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The epithelium of the rim of the octopus sucker is the site of several different types of primary receptors. One is a non-ciliated cell with unusual characteristics. (1) The surface of the cell is extremely irregular with finger-like extensions of cytoplasm, especially far reaching in the basal region. (2) The slender neck contains a canal whose apical opening is in contact with the environment. This canal is lined with microvilli and contains granular material in an electron-dense matrix. (3) Patches of presumed glycogen granules occur throughout the cell, being especially abundant in the outer reaches of the cytoplasmic extensions. Their presence, together with numerous mitochondria and free ribosomes, indicate a high intrinsic metabolism. (4) Small fascicles of microtubules are randomly situated throughout the perikaryon. They gather into a coherent system of larger and larger bundles which ultimately enter the axon leading from the cell. This axon extends some distance in the basal region of the epithelium before crossing the subepithelial space to enter the infundibular muscle. Possible functions of this cell are discussed. On the basis of its specific position on the sucker and its intrinsic morphology we suggest that it is a mechanoreceptor involved in shape and/or negative pressure discrimination.  相似文献   
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Summary The cephalic aorta of Octopus vulgaris has a fairly complete endothelium lining the lumen, a thick complete basement membrane, a layer of circularly orientated and a layer of longitudinally orientated muscle fibres. Presumptive synaptic endings are of two types. In the circular muscle, axons containing vesicles, contact club-shaped projections of the muscle. The gap between the pre- and postsynaptic membranes is less than 100 Å and in some places apparently forms a tight junction. The second type of ending has been found in the longitudinal muscle; here axons full of vesicles end on the muscle. The ending is enclosed by a mesaxon of muscle and the synaptic gap is approximately 100 Å. In the smaller blood vessels, axons end on myofilament-containing pericytes of blood vessels (equivalent to small arterioles). The endings contain vesicles and have a synaptic gap of 100 Å. Only some of the pericytes seem to be innervated and transmission between one pericyte to another may be mediated by specialized junctions between the cells. The smaller non-myofilament containing vessels (equivalent to capillaries) are not thought to be innervated.We would like to thank Professor J. Z. Young and Dr. E. G. Gray for advice and encouragement, Mrs. Jane Astafiev for drawing Figs. 1 and 12, Mr. S. Waterman for photography, and Miss Cheryl Martin for secretarial assistance.  相似文献   
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Summary Blood vessels of the perioesophageal nerve ganglia (brain) of Octopus vulgaris and the stellate ganglia of Sepia officinalis are described. The vessels have an incomplete endothelium, a complete basement membrane and a complete investment of pericytes. The pericytes are joined by specialised membrane junctions but these are not tight junctions. The main type of neuron/vessel arrangement is one where there is a collagen-filled space between the pericytes and the surrounding glial cells. Axons or neurons are sometimes applied directly to the vessel pericytes and in the neuropil, pericytes contact glial cells that ensheath bundles of axons. Blood spaces between neurons are also present.We would like thank Professor J. Z. Young and Dr. E. G. Gray for encouragement and advice, Mrs. Jane Astafiev for drawing Fig. 11, Mr. S. Waterman for photographic assistance and Miss Cheryl Martin for secretarial and other assistance.  相似文献   
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Putative mechanoreceptor neurons in the cuticularized epithelium of the suckers of the squid Lolliguncula brevis, were investigated using light and electron microscope techniques. These neurons were found to have a multipolar shape, thick unbranched axon, glial cell ensheathment, and accessory nerve fiber innervation. The need for electrophysiological and/or behavioral studies on these putative mechanoreceptors is emphasized.  相似文献   
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Morphological investigations on the fungiform papilla of the frog (Rana pipiens) have shown that this taste organ contains two distinct populations of cells: associate and sensory. Messages received by the sensory cells are believed to be transmitted through the mediation of an adrenergic transmitter. This chemical was shown by fluorescence microscopy and electron histochemistry to be stored in synaptic granular vesicles which accumulate at the membrane of the cytoplasmic processes of the sensory cells in typical chemical synaptic complexes. The sensory cell cytoplasmic processes form the presynaptic component of these complexes whose post synaptic components are the nerve fibres supplying the taste buds. These sensory nerve fibres contain agranular vesticles and are probably cholinergic, since they show positive cholinesterase activity at the light and electron microscopical levels.  相似文献   
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