">10.1515/teme-2024-0044</a>","apa":"Butzhammer, L., &#38; Hausotte, T. (2024). Task-specific scan trajectory modification for dimensional X-ray computed Tomography with high throughput. <i>Tm - Technisches Messen</i>, <i>91</i>(s1), 2–7. <a href=\"https://doi.org/10.1515/teme-2024-0044\">https://doi.org/10.1515/teme-2024-0044</a>","mla":"Butzhammer, Lorenz, and Tino Hausotte. “Task-Specific Scan Trajectory Modification for Dimensional X-Ray Computed Tomography with High Throughput.” <i>Tm - Technisches Messen</i>, vol. 91, no. s1, Walter de Gruyter GmbH, 2024, pp. 2–7, doi:<a href=\"https://doi.org/10.1515/teme-2024-0044\">10.1515/teme-2024-0044</a>.","bibtex":"@article{Butzhammer_Hausotte_2024, title={Task-specific scan trajectory modification for dimensional X-ray computed Tomography with high throughput}, volume={91}, DOI={<a href=\"https://doi.org/10.1515/teme-2024-0044\">10.1515/teme-2024-0044</a>}, number={s1}, journal={tm - Technisches Messen}, publisher={Walter de Gruyter GmbH}, author={Butzhammer, Lorenz and Hausotte, Tino}, year={2024}, pages={2–7} }","short":"L. Butzhammer, T. Hausotte, Tm - Technisches Messen 91 (2024) 2–7."},"publication_identifier":{"issn":["2196-7113","0171-8096"]},"publication_status":"published","issue":"s1","title":"Task-specific scan trajectory modification for dimensional X-ray computed Tomography with high throughput","doi":"10.1515/teme-2024-0044","date_updated":"2025-10-11T08:02:46Z","publisher":"Walter de Gruyter GmbH","volume":91,"date_created":"2025-10-10T16:56:13Z","author":[{"first_name":"Lorenz","last_name":"Butzhammer","full_name":"Butzhammer, Lorenz"},{"last_name":"Hausotte","full_name":"Hausotte, Tino","first_name":"Tino"}]}]
