Sensory and other superficial structures in living marine Crustacea
- 1 January 1985
- journal article
- Published by Cambridge University Press (CUP) in Earth and Environmental Science Transactions of the Royal Society of Edinburgh
- Vol. 76 (2-3) , 123-136
- https://doi.org/10.1017/s0263593300010397
Abstract
Living Crustacea possess many types of sensory receptors that detect environmental signals. These structures allow the speculation that similar organs existed in fossil arthropods and were involved in similar ways in the fossil forms when they were extant.Posture, for example, is difficult to reconstruct in fossils without the understanding that internal proprioceptors monitoring position and movement are crucial in determining the placement of limbs, and the position of the abdomen and other jointed portions of the body. These receptors are associated also with autotomy reflexes through soft cuticle detectors that respond to strain not associated with joints.Many receptors are placed on the outer surface of the animal, the eyes being the most obvious. The eyes receive no attention in this paper, but descriptions are given of a number of different types of setae, serving both mechanical and chemical sensors. The possession of a pore at the apex (or sub-apex) of a seta or setule probably indicates a chemoreceptor function, but its absence does not necessarily indicate a lack of such sensitivity. A range of forms is illustrated.The dorsal organ is a recently discovered structure in decapod larvae. It is composed of a central single gland cell opening via an aperture in the midline just behind the rostrum. It is bounded by four depressions each containing a central ‘nipple’. These prove to be sensors, with ciliated endings (bifid) that end in a highly modified cuticle at the depression nipple. The function is unknown, but it is proposed that it represents an unusual chemoreceptor.Keywords
This publication has 43 references indexed in Scilit:
- A new type of water vibration receptor on the crayfish antennaJournal of Comparative Physiology A, 1981
- A crustacean statocyst with only three hairs: Light and scanning electron microscopyJournal of Morphology, 1981
- Campaniform sensilla: Another vibration receptor in the crab legThe Science of Nature, 1980
- Inhibition of oesophageal peristalsis in the lobster after chemical stimulationNature, 1978
- Sense organs on the antennal flagellum of mayflies (Ephemeroptera)Journal of Morphology, 1977
- The integumental organs of amphipodsJournal of the Marine Biological Association of the United Kingdom, 1975
- Observations on the Occurrence of an Epizooic, Blue-Green Alga on the Chemoreceptor Setae of the Brown Shrimp, Crangon Crangon (L.)Journal of the Marine Biological Association of the United Kingdom, 1974
- The Comparative Anatomy of leg Proprioceptors in some Decapod CrustaceaJournal of the Marine Biological Association of the United Kingdom, 1972
- The setae of Eurydice pulchra (Crustacea: Isopoda)Journal of Zoology, 1972
- AMINO ACID SENSITIVITY OF THE DACTYL CHEMORECEPTORS OF CARCINIDES MAENASThe Biological Bulletin, 1961