Locomotion and neuromuscular system of Aglantha digitale
- 1 April 1978
- journal article
- research article
- Published by Springer Nature in Cell and tissue research
- Vol. 188 (2) , 317-327
- https://doi.org/10.1007/bf00222640
Abstract
Summary Aglantha digitale swims in two ways: a slow rhythmical swim typical of hydromedusae in general and a sudden rapid movement that appears to be an escape response. The swimming musculature is an extremely well developed striated circular muscle layer that possesses a sarcoplasmic reticulum. The nervous system of this species can be divided into three units: an inner nerve ring and an outer nerve ring, which are joined by unusually large transmesogleal pathways, a group of giant axons that extends over the surface of the swimming muscle, and the radial canal. Well developed ciliated sensory cells are located on the exumbrellar surface of the margin. Consideration of these properties of the organisation of this species suggests that normal slow swimming is controlled by a mechanism similar to that found in other medusae, while the escape response is the result of the action of the giant axons.Keywords
This publication has 10 references indexed in Scilit:
- Electrically Coupled, Photosensitive Neurons Control Swimming in a JellyfishScience, 1977
- Neurobiology of Stomotoca. I. Action systemsJournal of Neurobiology, 1975
- Statocysts of hydromedusaeCell and tissue research, 1975
- Ultrastructure of mechanoreceptors of the polyp Coryne pintneri (hydrozoa, athecata)Experimental Cell Research, 1972
- Myoid Conduction in the Siphonophore Nanomia bijugaNature, 1971
- Statocysts of medusae and evolution of stereociliaTissue and Cell, 1969
- Epithelial Conduction in HydromedusaeThe Journal of general physiology, 1968
- A SIMPLIFIED LEAD CITRATE STAIN FOR USE IN ELECTRON MICROSCOPYThe Journal of cell biology, 1965
- Muscle in coelenterates.1962
- Embedding in Epoxy Resins for Ultrathin Sectioning in Electron MicroscopyStain Technology, 1960