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Pauls, “Lernort Schule,” in <i>Lexikon der Kunstpädagogik</i>, 2nd ed., vol. 5954, K. Bering, R. Niehoff, and K. Pauls, Eds. Bielefeld: ATHENA/wbv, 2022, pp. 347–348.","ama":"Pauls K. Lernort Schule. In: Bering K, Niehoff R, Pauls K, eds. <i>Lexikon der Kunstpädagogik</i>. Vol 5954. 2nd ed. utb. ATHENA/wbv; 2022:347-348."},"publication_identifier":{"isbn":["978-3-8252-5954-9"]},"publication_status":"published","edition":"2"},{"language":[{"iso":"ger"}],"series_title":"utb","user_id":"78235","_id":"50088","status":"public","editor":[{"first_name":"Kunibert","full_name":"Bering, Kunibert","last_name":"Bering"},{"last_name":"Niehoff","full_name":"Niehoff, Rolf","first_name":"Rolf"},{"full_name":"Pauls, Karina","last_name":"Pauls","first_name":"Karina"}],"type":"encyclopedia_article","publication":"Lexikon der Kunstpädagogik","title":"Relief","author":[{"first_name":"Karina","last_name":"Pauls","id":"78235","full_name":"Pauls, Karina"}],"date_created":"2024-01-02T15:26:55Z","volume":5954,"publisher":"ATHENA/wbv","date_updated":"2024-01-02T15:27:02Z","citation":{"mla":"Pauls, Karina. “Relief.” <i>Lexikon der Kunstpädagogik</i>, edited by Kunibert Bering et al., 2nd ed., vol. 5954, ATHENA/wbv, 2022, pp. 458–60.","short":"K. Pauls, in: K. Bering, R. Niehoff, K. Pauls (Eds.), Lexikon der Kunstpädagogik, 2nd ed., ATHENA/wbv, Bielefeld, 2022, pp. 458–460.","bibtex":"@inbook{Pauls_2022, place={Bielefeld}, edition={2}, series={utb}, title={Relief}, volume={5954}, booktitle={Lexikon der Kunstpädagogik}, publisher={ATHENA/wbv}, author={Pauls, Karina}, editor={Bering, Kunibert and Niehoff, Rolf and Pauls, Karina}, year={2022}, pages={458–460}, collection={utb} }","apa":"Pauls, K. (2022). Relief. In K. Bering, R. Niehoff, &#38; K. Pauls (Eds.), <i>Lexikon der Kunstpädagogik</i> (2nd ed., Vol. 5954, pp. 458–460). ATHENA/wbv.","ieee":"K. Pauls, “Relief,” in <i>Lexikon der Kunstpädagogik</i>, 2nd ed., vol. 5954, K. Bering, R. Niehoff, and K. Pauls, Eds. Bielefeld: ATHENA/wbv, 2022, pp. 458–460.","chicago":"Pauls, Karina. “Relief.” In <i>Lexikon der Kunstpädagogik</i>, edited by Kunibert Bering, Rolf Niehoff, and Karina Pauls, 2nd ed., 5954:458–60. utb. Bielefeld: ATHENA/wbv, 2022.","ama":"Pauls K. Relief. In: Bering K, Niehoff R, Pauls K, eds. <i>Lexikon der Kunstpädagogik</i>. Vol 5954. 2nd ed. utb. ATHENA/wbv; 2022:458-460."},"intvolume":"      5954","page":"458-460","year":"2022","place":"Bielefeld","edition":"2","publication_status":"published","publication_identifier":{"isbn":["978-3-8252-5954-9"]}},{"publication_status":"published","publication_identifier":{"isbn":["978-3-8252-5954-9"]},"edition":"2","place":"Bielefeld","year":"2022","citation":{"ama":"Pauls K. Werken. In: Bering K, Niehoff R, Pauls K, eds. <i>Lexikon der Kunstpädagogik</i>. Vol 5954. 2nd ed. utb. ATHENA/wbv; 2022:527-528.","ieee":"K. Pauls, “Werken,” in <i>Lexikon der Kunstpädagogik</i>, 2nd ed., vol. 5954, K. Bering, R. Niehoff, and K. Pauls, Eds. Bielefeld: ATHENA/wbv, 2022, pp. 527–528.","chicago":"Pauls, Karina. “Werken.” In <i>Lexikon der Kunstpädagogik</i>, edited by Kunibert Bering, Rolf Niehoff, and Karina Pauls, 2nd ed., 5954:527–28. utb. Bielefeld: ATHENA/wbv, 2022.","apa":"Pauls, K. (2022). Werken. In K. Bering, R. Niehoff, &#38; K. Pauls (Eds.), <i>Lexikon der Kunstpädagogik</i> (2nd ed., Vol. 5954, pp. 527–528). ATHENA/wbv.","short":"K. Pauls, in: K. Bering, R. Niehoff, K. Pauls (Eds.), Lexikon der Kunstpädagogik, 2nd ed., ATHENA/wbv, Bielefeld, 2022, pp. 527–528.","bibtex":"@inbook{Pauls_2022, place={Bielefeld}, edition={2}, series={utb}, title={Werken}, volume={5954}, booktitle={Lexikon der Kunstpädagogik}, publisher={ATHENA/wbv}, author={Pauls, Karina}, editor={Bering, Kunibert and Niehoff, Rolf and Pauls, Karina}, year={2022}, pages={527–528}, collection={utb} }","mla":"Pauls, Karina. “Werken.” <i>Lexikon der Kunstpädagogik</i>, edited by Kunibert Bering et al., 2nd ed., vol. 5954, ATHENA/wbv, 2022, pp. 527–28."