Atomic force microscopy reveals important differences in axonal resistance to injury

scientific article

Atomic force microscopy reveals important differences in axonal resistance to injury is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.BPJ.2012.07.003
P932PMC publication ID3414878
P698PubMed publication ID22947856
P5875ResearchGate publication ID230796799

P2093author name stringDavid R Colman
Nela Durisic
Peter Grütter
Margaret H Magdesian
Peter Thostrup
Dalinda Liazoghli
Fernando S Sanchez
Monserratt Lopez
Wiam Belkaid
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Mechanical breaking of microtubules in axons during dynamic stretch injury underlies delayed elasticity, microtubule disassembly, and axon degeneration.Q33890998
On soliton propagation in biomembranes and nervesQ33896003
Quantitative analysis of the viscoelastic properties of thin regions of fibroblasts using atomic force microscopyQ34185089
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Traumatically induced axonal injury: pathogenesis and pathobiological implicationsQ35243746
Axonal degeneration is mediated by the mitochondrial permeability transition pore.Q35633387
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Axon degeneration mechanisms: commonality amid diversityQ36285969
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Softness, strength and self-repair in intermediate filament networksQ36831240
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Neurofilament cross-bridging competes with kinesin-dependent association of neurofilaments with microtubulesQ39802184
The pathobiology of traumatically induced axonal injury in animals and humans: a review of current thoughtsQ41017976
A mechanistic analysis of nondisruptive axonal injury: a reviewQ41563658
Mechanisms of axonal spheroid formation in central nervous system Wallerian degenerationQ43085973
Cytotypic differences in the protein composition of the axonally transported cytoskeleton in mammalian neuronsQ45163907
Microfluidic culture platform for neuroscience researchQ46771334
Mechanically-induced membrane poration causes axonal beading and localized cytoskeletal damageQ47620401
Enduring cognitive, neurobehavioral and histopathological changes persist for up to one year following severe experimental brain injury in ratsQ48394352
Neurofilaments bind tubulin and modulate its polymerizationQ48468866
Non-Hertzian approach to analyzing mechanical properties of endothelial cells probed by atomic force microscopy.Q51251256
Pathology of experimental nerve compression.Q51807038
Traumatic brain injuryQ54273190
Changes in fast axonal transport during experimental nerve compression at low pressures.Q54545266
Loss of axonal microtubules and neurofilaments after stretch-injury to guinea pig optic nerve fibers.Q54724275
Developments in neuronal cell cultureQ59050425
Diffuse axonal injury in head injury: definition, diagnosis and gradingQ69698410
Experiments on the mechanism of nerve growthQ79589633
P433issue3
P407language of work or nameEnglishQ1860
P1104number of pages10
P304page(s)405-414
P577publication date2012-08-01
P1433published inBiophysical JournalQ2032955
P1476titleAtomic force microscopy reveals important differences in axonal resistance to injury
P478volume103

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