The structure and function of serially homologous leg motor neurons in the locust. I. Anatomy
- 1 January 1979
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 10 (1) , 41-65
- https://doi.org/10.1002/neu.480100105
Abstract
Twenty‐one prothoracic and 17 mesothoracic motor neurons innervating leg muscles have been identified physiologically and subsequently injected with dye from a microelectrode. A tract containing the primary neurites of motor neurons innervating the retractor unquis, levator and depressor tarsus, flexor tibiae, and reductor femora is described. All motor neurons studied have regions in which their dendritic branches overlap with those of other leg motor neurons. Identified, serially homologous motor neurons in the three thoracic ganglia were found to have: (1) cell bodies at similar locations and morphologically similar primary neurites (e.g., flexor tibiae motor neurons), (2) cell bodies at different locations in each ganglion and morphologically different primary neurites in each ganglion (e.g., fast retractor unguis motor neurons), or (3) cell bodies at similar locations and morphologically similar primary neurites but with a functional switch in one ganglion relative to the function of the neurons in the other two ganglia. As an example of the latter, the morphology of the metathoracic slow extensor tibiae (SETi) motor neurons was similar to that of pro‐and mesothoracic fast extensortibiae (FETi) motor neurons. Similarly the metathoracic FETi bears a striking resemblance to the pro‐ and the mesothoracic SETi. It is proposed that in the metathoracic ganglion the two extensor tibiae motor neurons have switched functions while retaining similar morphologies relative to the structure and function of their pro‐ and mesothoracic serial homologues.This publication has 36 references indexed in Scilit:
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