},"page":"527-528","intvolume":"      5954","publisher":"ATHENA/wbv","date_updated":"2024-01-02T15:31:05Z","author":[{"full_name":"Pauls, Karina","id":"78235","last_name":"Pauls","first_name":"Karina"}],"date_created":"2024-01-02T15:30:56Z","volume":5954,"title":"Werken","type":"encyclopedia_article","publication":"Lexikon der Kunstpädagogik","editor":[{"first_name":"Kunibert","full_name":"Bering, Kunibert","last_name":"Bering"},{"first_name":"Rolf","last_name":"Niehoff","full_name":"Niehoff, Rolf"},{"first_name":"Karina","last_name":"Pauls","full_name":"Pauls, Karina"}],"status":"public","_id":"50090","user_id":"78235","series_title":"utb","language":[{"iso":"ger"}]},{"type":"review","publication":"Kunst+Unterricht 459/460","status":"public","user_id":"78235","_id":"50093","language":[{"iso":"ger"}],"publication_status":"published","citation":{"apa":"Pauls, K. (2022). Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven. In <i>Kunst+Unterricht 459/460</i>. Friedrich Verlag.","bibtex":"@article{Pauls_2022, title={Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven}, journal={Kunst+Unterricht 459/460}, publisher={Friedrich Verlag}, author={Pauls, Karina}, year={2022} }","mla":"Pauls, Karina. “Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven.” <i>Kunst+Unterricht 459/460</i>, Friedrich Verlag, 2022.","short":"K. Pauls, Kunst+Unterricht 459/460 (2022).","ieee":"K. Pauls, “Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven,” <i>Kunst+Unterricht 459/460</i>. Friedrich Verlag, 2022.","chicago":"Pauls, Karina. “Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven.” <i>Kunst+Unterricht 459/460</i>. Friedrich Verlag, 2022.","ama":"Pauls K. Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven. <i>Kunst+Unterricht 459/460</i>. Published online 2022."},"year":"2022","author":[{"last_name":"Pauls","id":"78235","full_name":"Pauls, Karina","first_name":"Karina"}],"date_created":"2024-01-02T15:43:10Z","publisher":"Friedrich Verlag","date_updated":"2024-01-02T15:43:22Z","title":"Rezension zu Kunibert Bering: Kunstunterricht und Bildung. Kulturelles Gedächtnis, Globalität, innovative Perspektiven"},{"language":[{"iso":"ger"}],"_id":"50114","user_id":"78235","editor":[{"first_name":"Kunibert","full_name":"Bering, Kunibert","last_name":"Bering"},{"last_name":"Niehoff","full_name":"Niehoff, Rolf","first_name":"Rolf"},{"full_name":"Pauls, Karina","last_name":"Pauls","first_name":"Karina"}],"status":"public","type":"book_editor","title":"Lexikon der Kunstpädagogik","publisher":"ATHENA/wbv","date_updated":"2024-01-03T09:54:09Z","date_created":"2024-01-03T09:35:57Z","place":"Bielefeld","year":"2022","page":"549","citation":{"chicago":"Bering, Kunibert, Rolf Niehoff, and Karina Pauls, eds. <i>Lexikon der Kunstpädagogik</i>. 2nd ed. Bielefeld: ATHENA/wbv, 2022.","ieee":"K. Bering, R. Niehoff, and K. Pauls, Eds., <i>Lexikon der Kunstpädagogik</i>, 2nd ed. Bielefeld: ATHENA/wbv, 2022.","ama":"Bering K, Niehoff R, Pauls K, eds. <i>Lexikon der Kunstpädagogik</i>. 2nd ed. ATHENA/wbv; 2022.","short":"K. Bering, R. Niehoff, K. Pauls, eds., Lexikon der Kunstpädagogik, 2nd ed., ATHENA/wbv, Bielefeld, 2022.","bibtex":"@book{Bering_Niehoff_Pauls_2022, place={Bielefeld}, edition={2}, title={Lexikon der Kunstpädagogik}, publisher={ATHENA/wbv}, year={2022} }","mla":"Bering, Kunibert, et al., editors. <i>Lexikon der Kunstpädagogik</i>. 2nd ed., ATHENA/wbv, 2022.","apa":"Bering, K., Niehoff, R., &#38; Pauls, K. (Eds.). (2022). <i>Lexikon der Kunstpädagogik</i> (2nd ed.). ATHENA/wbv."