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Biomedical subjects

Z Halata

Publications and source records attributed to Z Halata.

At least 73 records · Page 4Linked to original sources

[Postnatal development of sensory nerve endings in the hairless nose skin of the cat].

The postnatal development of sensory nerve endings has been studied in the skin of the planum nasale of the cat. The Merkel nerve endings develop in the prenatal period; after birth some redundant axons perish. Up to the third postnatal day, sporadic Merkel cells and nerve terminals still can be observed in the stratum papillare of the dermis. The free nerve endings in the dermis appear before birth. In the postnatal period the nerve fibres as well as the nerve endings ramify. A few of them come into contact with the stratum basale of the epidermis, others may perish. Most of these nerve endings are located in the stratum papillare of the dermis. The simple encapsulated corpuscles with an inner core develop after birth. In the depth of the dermis, the corpuscles are arranged mainly in groups, in the stratum papillare, however, they are more isolated. The development of those corpuscles, located in the depth of the dermis, already begins before birth and finishes mostly about the 39th postnatal day. The development of the corpuscles in the stratum papillare starts later and ends between the 3rd and 4th month. The nerve terminal of the corpuscle changes only slightly during development. It elongates, becomes thicker, and the number of mitochondria increases. During all stages it sends cytoplasmic spines in between the lamellar system of the inner core. The inner core is formed by cytoplasmic lamellae of the peripheric glial cells. In the course of development the number of cytoplasmic lamellae increases, they become thinner and gradually each one will be covered by a basal lamina. A mature corpuscle possesses an inner core with one or two longitudinal clefts. These clefts occur more frequently in corpuscles with complete capsules. The connective tissue cells primarily form a primitive capsule around the inner core. During development the layers of the capsule increase in number. Mature corpuscles have a one- to four-layered capsule. The capsular cells are then ensheathed by a basal lamina.

Aging↗

Sensory nerve endings in rhesus monkey sinus hairs.

The sensory innervation of primate sinus hairs has been studied by light and electron microscopy. For light microscopy paraffin sections as well as thick frozen sections were impregnated with silver and compared with serial semi-thin sections of tissue prepared for electron microscopy. One type of sensory terminal is present in the epidermis surrounding the hair follicle, and four specific nerve terminals have been identified within the blood sinus. An epidermal rete ridge collar encircles the hair shaft and contains approximately 200 Merkel cell-neurite complexes. Numerous other Merkel cell-neurite complexes are present in the external root sheath of the hair follicle beneath a thick glassy membrane innervated by approximately 65 nerve fibers. At this level 10-15 lanceolate or palisade terminals are situated in the connective tissue. Up to 10 simple encapsulated corpuscles can be identified above the level of lanceolate endings and Merkel cell terminals. Ruffini corpuscles are closely applied to the glassy membrane below the lanceolate and Merkel terminals at the level where nerve fibers penetrate the capsule of the sinus. All of these terminals are supplied by 80-100 large diameter myelinated fibers distributed approximately as follows: 65 innervate Merkel cell-neurite complexes, 15 to lanceolate, 10 to simple corpuscles, and 10 to Ruffini corpuscles. The innervation of the rete ridge collar is independent of that of the sinus consisting of 10-12 fibers derived from the superficial dermal network. Each of these sensory terminals can be correlated with specific functional parameters as described in numerous neurophysiologic studies. Merkel cell-neurite complexes and Ruffini corpuscles ae slowly adapting receptors; lanceolate terminals and simple corpuscles are rapidly adapting receptors.

Animals↗

The sensory innervation of primate eyelid.

The skin of primate eyelid contains three distinctive sensory nerve terminals. Small down hairs have a collar of lanceolate terminals that are formed by ramifications of the six to eight myelinated afferent fibers. Extensions of Schwann-cell cytoplasm form masses of cytoplasmic lamellae associated with these terminals. Every large hair or eyelash contains a large pilo-Ruffini as well as sparse lanceolate terminals. The eyelash Ruffini corpuscle resembles those of monkey facial guard hairs, sinus hairs, and joint capsules of the cat and pigeon. Sparse lanceolate terminals present between the Ruffini corpuscle and eyelash external root sheath resemble those of vellus hairs. On rare occasion Merkel cells are present in the hair follicle external root sheath above the sebaceous gland. Merkel touch spots, or Tastscheiben, are located between contiguous eyelashes as small rete pegs containing several Merkel cell-neurite complexes innervated by one or two myelinated afferent fibers. The function of this array of sensory terminals is presumed to represent an extensive mechanism of protection for the cornea and globe. On the basis of studies reported to date we can conclude that the Ruffini corpuscles (and related receptors) are the ubiquitous mechanoreceptors of cutaneous and musculoskeletal systems in birds as well as mammals.

