001     10889
005     20240610120148.0
024 7 _ |2 pmid
|a pmid:20712984
024 7 _ |2 pmc
|a pmc:PMC2920720
024 7 _ |2 DOI
|a 10.1016/j.bpj.2010.05.015
024 7 _ |2 WOS
|a WOS:000281103200004
024 7 _ |a altmetric:1969474
|2 altmetric
037 _ _ |a PreJuSER-10889
041 _ _ |a eng
082 _ _ |a 570
084 _ _ |2 WoS
|a Biophysics
100 1 _ |a Elgeti, J.
|b 0
|u FZJ
|0 P:(DE-Juel1)130629
245 _ _ |a Hydrodynamics of Sperm Cells near Surfaces
260 _ _ |a New York, NY
|b Rockefeller Univ. Press
|c 2010
300 _ _ |a 1018 - 1026
336 7 _ |a Journal Article
|0 PUB:(DE-HGF)16
|2 PUB:(DE-HGF)
336 7 _ |a Output Types/Journal article
|2 DataCite
336 7 _ |a Journal Article
|0 0
|2 EndNote
336 7 _ |a ARTICLE
|2 BibTeX
336 7 _ |a JOURNAL_ARTICLE
|2 ORCID
336 7 _ |a article
|2 DRIVER
440 _ 0 |a Biophysical Journal
|x 0006-3495
|0 882
|y 4
|v 99
500 _ _ |a Record converted from VDB: 12.11.2012
520 _ _ |a Sperm are propelled by an actively beating tail, and display a wide variety of swimming patterns. When confined between two parallel walls, sperm swim either in circles or on curvilinear trajectories close to the walls. We employ mesoscale hydrodynamics simulations in combination with a mechanical sperm model to study the swimming behavior near walls. The simulations show that sperm become captured at the wall due to the hydrodynamic flow fields which are generated by the flagellar beat. The circular trajectories are determined by the chiral asymmetry of the sperm shape. For strong (weak) chirality, sperm swim in tight (wide) circles, with the beating plane of the flagellum oriented perpendicular (parallel) to the wall. For comparison, we also perform simulations based on a local anisotropic friction of the flagellum. In this resistive force approximation, surface adhesion and circular swimming patterns are obtained as well. However, the adhesion mechanism is now due to steric repulsion, and the orientation of the beating plane is different. Our model provides a theoretical framework that explains several distinct swimming behaviors of sperm near and far from a wall. Moreover, the model suggests a mechanism by which sperm navigate in a chemical gradient via a change of their shape.
536 _ _ |a BioSoft: Makromolekulare Systeme und biologische Informationsverarbeitung
|c P45
|2 G:(DE-HGF)
|0 G:(DE-Juel1)FUEK505
|x 0
588 _ _ |a Dataset connected to Web of Science, Pubmed
650 _ 2 |2 MeSH
|a Animals
650 _ 2 |2 MeSH
|a Anisotropy
650 _ 2 |2 MeSH
|a Biomechanics: physiology
650 _ 2 |2 MeSH
|a Cell Adhesion: physiology
650 _ 2 |2 MeSH
|a Elasticity
650 _ 2 |2 MeSH
|a Friction
650 _ 2 |2 MeSH
|a Male
650 _ 2 |2 MeSH
|a Models, Biological
650 _ 2 |2 MeSH
|a Rotation
650 _ 2 |2 MeSH
|a Sperm Motility: physiology
650 _ 2 |2 MeSH
|a Sperm Tail: physiology
650 _ 2 |2 MeSH
|a Spermatozoa: cytology
650 _ 2 |2 MeSH
|a Spermatozoa: physiology
650 _ 2 |2 MeSH
|a Surface Properties
650 _ 7 |a J
|2 WoSType
700 1 _ |a Kaupp, U. B.
|b 1
|u FZJ
|0 P:(DE-Juel1)VDB728
700 1 _ |a Gompper, G.
|b 2
|u FZJ
|0 P:(DE-Juel1)130665
773 _ _ |a 10.1016/j.bpj.2010.05.015
|g Vol. 99, p. 1018 - 1026
|p 1018 - 1026
|q 99<1018 - 1026
|0 PERI:(DE-600)1477214-0
|t Biophysical journal
|v 99
|y 2010
|x 0006-3495
856 7 _ |2 Pubmed Central
|u http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2920720
909 C O |o oai:juser.fz-juelich.de:10889
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913 1 _ |k P45
|v BioSoft: Makromolekulare Systeme und biologische Informationsverarbeitung
|l Biologische Informationsverarbeitung
|b Schlüsseltechnologien
|0 G:(DE-Juel1)FUEK505
|x 0
913 2 _ |a DE-HGF
|b Key Technologies
|l BioSoft Fundamentals for future Technologies in the fields of Soft Matter and Life Sciences
|1 G:(DE-HGF)POF3-550
|0 G:(DE-HGF)POF3-553
|2 G:(DE-HGF)POF3-500
|v Physical Basis of Diseases
|x 0
914 1 _ |y 2010
915 _ _ |0 StatID:(DE-HGF)0010
|a JCR/ISI refereed
920 1 _ |k IFF-2
|l Theorie der Weichen Materie und Biophysik
|d 31.12.2010
|g IFF
|0 I:(DE-Juel1)VDB782
|x 0
920 1 _ |k IAS-2
|l Theorie der Weichen Materie und Biophysik
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970 _ _ |a VDB:(DE-Juel1)121548
980 _ _ |a VDB
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980 _ _ |a journal
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980 _ _ |a I:(DE-Juel1)IAS-2-20090406
980 _ _ |a UNRESTRICTED
981 _ _ |a I:(DE-Juel1)IBI-5-20200312
981 _ _ |a I:(DE-Juel1)IAS-2-20090406
981 _ _ |a I:(DE-Juel1)ICS-2-20110106
981 _ _ |a I:(DE-Juel1)IAS-2-20090406


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