},"publication_identifier":{"isbn":["978-3-8252-5954-9"]},"publication_status":"published","edition":"2"},{"citation":{"ama":"Moroder M, Grundner M, Damanet F, et al. Stable bipolarons in open quantum systems. <i>Physical Review B 107, 214310 (2023)</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">10.1103/PhysRevB.107.214310</a>","ieee":"M. Moroder <i>et al.</i>, “Stable bipolarons in open quantum systems,” <i>Physical Review B 107, 214310 (2023)</i>, 2022, doi: <a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">10.1103/PhysRevB.107.214310</a>.","chicago":"Moroder, Mattia, Martin Grundner, François Damanet, Ulrich Schollwöck, Sam Mardazad, Stuart Flannigan, Thomas Köhler, and Sebastian Paeckel. “Stable Bipolarons in Open Quantum Systems.” <i>Physical Review B 107, 214310 (2023)</i>, 2022. <a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">https://doi.org/10.1103/PhysRevB.107.214310</a>.","bibtex":"@article{Moroder_Grundner_Damanet_Schollwöck_Mardazad_Flannigan_Köhler_Paeckel_2022, title={Stable bipolarons in open quantum systems}, DOI={<a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">10.1103/PhysRevB.107.214310</a>}, journal={Physical Review B 107, 214310 (2023)}, author={Moroder, Mattia and Grundner, Martin and Damanet, François and Schollwöck, Ulrich and Mardazad, Sam and Flannigan, Stuart and Köhler, Thomas and Paeckel, Sebastian}, year={2022} }","mla":"Moroder, Mattia, et al. “Stable Bipolarons in Open Quantum Systems.” <i>Physical Review B 107, 214310 (2023)</i>, 2022, doi:<a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">10.1103/PhysRevB.107.214310</a>.","short":"M. Moroder, M. Grundner, F. Damanet, U. Schollwöck, S. Mardazad, S. Flannigan, T. Köhler, S. Paeckel, Physical Review B 107, 214310 (2023) (2022).","apa":"Moroder, M., Grundner, M., Damanet, F., Schollwöck, U., Mardazad, S., Flannigan, S., Köhler, T., &#38; Paeckel, S. (2022). Stable bipolarons in open quantum systems. <i>Physical Review B 107, 214310 (2023)</i>. <a href=\"https://doi.org/10.1103/PhysRevB.107.214310\">https://doi.org/10.1103/PhysRevB.107.214310</a>"},"year":"2022","doi":"10.1103/PhysRevB.107.214310","title":"Stable bipolarons in open quantum systems","date_created":"2024-01-04T08:15:28Z","author":[{"last_name":"Moroder","full_name":"Moroder, Mattia","first_name":"Mattia"},{"first_name":"Martin","full_name":"Grundner, Martin","last_name":"Grundner"},{"first_name":"François","full_name":"Damanet, François","last_name":"Damanet"},{"full_name":"Schollwöck, Ulrich","last_name":"Schollwöck","first_name":"Ulrich"},{"full_name":"Mardazad, Sam","last_name":"Mardazad","first_name":"Sam"},{"full_name":"Flannigan, Stuart","last_name":"Flannigan","first_name":"Stuart"},{"full_name":"Köhler, Thomas","last_name":"Köhler","first_name":"Thomas"},{"first_name":"Sebastian","full_name":"Paeckel, Sebastian","last_name":"Paeckel"}],"date_updated":"2024-01-04T08:15:53Z","status":"public","abstract":[{"text":"Recent advances in numerical methods significantly pushed forward the\r\nunderstanding of electrons coupled to quantized lattice vibrations. At this\r\nstage, it becomes increasingly important to also account for the effects of\r\nphysically inevitable environments. In particular, we study the transport\r\nproperties of the Hubbard-Holstein Hamiltonian that models a large class of\r\nmaterials characterized by strong electron-phonon coupling, in contact with a\r\ndissipative environment. Even in the one-dimensional and isolated case,\r\nsimulating the quantum dynamics of such a system with high accuracy is very\r\nchallenging due to the infinite dimensionality of the phononic Hilbert spaces.