Animals↗

The ultrastructure of Ruffini and Herbst corpuscles in the articular capsule of domestic pigeon.

The present study identifies two types of sensory nerve endings in the articular capsule of the shoulder joint of domestic pigeons: Ruffini corpuscles (spray-like endings), and Herbst corpuscles. Ruffini corpuscles occur in the fibrous membrane of the articular capsule and consist of two to four branched cylindrical segments within a network of fascicles of collagen fibers. At the terminal ends of the cylinders the perineural sheaths of the capsule are deficient and surround the fascicles of collagen fibers. The axon terminals in each cylindrical segment of a Ruffini corpuscle repeatedly ramify, giving rise to delicate neurite profiles. These neurites and associated Schwann cells envelope small fascicles of collagen fibrils. Schwann cells cover only a part of the neurite profiles. The myelinated afferent axon enters the midregion of the cylinder and has a diameter of approximately 3 micrometer. Herbst corpuscles are situated in the subsynovial connective tissue and in the transition zone between the fibrous membrane and the muscular fascia. They appear as elongated ovals in longitudinal section and round in cross section. Small corpuscles measure approximately 5 micrometer x 200 micrometer in length and large ones approximately 100 micrometer x 600 micrometer. Each has a myelinated afferent axon (diameter 2.5--7.5 micrometer) that terminates in one to three inner cores. The inner core contains the nonmyelinated receptor portion of the nerve fiber surrounded by numerous cytoplasmic lamellae, a subcapsular connective tissue space, and a perineural capsule of eight to 12 layers. Avian joint receptors are similar to those present in the skin of various birds and Ruffini corpuscles resemble in fine structure equivalent receptors in joint corpuscles of the domestic cat.

Animals↗

Comparative studies on the pre- and postterminal blood vessels in the cerebellar cortex of Rhesus monkey, cat, and rat.

In the rhesus monkey, cat and rat, pial arteries give off branches which run vertically through all three layers of the cerebellar cortex. The large cortical arteries are surrounded by a perivascular space in the molecular layer. Their wall consists of several layers of smooth-muscle cells and the luminal endothelium. As the arteries reach the deeper layers of the cerebellar cortex, the number of smooth-muscle cells is reduced. In the rat, sometimes no smooth-muscle cells are detectable in the preterminal arterial vessels. If these deep arteries branch off by dichotomy of terminal vessels there occurs a gradual or complete loss of myocytes in all three species. In the cat, where cortical arteries give off branches at right angles, there is a sphincter-like accumulation of smooth-muscle cells at the opening to the smaller branch. The postterminal vessels and veins in all species exhibit the same mural structure found in capillaries. The wall consists only of an endothelium and occasional pericytes embedded in the basal lamina. Even the large veins which run to the pial veins show this simple mural structure.

Animals↗

The ultrastructure of the sensory nerve endings in the articular capsule of the knee joint of the domestic cat (Ruffini corpuscles and Pacinian corpuscles).

Two types of mechanoreceptor have been found in the articular capsule of the knee joint of the domestic cat--Ruffini corpuscles and Pacinian corpuscles. Ruffini corpuscles are situated in the stratum fibrosum and consist of 2 to 6 cylinders. Each cylinder is made up of an afferent axon (diameter 3-4 micrometer), its swellings and terminal processes, Schwann cells enveloping the nerve swellings and terminal processes, endoneural connective tissue and a perineural capsule. The perineural capsule is incomplete in Ruffini corpuscles. The Pacinian corpuscles are 20 to 40 micrometer wide and 150-250 micrometer long. They are situated in groups of up to five at the boundary between the stratum synoviale and the stratum fibrosum. The afferent axon is myelinated (diameter 3-5 micrometer). Its terminal portion is inside the inner bulb which is formed of modified Schwann cells. Each corpuscle is enveloped by a perineural capsule (4-8 layers). The ultrastructure of the Pacinian corpuscles is compared with the ultrastructure of the skin receptors in the cat.

Animals↗

Innervation of the synovial membrane of the cats joint capsule.

Results of investigations on the occurrence of nerve fibres and endings in the synovial membrane of the knee and elbow joint in the cat are reported. The stratum synoviale contains only autonomic fibres, running in the adventitia of arteries. Free nerve endings are lacking in the stratum synoviale. Simple Pacinian corpuscles with an inner core are occasionally observed in the border zone between the stratum synoviale and fibrosum. The ultrastructure of these endorgans resembles that of Pacinian corpuscles in the hairless and hairy skin of the cat.

Animals↗