Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
about
Ergodicity breaking on the neuronal surface emerges from random switching between diffusive states.Elucidating distinct ion channel populations on the surface of hippocampal neurons via single-particle tracking recurrence analysis.Transient subdiffusion from an Ising environment.Effects of soft interactions and bound mobility on diffusion in crowded environments: a model of sticky and slippery obstacles.Diffusion-limited reactions in dynamic heterogeneous mediaNumerical Simulation and FRAP Experiments Show That the Plasma Membrane Binding Protein PH-EFA6 Does Not Exhibit Anomalous Subdiffusion in CellsSenomic view of the cell: Senome GenomeCholesterol modulates acetylcholine receptor diffusion by tuning confinement sojourns and nanocluster stability
P2860
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P2860
Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
description
2017 nî lūn-bûn
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2017年の論文
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2017年学术文章
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2017年学术文章
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2017年学术文章
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2017年学术文章
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2017年学术文章
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2017年學術文章
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2017年學術文章
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2017年學術文章
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name
Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
@en
type
label
Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
@en
prefLabel
Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
@en
P2093
P2860
P1433
P1476
Plasma Membrane is Compartmentalized by a Self-Similar Cortical Actin Meshwork
@en
P2093
Jenny L Higgins
Michael M Tamkun
Patrick C Mannion
P2860
P356
10.1103/PHYSREVX.7.011031
P577
2017-01-01T00:00:00Z
P698
P818
1702.03997