\r\nFor this reason, the effects of dissipation on the conductance properties of\r\nsuch systems have not been investigated systematically so far. We combine the\r\nnon-Markovian hierarchy of pure states method and the Markovian quantum jumps\r\nmethod with the newly introduced projected purified density-matrix\r\nrenormalization group, creating powerful tensor-network methods for dissipative\r\nquantum many-body systems. Investigating their numerical properties, we find a\r\nsignificant speedup up to a factor $\\sim 30$ compared to conventional\r\ntensor-network techniques. We apply these methods to study dissipative\r\nquenches, aiming for an in-depth understanding of the formation, stability, and\r\nquasi-particle properties of bipolarons. Surprisingly, our results show that in\r\nthe metallic phase dissipation localizes the bipolarons, which is reminiscent\r\nof an indirect quantum Zeno effect. However, the bipolaronic binding energy\r\nremains mainly unaffected, even in the presence of strong dissipation,\r\nexhibiting remarkable bipolaron stability. These findings shed light on the\r\nproblem of designing real materials exhibiting phonon-mediated\r\nhigh-$T_\\mathrm{C}$ superconductivity.","lang":"eng"}],"publication":"Physical Review B 107, 214310 (2023)","type":"journal_article","language":[{"iso":"eng"}],"department":[{"_id":"27"}],"user_id":"67287","external_id":{"arxiv":["2207.08243"]},"_id":"50146","project":[{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"}]},{"status":"public","abstract":[{"text":"We develop a general decomposition of an ensemble of initial density profiles\r\nin terms of an average state and a basis of modes that represent the\r\nevent-by-event fluctuations of the initial state. The basis is determined such\r\nthat the probability distributions of the amplitudes of different modes are\r\nuncorrelated. Based on this decomposition, we quantify the different types and\r\nprobabilities of event-by-event fluctuations in Glauber and Saturation models\r\nand investigate how the various modes affect different characteristics of the\r\ninitial state. We perform simulations of the dynamical evolution with KoMPoST\r\nand MUSIC to investigate the impact of the modes on final-state observables and\r\ntheir correlations.","lang":"eng"}],"type":"journal_article","publication":"Phys. Rev. C 107 (2023) 034905","language":[{"iso":"eng"}],"user_id":"67287","department":[{"_id":"27"}],"project":[{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"_id":"50148","external_id":{"arxiv":["2209.01176"]},"citation":{"short":"N. Borghini, M. Borrell, N. Feld, H. Roch, S. Schlichting, C. Werthmann, Phys. Rev. C 107 (2023) 034905 (2022).","bibtex":"@article{Borghini_Borrell_Feld_Roch_Schlichting_Werthmann_2022, title={Statistical analysis of initial state and final state response in  heavy-ion collisions}, DOI={<a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">10.1103/PhysRevC.107.034905</a>}, journal={Phys. Rev. C 107 (2023) 034905}, author={Borghini, Nicolas and Borrell, Marc and Feld, Nina and Roch, Hendrik and Schlichting, Sören and Werthmann, Clemens}, year={2022} }","mla":"Borghini, Nicolas, et al. “Statistical Analysis of Initial State and Final State Response in  Heavy-Ion Collisions.” <i>Phys. Rev. C 107 (2023) 034905</i>, 2022, doi:<a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">10.1103/PhysRevC.107.034905</a>.","apa":"Borghini, N., Borrell, M., Feld, N., Roch, H., Schlichting, S., &#38; Werthmann, C. (2022). Statistical analysis of initial state and final state response in  heavy-ion collisions. <i>Phys. Rev. C 107 (2023) 034905</i>. <a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">https://doi.org/10.1103/PhysRevC.107.034905</a>","ama":"Borghini