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[Anatomical characteristics of the veins of the midbrain in vertebrates].

The venous bed has been studied in brain preparations of some Vertebrata (fishes, amphibia, reptiles, birds) with injection of the vessels. It has been noted that together with the morphological regularity in the structure of the midbrain portions, certain structural principles of its blood bed are kept. The venous outflow reflects the intermediate position of the midbrain: some blood in the animals studied flows from the midbrain into the basilar vein system, another portion of the blood flows into a tributary of the future central vein. Anatomical peculiarities of the midbrain veins in the animals studied demonstrate that it is the functional activity that determines the circulation in this part of the brain.

Amphibians↗

[Muscle abnormalities on the back of the hand and their differentiation from soft-tissue tumors].

Anomalous muscles at the hand and forearm are described in several studies. They may be confused with ganglia or with other soft-tissue tumours. Two rare cases of atavistic muscles in the area of the back of the hand are described which caused intense pain of the wrist during some months. During the operation an enlongated muscle directly below the extensor tendon, was found which was covered by the extensor retinaculum. It is an extensor digiti brevis manus, which exists in amphibia and is replaced in man by the long tendonous part of the extensor digitorum.

Adult↗

[Effect of section of the hypoglossal nerve on the glossopharyngeal-hypoglossal reflex in the frog].

This research concerns the modulation by lingual afferences of the reflex activity of frog XII nucleus. Some informations on the processes utilized to obtain this effect has been achieved by comparing the glossopharyngeal-hypoglossal reflex evoked bilaterally after excision of one hypoglossal nerve. The reflex response and electrotonic potential become more intense omolaterally to the section of XII at the IV-V day; However these effects disappear later (XII-XV day). These observations completely disagree with the presence of a large injury normally produced in the nucleus of XII by retrograde motoneuron degeneration. The reflex facilitation has been attributed therefore to the degeneration of the afferent component which is associated in the amphibia to the XII and exerts centrally a PAD effects.

Animals↗

Ca and P concentrations of the urodele tooth as revealed by electron microprobe analysis.

The electron microprobe analysis has been used to determine the concentrations of Ca and P in different regions of functional teeth in adult Salamandra salamandra (Amphibia, Urodela). Ca and P levels were found to be more elevated in the dentine shaft below the apex than in its basal part and in the pedicel. The concentrations are similar to those measured in teeth of higher vertebrates.

Animals↗

Internal histoincompatability during amphibian metamorphosis?

Larval amphibia are immunologically competent. Yet during metamorphosis, various regressive and progressive processes replace larval with adult structures. These new structures are thought to arise in an immunological environment which provides protection from rejection of non-larval targets. Pre-metamorphic larvae and post-metamorphic adults require carrier-primed amplification in order to generate an anti-hapten response. However, we find that the response to a single challenge of the hapten, TNP, conjugated to a thymus-dependent (TD) carrier, sheep erythrocytes, is substantial in the absence of carrier priming early in metamorphosis. In contrast, the response to TNP on LPS, a thymus-independent carrier, is unaffected by metamorphosis, We suggest that a unique internal histoincompatibility between larval and adult lymphoid cells may provide a substitute for the carrier-priming requirement in the hapten-TD carrier response during metamorphosis.

Animals↗

Transcriptionally active chromatin in loops of lampbrush chromosomes at physiological salt concentrations as revealed by electron microscopy of sections.

The structural organization of the transcribed loops of lampbrush chromosomes present in the vegetative nuclei of the green algae, Acetabularia mediterranea and A. crenulata, and in oocyte nuclei of the newt, Pleurodeles waltlii, has been studied by electron microscopy of relatively thick (100--200 nm) and ultrathin sections through chromosomes prepared and fixed at physiological salt concentrations. The procedure allows the direct comparison of the same chromosome or chromosome region by light and electron microscopy, that means identification of the transcriptional arrays in specific loops. After such preparations the loop axis reveals regions that are smoothly-contoured ("non-beaded") and only 4 to 7 nm thick and are clearly different from supranucleosomal forms of inactive chromatin fibrils as well as from extended filaments of nucleosomal granules examined in parallel. This indicates that the chromatin of the loops axis of intensely transcribed regions is in a structural form different from that of non-transcribed chromatin. A similarly thin axis has been identified in loops of chromosomes of nuclei fixed in situ. The lateral ribonucleoprotein (RNP) fibrils associated with transcribed loop regions appear as serial arrays of granules, often of regular size, which are smaller in the chromosomes of Acetabularia (mean diameter 18 nm) than in those of amphibia (mean diameter 28 nm). Discontinuous arrays of lateral RNP fibrils and fibril arrays with different polarity are found in some loops. Certain loops and loop regions are characterized by specific patterns of aggregation of such lateral RNP fibrils which appear to correspond to the "granules" visible in these loops in the light microscope. The observations show that arrays of transcriptional complexes in chromosome loops can be visualized in thin sections of material prepared at physiological ionic strength with similar resolution and clarity as in spread preparations of chromosomal material dispersed in extremely low salts buffers. The results are interpreted to approximate the organization of loop structures in vivo and to show that, at physiological ionic strength, the chromatin of the loop axis is organized in a form different from that characteristic of non-transcribed chromatin.

