Published July 6, 1981 | Version v1
Journal article

Molecular diffusion cannot account for spreading of isotope distribution peaks during rapid axoplasmic transport

  • 1. Texas Woman's Univ., Denton (USA)

Description

Diffusion coefficients calculated from spreading peaks of isotope distributions formed during rapid axoplasmic transport are two orders of magnitude larger than coefficients established for proteins in water. For slow transport, however, the coefficients approximate those of diffusion in water. The authors propose a near-equilibrium partitioning mass transfer process as the major source of peak spreading during rapid transport and suggest the axon can be modeled by a chromatographic column. (Auth.)

Additional details

Publishing Information

Journal Title
Brain Res.
Journal Volume
216
Journal Issue
1
Series
Brain Res.
Journal Page Range
215-218
ISSN
0006-8993