N, Borrell M, Feld N, Roch H, Schlichting S, Werthmann C. Statistical analysis of initial state and final state response in  heavy-ion collisions. <i>Phys Rev C 107 (2023) 034905</i>. Published online 2022. doi:<a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">10.1103/PhysRevC.107.034905</a>","chicago":"Borghini, Nicolas, Marc Borrell, Nina Feld, Hendrik Roch, Sören Schlichting, and Clemens Werthmann. “Statistical Analysis of Initial State and Final State Response in  Heavy-Ion Collisions.” <i>Phys. Rev. C 107 (2023) 034905</i>, 2022. <a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">https://doi.org/10.1103/PhysRevC.107.034905</a>.","ieee":"N. Borghini, M. Borrell, N. Feld, H. Roch, S. Schlichting, and C. Werthmann, “Statistical analysis of initial state and final state response in  heavy-ion collisions,” <i>Phys. Rev. C 107 (2023) 034905</i>, 2022, doi: <a href=\"https://doi.org/10.1103/PhysRevC.107.034905\">10.1103/PhysRevC.107.034905</a>."},"year":"2022","doi":"10.1103/PhysRevC.107.034905","title":"Statistical analysis of initial state and final state response in  heavy-ion collisions","author":[{"full_name":"Borghini, Nicolas","last_name":"Borghini","first_name":"Nicolas"},{"last_name":"Borrell","full_name":"Borrell, Marc","first_name":"Marc"},{"first_name":"Nina","full_name":"Feld, Nina","last_name":"Feld"},{"first_name":"Hendrik","last_name":"Roch","full_name":"Roch, Hendrik"},{"first_name":"Sören","last_name":"Schlichting","full_name":"Schlichting, Sören"},{"last_name":"Werthmann","full_name":"Werthmann, Clemens","first_name":"Clemens"}],"date_created":"2024-01-04T08:18:29Z","date_updated":"2024-01-04T08:18:45Z"},{"language":[{"iso":"eng"}],"keyword":["Genetics"],"publication":"Nucleic Acids Research","abstract":[{"text":"<jats:title>Abstract</jats:title>\r\n               <jats:p>RNA editing processes are strikingly different in animals and plants. Up to thousands of specific cytidines are converted into uridines in plant chloroplasts and mitochondria whereas up to millions of adenosines are converted into inosines in animal nucleo-cytosolic RNAs. It is unknown whether these two different RNA editing machineries are mutually incompatible. RNA-binding pentatricopeptide repeat (PPR) proteins are the key factors of plant organelle cytidine-to-uridine RNA editing. The complete absence of PPR mediated editing of cytosolic RNAs might be due to a yet unknown barrier that prevents its activity in the cytosol. Here, we transferred two plant mitochondrial PPR-type editing factors into human cell lines to explore whether they could operate in the nucleo-cytosolic environment. PPR56 and PPR65 not only faithfully edited their native, co-transcribed targets but also different sets of off-targets in the human background transcriptome. More than 900 of such off-targets with editing efficiencies up to 91%, largely explained by known PPR-RNA binding properties, were identified for PPR56. Engineering two crucial amino acid positions in its PPR array led to predictable shifts in target recognition. We conclude that plant PPR editing factors can operate in the entirely different genetic environment of the human nucleo-cytosol and can be intentionally re-engineered towards new targets.