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Journal ArticleDOI

The morphological and physiological properties of a regenerating synapse in the C.N.S. of the leech.

TLDR
These experiments indicate that the regenerating neuron is guided to its proper synaptic target by recognizing and following its severed distal stump and then continues growing to synapse with the target.
Abstract
Regeneration of an electrical synapse between particular interneurons in the medicinal leech was traced physiologically and morphologically using intracellular recording the horseradish peroxidase (HRP) injection. The synapse between S-cell interneurons lies in the connective midway between segmental ganglia, so crushing near one ganglion severs only one S-cell's axon. The severed distal stump remains connected to the adjacent uninjured S-cell and continues for weeks to conduct impulses. The injured cell regenerates, while its uninjured "target" neuron in the next ganglion does not grow. After the sprouts of the regenerating neuron cross the crush, one or a few branches grow along the surviving distal stump toward the original synapse. After about one month when the region of original synapse has been reached, regenerating neurons form electrical junctions and stop growing. Thereafter electrical coupling improves in stages. Within two months the regenerated neuron attains full caliber, the stump degenerates and function is normal. In some instances within days or weeks of crushing, the regenerating neuron forms a basket of synapses upon its severed distal stump and then continues growing to synapse with the target. When this occurs, electrical coupling and subsequent impulse transmission between S-cells rapidly resumes. These experiments indicated that the regenerating neuron is guided to its proper synaptic target by recognizing and following its severed distal stump. Sometimes the distal stump itself becomes an intermediate synaptic target.

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Citations
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Journal ArticleDOI

The neural circuit for touch sensitivity in Caenorhabditis elegans

TL;DR: In this article, the synaptic relationships among these cells have been deduced from reconstructions from serial section electron micrographs, and assessed by examining the behavior of animals after selective killing of precursors of the cells by laser microsurgery.
Journal ArticleDOI

Lucifer dyes--highly fluorescent dyes for biological tracing.

TL;DR: Lucifer dyes show promise for backfilling neurones through cut nerves, for visualizing the results of retrograde axonal transport and for the covalent labelling of macromolecules.
Journal ArticleDOI

Enhanced spinal cord regeneration in lamprey by applied electric fields

TL;DR: Enhanced regeneration was observed in the severed giant reticulospinal neurons and processes from giant axons with swollen irregular tips, indicating active growth, were seen in or across the spinal lesion in most of the electrically treated animals.
Journal ArticleDOI

Membrane properties and selective connexions of identified leech neurones in culture.

TL;DR: Individual, identified neurones, dissected from the central nervous system of the leech and maintained in culture for several weeks, sprouted processes and formed synaptic connexions.
Journal ArticleDOI

Transmission at a ‘direct’ electrical connexion mediated by an interneurone in the leech.

TL;DR: The touch cell's geometry and membrane properties account for the failure of impulses that are generated in certain portions of the receptive field in the skin to propagate beyond the first branch‐points of the touch cell axon within the ganglion.
References
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Journal ArticleDOI

A simplified lead citrate stain for use in electron microscopy.

TL;DR: This communication reports the use of a commercially available lead citratO to eliminate the lead citrate stain in electron microscopy.
Journal ArticleDOI

Reinnervation of muscle fiber basal lamina after removal of myofibers. Differentiation of regenerating axons at original synaptic sites.

TL;DR: Within the terminals, the synaptic organelles line up opposite periodic specializations in the myofiber's BL, demonstrating that components associated with the BL play a role in organizing the differentiation of the nerve terminal.
Journal ArticleDOI

Permeability and Structure of Junctional Membranes at an Electrotonic Synapse

TL;DR: Electron microscopy after fixation in the presence of lanthanum hydroxide indicates that these synapses are "gap junctions" and that there is a network of channels continuous with extracellular space between apposed junctional membranes.
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