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  2. College of Medicine / 醫學院
  3. Anatomy and Cell Biology / 解剖學暨細胞生物學研究所
  4. Neurofilament distribution and organization in the myelinated axons of the peripheral nervous system
 
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Neurofilament distribution and organization in the myelinated axons of the peripheral nervous system

Journal
Brain Research
Journal Volume
642
Journal Issue
1-2
Pages
316-326
Date Issued
1994
Author(s)
SUNG-TSANG HSIEH  
Crawford T.O.
Griffin J.W.
DOI
10.1016/0006-8993(94)90937-7
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0028213063&doi=10.1016%2f0006-8993%2894%2990937-7&partnerID=40&md5=7061e0814bb87684551387565de69fbf
https://scholars.lib.ntu.edu.tw/handle/123456789/467849
Abstract
The nature of neurofilament organization within the axonal cytoskeleton has been the subject of controversy for many years. Previous reports have suggested that neurofilaments are randomly distributed in the radial dimension of the myelinated axon. Randomness of distribution implies that there is no interaction between neurofilaments, while order in distribution suggest the presence of forces between neurofilaments. To address the issue of randomness vs. order, we evaluated neurofilament distribution by two different statistical approaches-nearest-neighbor distance and the Poisson tile-counting method. Neurofilament nearest-neighbor distances in a myelinated axon differ from nearest-neighbor distances of a set of random points with similar density (40.6 ± 7.0 nm vs. 30.7 ± 12.9 nm, P < 0.0001). The Poisson tile-counting method also indicated that neurofilament distribution is different from a random distribution, under conditions of appropriate tile size and masking of other organelles. To further characterize the distribution of neurofilaments, we compared the relationship between nearest-neighbor distance and density for three sets of data: evenly spaced points, randomly distributed points and measured neurofilament coordinates. Neurofilaments do not conform to either evenly spaced or random distribution models. Instead, neurofilament distribution falls into an intermediate position between evenly spaced and random distributions. This study also demonstrates that the nearest-neighbor distance method of assessing neurofilament distribution offers several technical and theoretical advantages to the Poisson tile-counting method. © 1994.
Type
journal article

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