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At least 19 recordsLinked to original sources

Comparative anatomy, physiology, and function of the upper respiratory tract.

The anatomical characteristics of the upper respiratory tract of various experimental animals and man are described. There are a number of differences and similarities macroscopically and microscopically between the species. Perhaps one of the most obvious examples of anatomical differences is in the structure of the turbinates. Some of the differences could affect deposition and clearance of particles in the nasal cavities. Effects of compounds in the nasal cavity, larynx, and trachea can differ depending on the cellular composition of the mucosa.

Anatomy, Comparative

The submuscular aponeurotic system (SMAS): a histologic and comparative anatomy evaluation.

The submuscular aponeurotic system (SMAS) has been steeped in controversy. The goal of our anatomic study was to further clarify the existence of the SMAS. With an operating microscope, we performed dissections in 10 fresh cadaver heads (20 hemiheads) exposing the SMAS through a face lift incision. Through the operating microscope we were able to identify the SMAS and its relationship to other anatomic structures. Full-thickness longitudinal sections were obtained for routine histologic studies along various surgically relevant regions of the SMAS. In addition, dissections were accomplished with the operating microscope on 12 rhesus monkey fetuses ranging in age from a few weeks to 8 months. Data obtained from the fresh cadaver microdissections, topographic histology, and comparative anatomy revealed the presence of the SMAS as a distinct fibromuscular layer composed of the platysma muscle, parotid fascia, and fibromuscular layer covering the cheek.

Adipose Tissue

Preliminary study of the comparative anatomy of the external nose of South America monkeys.

This is a preliminary study on the comparative microscopic anatomy of the external noses of platyrrhine monkeys. Platyrrhinism is caused by the lateral width of the internarium (Alar cartilages, soft tissue in the sulcus interalaris covered by the integument). The septum nasi, situated caudal to the internarium is not involved in platyrrhinism. Aotus and Alouatta are, according to the definition, truely playtrrhine. The division of the higher primates into Platyrrhina and Catarrhina is justified. The anterior surface of the internarium (sinus hairs) is a sensorial area.

Alouatta

Comparative anatomy of the intestine of Cyprinus carpio Linnaeus 1758 and Salmo trutta Linnaeus 1758.

The anatomy of carp and trout was compared by means of anatomical dissection and frozen cross-sections. This enabled exact topographical localization and hence also the determination of differences in the position of individual intestinal segments. The elaboration of a suitable nomenclature was considered to be an important working measure for the facilitation of interspecific comparison.

Animals

Comparative anatomy and histology of the radial artery and the internal thoracic artery. Implication for coronary artery bypass.

Anatomical characteristics of the radial a. were compared to those of the internal thoracic a., considered as a gold standard in coronary surgery. The length, the diameter, the collateral distribution and the wall thickness of these two arteries were studied comparatively. In addition, a comparative histological analysis was carried out. Anatomical and histological characteristics of these two arteries have important implications for coronary artery bypass.

Angiography

Comparative anatomy of the vitreous body in rhesus monkeys and man.

In the isolated unfixed vitreous body a structural organization can be visualized by slitlamp microscopy or by an ink-injection technique. We discuss the observations on human and rhesus monkey (Macaca mulatta) vitreous bodies using the ink-injection technique. Advantages and disadvantages of this method compared with slitlamp microscopy are described. Eventual functional implications of vitreal organization are mentioned briefly.

Animals

Comparative anatomy of the arterial vascularization of the hippocampus in man and in experimental animals (cat, rabbit and sheep).

The studies were performed by the authors' injection method on 30 human brains and 80 animal ones. The cerebral arteries were injected with synthetic coloured latex and then prepared in an operating microscope. It was found that the main source of arterial supply of both the human and animal hippocampus is the posterior cerebral artery. However, this artery has different origins in the arterial circle of the brain in man, cat, rabbit and sheep. Comparative investigations have also proved that the hippocampal vascular system in man and animals is very similar. It is formed by branches of the posterior cerebral artery and of the anterior choroidal artery, called the hippocampal arteries, and by numerous internal hippocampal arterioles arising from them at right angle. The regional distribution of these arterioles is impossible to describe because of their variable course in the hippocampal cortex and of the similar vascularization of different cortical areas of the hippocampus. The studies have also shown that the hippocampal arterial system is very well developed and makes collateral circulation possible. Extracerebral segments of the hippocampal arterioles in human senile brains, and chiefly in brains with atherosclerosis, showed different deformations in the form of siphon-like structures, knot-loops and vascular glomeruli.

Animals

Comparative anatomy and phylogeny of the cloacae of salamanders (Amphibia: Caudata). VI. Ambystomatidae and Dicamptodontidae.

Histology of the cloacae of Rhyacotriton olympicus and representative species from the genera Ambystoma and Dicamptodon was examined by light microscopy. Females of Ambystoma possess sperm storage glands, the spermathecae, as well as ventral glands and dorsal glands, both of uncertain function. Females of Ambystoma examined from the subgenus Linguaelapsus differ from those in the subgenus Ambystoma by possessing more extensive ventral gland clusters and a shorter cloacal tube. Females of Dicamptodon possess spermathecae and ventral glands, but differ in cloacal conformation from females of Ambystoma and lack the dorsal glands. Females of R. olympicus possess more extensive epidermal lining in the cloaca than that found in females of Ambystoma and Dicamptodon, and the only glands present are spermathecae, which cluster around a tube in the dorsal roof. Males of Ambystoma, Dicamptodon, and R. olympicus possess five types of cloacal glands (dorsal pelvic glands, lateral pelvic glands, anterior ventral glands, posterior ventral glands, and Kingsbury's glands) that function in spermatophore formation, and vent glands that may produce a courtship pheromone. In Ambystoma and Dicamptodon, vent glands secrete along the medial borders of the cloacal orifice. Males of A. opacum and A. talpoideum differ from males of other species examined from the two genera by possessing more extensive vent glands. Males of R. olympicus possess unique vent glands in which tubules secrete onto the surface of vent lobes lateral to the posterior end of the cloacal orifice, and distal ends of the glands pass anteriorly, superficial to the fascia enclosing the other cloacal glands. The results from analysis of cloacal anatomy support other data indicating that Ambystoma and Dicamptodon are sister groups, and that Rhyacotriton olympicus is not closely related to either of the other two genera and merits placement in a separate family.

Ambystomatidae