Results 211 to 220 of about 68,124 (256)
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Slow axonal transport

Current Biology, 1992
New studies provide further evidence that the neuronal cytoskeleton is the product of a dynamic interplay between axonal transport processes and locally regulated assembly mechanisms. These data confirm that the axonal cytoskeleton in mammalian systems is largely stationary and is maintained by a smaller pool of moving subunits or polymers. Slow axonal
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Axonal transport versus dendritic transport

Journal of Neurobiology, 2003
AbstractNeurons have polarized processes for information output and input, axons, and dendrites. This polarized architecture is essential for the neuronal function. An increasing number of molecular components that mediate neuronal polarity establishment have been characterized over the past few years.
Mitsutoshi, Setou   +2 more
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Axonal transport in the asymmetric optic axons of flatfish

Experimental Neurology, 1974
Abstract Axonal transport of protein was studied in the asymmetric optic axons of adult flounders, Pseudopleuronectes americanus . In these animals, the right optic nerve averaged 36% longer than the left optic nerve. There was no significant difference between the two sides in optic tract length or retinal ganglion cell body size.
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Axonal transport—II. Convection

Bulletin of Mathematical Biology, 1976
The phenomenon of axonal transport has been well documented (Ochs, 971; Lasek, 1970; and Grafstein, 1967). In a previous paper, we showed how diffusion alone could not account for this process. In this report we show that convection or convection with diffusion can account for the observed build-up of material.
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Axonal Transport

2021
Abstract Axonal transport is fundamental for neuronal survival and maintenance of neuronal connectivity and synaptic function. Anterograde transport delivers membrane-bound organelles synthesized and packaged in the cell body to the axon and synaptic compartments, and also allows traffic and turnover of cytoskeletal and metabolic ...
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Axonal transport—I. Diffusion

Bulletin of Mathematical Biology, 1976
The phenomenon of axonal transport of material has been well documented (Ochs, 1971; Lasek, 1970; and Grafstein, 1967). This report seeks to establish the role of diffusion—if any—in such a transport process. We report that diffusion cannot account for the observed build-up of material as reported in the literature.
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Microtubule Transport in the Axon

2002
There has been a great deal of interest in how the microtubule array of the axon is established and maintained. In an early model, it was proposed that microtubules are actively transported from the cell body of the neuron down the length of the axon.
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A model for fast axonal transport

Cell Motility, 1985
AbstractA model for fast axonal transport is developed in which the essential features are that organelles may interact with mechanochemical cross‐bridges that in turn interact with microtubules, forming an organelle‐engine‐microtubule complex which is transported along the microtubules.
J J, Blum, M C, Reed
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Axonal transport in neurological disease

Annals of Neurology, 1988
AbstractThe axonal transport systems have a wide variety of primary roles and secondary responses in neurological disease processes. Recent advances in understanding these roles have built on the increasingly detailed insights into the cell biology of the axon and its supporting cells.
J W, Griffin, D F, Watson
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