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Finding the ciliary beating pattern with optimal efficiency.Hydrodynamic synchronization of autonomously oscillating optically trapped particles.The role of initial oligomers in amyloid fibril formation by human stefin B.Working stroke of the kinesin-14, ncd, comprises two substeps of different direction.Five models for myosin V.Elastic lever-arm model for myosin VPhysical limits of flow sensing in the left-right organizer.Myosin V passing over Arp2/3 junctions: branching ratio calculated from the elastic lever arm model.Ensemble velocity of non-processive molecular motors with multiple chemical statesFrequency clustering in spontaneous otoacoustic emissions from a lizard's ear.Twirling motion of actin filaments in gliding assays with nonprocessive Myosin motorsMyosin directionality results from coupling between ATP hydrolysis, lever motion, and actin binding.Minimum requirements for motility of a processive motor protein.The winch model can explain both coordinated and uncoordinated stepping of cytoplasmic dynein.The mechanism of amyloid-fibril formation by stefin B: temperature and protein concentration dependence of the rates.Influence of fluctuations in actin structure on myosin V step size.Non reciprocal skewed rolling of a colloidal wheel due to induced chirality.Cargo Transport by Two Coupled Myosin Va Motors on Actin Filaments and Bundles.Dynamic Assembly of Magnetic Colloidal Vortices.Dynamics and cooperativity of microtubule decoration by the motor protein kinesin11Edited by W. BaumeisterHydrodynamic Flow Patterns and Synchronization of Beating CiliaFabrication of magneto-responsive microgears based on magnetic nanoparticle embedded PDMSComment on "Ferromagnetic microswimmers"Oscillations in molecular motor assembliesGeneric flow profiles induced by a beating ciliumOptimal shapes of surface slip driven self-propelled microswimmersEmergent collective colloidal currents generated via exchange dynamics in a broken dimer stateThe cilium as a force sensor-myth versus realityProlines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin BDiffusive ferromagnetic roller gasFlagella-like Beating of a Single Microtubule
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Q35229315-F0BA18B9-6C03-4E9B-AA3A-C01C43FC5844Q35600717-B13D059D-6FAD-4E5C-91C8-91A72797226FQ37225143-ED95AD8D-4C05-4511-B672-5043E5E462DCQ37379633-ECA3FA9A-2659-4565-BC26-1E2583FA8AEAQ37410282-2E1C21AF-36C7-4EBB-8BE5-F563E31E6351Q40334174-C4F57949-AEB3-461F-BBC5-A0DC62E69641Q41257699-6CA0050D-76BD-41FA-AB5F-B430F66AB1B1Q41871320-24DCBB02-5187-4403-BB2A-E4C43E243F9AQ41882268-719DB7AD-53E2-4C00-B4BC-EF3880D9B7ACQ42065824-B9058476-79C3-45CF-A0E1-84B9A16B739EQ42263121-8895F009-BC81-4BEA-BE6B-591310CBF092Q42590177-0D684D36-5C5C-4517-99B7-32C40BB882A3Q42706678-CACE6660-C109-4CB0-908C-8CEB67B3456EQ42783988-765220C3-FF68-4076-A88E-7E4BDFDFAE5BQ46476689-4439A5CB-98B1-4FDB-A212-C42EAEB2A901Q46821233-6CC242E2-8B39-4AC2-A8B9-DAC1AE07B896Q48238173-37EA1DFF-41DF-4C74-85E1-84F579D2E527Q50324006-99A003C4-14E7-47DE-939A-D4A14F505A21Q50656556-B35B3691-D264-4D51-B764-026E31BF81D1Q56385073-83AF9963-A8EC-47A7-822E-88EC7FBB1076Q57252570-AB3E6AA1-DD51-49DA-945A-9B484227B864Q60895143-FADA4D0B-CA42-4F7B-B867-F3F1BE551548Q83993627-57D09EBE-7903-4313-ABDA-882B26F22285Q84402274-3A1E7BF9-C84D-4D07-ACD1-EC4DA2C899BBQ84780503-F7DB29CE-8777-47CA-842D-E8D5AAE43840Q87366356-16638C30-4A93-4F40-9EB4-24AAD610F8F6Q90384548-C50181E9-520C-4D19-8AF5-7AD96D91DC4DQ92295238-35F240C6-3F82-4848-8F63-6196F4B97611Q92694063-E4F846C7-D0A8-4562-9EF7-5FA06CAE2EA8Q93023564-C14528C6-8166-4FA3-9605-03F9B0D1B5D8Q93173573-BBA259E1-3262-49D5-9E2B-9FE0B4EFC027
P50
description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
ricercatore
@it
հետազոտող
@hy
name
Andrej Vilfan
@ast
Andrej Vilfan
@en
Andrej Vilfan
@es
Andrej Vilfan
@nl
Andrej Vilfan
@sl
type
label
Andrej Vilfan
@ast
Andrej Vilfan
@en
Andrej Vilfan
@es
Andrej Vilfan
@nl
Andrej Vilfan
@sl
prefLabel
Andrej Vilfan
@ast
Andrej Vilfan
@en
Andrej Vilfan
@es
Andrej Vilfan
@nl
Andrej Vilfan
@sl
P214
P1053
B-1042-2008
P106
P1153
6602515272
P21
P214
P31
P3829
P496
0000-0001-8985-6072
P734
P7859
viaf-20562917