</jats:p>","lang":"eng"}],"date_created":"2024-01-04T08:23:01Z","publisher":"Oxford University Press (OUP)","title":"Plant mitochondrial RNA editing factors can perform targeted C-to-U editing of nuclear transcripts in human cells","issue":"17","year":"2022","department":[{"_id":"27"}],"user_id":"67287","_id":"50149","project":[{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"type":"journal_article","status":"public","volume":50,"author":[{"last_name":"Lesch","full_name":"Lesch, Elena","first_name":"Elena"},{"full_name":"Schilling, Maximilian T","last_name":"Schilling","first_name":"Maximilian T"},{"full_name":"Brenner, Sarah","last_name":"Brenner","first_name":"Sarah"},{"first_name":"Yingying","last_name":"Yang","full_name":"Yang, Yingying"},{"full_name":"Gruss, Oliver J","last_name":"Gruss","first_name":"Oliver J"},{"first_name":"Volker","full_name":"Knoop, Volker","last_name":"Knoop"},{"first_name":"Mareike","last_name":"Schallenberg-Rüdinger","full_name":"Schallenberg-Rüdinger, Mareike"}],"date_updated":"2024-01-04T08:23:13Z","doi":"10.1093/nar/gkac752","publication_identifier":{"issn":["0305-1048","1362-4962"]},"publication_status":"published","page":"9966-9983","intvolume":"        50","citation":{"apa":"Lesch, E., Schilling, M. T., Brenner, S., Yang, Y., Gruss, O. J., Knoop, V., &#38; Schallenberg-Rüdinger, M. (2022). Plant mitochondrial RNA editing factors can perform targeted C-to-U editing of nuclear transcripts in human cells. <i>Nucleic Acids Research</i>, <i>50</i>(17), 9966–9983. <a href=\"https://doi.org/10.1093/nar/gkac752\">https://doi.org/10.1093/nar/gkac752</a>","bibtex":"@article{Lesch_Schilling_Brenner_Yang_Gruss_Knoop_Schallenberg-Rüdinger_2022, title={Plant mitochondrial RNA editing factors can perform targeted C-to-U editing of nuclear transcripts in human cells}, volume={50}, DOI={<a href=\"https://doi.org/10.1093/nar/gkac752\">10.1093/nar/gkac752</a>}, number={17}, journal={Nucleic Acids Research}, publisher={Oxford University Press (OUP)}, author={Lesch, Elena and Schilling, Maximilian T and Brenner, Sarah and Yang, Yingying and Gruss, Oliver J and Knoop, Volker and Schallenberg-Rüdinger, Mareike}, year={2022}, pages={9966–9983} }","mla":"Lesch, Elena, et al. “Plant Mitochondrial RNA Editing Factors Can Perform Targeted C-to-U Editing of Nuclear Transcripts in Human Cells.” <i>Nucleic Acids Research</i>, vol. 50, no. 17, Oxford University Press (OUP), 2022, pp. 9966–83, doi:<a href=\"https://doi.org/10.1093/nar/gkac752\">10.1093/nar/gkac752</a>.","short":"E. Lesch, M.T. Schilling, S. Brenner, Y. Yang, O.J. Gruss, V. Knoop, M. Schallenberg-Rüdinger, Nucleic Acids Research 50 (2022) 9966–9983.","ama":"Lesch E, Schilling MT, Brenner S, et al. Plant mitochondrial RNA editing factors can perform targeted C-to-U editing of nuclear transcripts in human cells. <i>Nucleic Acids Research</i>. 2022;50(17):9966-9983. doi:<a href=\"https://doi.org/10.1093/nar/gkac752\">10.1093/nar/gkac752</a>","ieee":"E. Lesch <i>et al.</i>, “Plant mitochondrial RNA editing factors can perform targeted C-to-U editing of nuclear transcripts in human cells,” <i>Nucleic Acids Research</i>, vol. 50, no. 17, pp. 9966–9983, 2022, doi: <a href=\"https://doi.org/10.1093/nar/gkac752\">10.1093/nar/gkac752</a>.","chicago":"Lesch, Elena, Maximilian T Schilling, Sarah Brenner, Yingying Yang, Oliver J Gruss, Volker Knoop, and Mareike Schallenberg-Rüdinger. “Plant Mitochondrial RNA Editing Factors Can Perform Targeted C-to-U Editing of Nuclear Transcripts in Human Cells.” <i>Nucleic Acids Research</i> 50, no. 17 (2022): 9966–83. <a href=\"https://doi.org/10.1093/nar/gkac752\">https://doi.org/10.1093/nar/gkac752</a>."}},{"publication":"Astronomie + Raumfahrt im Unterricht","type":"journal_article","status":"public","department":[{"_id":"43"}],"user_id":"94328","_id":"50184","language":[{"iso":"ger"}],"issue":"2022","publication_identifier":{"issn":["1437-8639"]},"publication_status":"published","intvolume":"         4","page":"21-25","citation":{"chicago":"Hohmann, Sascha. “Das Hubble-Teleskop: Mehr als 30 Jahre Beobachtung.” <i>Astronomie + Raumfahrt im Unterricht</i> 4, no. 2022 (2022): 21–25.","ieee":"S. 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