Chlorophyta↗

[Ultrastructural and cytochemical characters of the primordial germ cells of the Anuran amphibians (author's transl)].

Transmission electron microscopy was used to study Anura Amphibia primordial germ cells (PGCs). Our results demonstrate the evidence of an extracellular matrix and many various cellular junctions between the somatic cells and the PGCs. Furthermore, from cytochemical investigation, it appears that there is abundant cytoplasmic glycogen and also membrane adenyl-cyclase activity. At last, the results are analysed, discussed and related to the hypothesis of the guidance of the migration of the Anura PGCs by cAMP diffusing from the chordo-mesoderm.

Adenylyl Cyclases↗

Comparative study of the distribution of fuzzy coat, lectin receptors, and intramembrane particles of the ciliary membrane.

Cilia from seminal vesicles of Discoglossus (Anura, Amphibia) are partially covered with a fuzzy coat easily stained by the PATAg technique. The freeze-fractures of the ciliary membrane show large intramembrane particles (IMPs) not randomly distributed. At the base of the cilium, 3 or 4 rows of large IMPs form the ciliary necklace. Above the necklace, a 0.1 micrometer high region is devoid of particles after which the shaft membrane exhibits large IMPs coarsely lined up in 9 longitudinal rows 0.6 micrometer in height. Smaller IMPs appear randomly dispersed. The fuzzy coat is well developed in regions possessing large IMPs: the necklace region and the basal portion of the shaft. Between the necklace and the shaft, the region lacking in IMPs is also devoid of fuzzy coat. The distribution of Con A receptors is similar to that of large IMPs and to that of filaments in the fuzzy coat. On the contrary, wheat germ agglutinin (WGA) receptors are randomly distributed all along the ciliary membrane. Finally, the relationships between fuzzy coat, lectin receptors, IMPs and fibrillar links between plasma membrane and microtubules of the axoneme are illustrated.

Animals↗

Macrophage disappearance reaction in Rana esculenta induced by specific antigen and rabbit lymphokines.

Macrophage disappearance reaction was induced by intraperitoneal injections of specific antigens in Rana esculenta sensitized by bovine gamma globulin and Mycobacterium bovis BCG. Rabbit lymphokines derived from concanavalin A stimulated blood lymphocytes injected intraperitoneally were able to induce macrophage disappearance reaction in normal Rana esculenta. This suggests that mammalian lymphokines are capable of acting in amphibia. Mammalian lymphokines have not an exclusive class-specificity in vertebrates.

Animals↗

[Modulation of T4 to T3 conversion. Comparative aspects (author's transl)].

The peripheral conversion of T4 to T3 has been demonstrated in primitive Vertebrates, larval Lampreys (which do not have thyroid follicles but synthesize T3 and T4 in the endostyle) and in more evolved Vertebrates. Up to now the presence of rT3 has never been demonstrated in fish, its eventual role in Amphibia remains to be established but seems important in chick embryo. The conversion of T4 to T3 is stimulated during amphibian metamorphosis and in salt water fish, concurrently with stimulation of thyroidal secretion. In fish, prolactin stimulates 5-deiodination of T4 directly without the involvement of the pituitary thyroid axis.

Amphibians↗

Comparative anatomy of the extrinsic ocular muscles in vertebrates.

Comparative anatomy of the orbita throughout various vertebrates revealed that the extrinsic ocular muscles vary in shape and number, and it was suggested that the original form of the 3 straight (superior, inferior, and temporalis) and one oblique (superior) muscles serve to conduct their components into various types of differentiation and degeneration. Differentiation of the extrinsic ocular muscles from 4 origins seems to depend both on early independence of the M. obliquus inferior and M. rectus nasalis leading to the primitive pattern of Cyclostomata and Pisces, and new gradual development of the M. retractor bulbi, M. membranae nictitans, and M. palpebralis toward Amphibia and Amniota, in order to move the bulbus and eyelid more complicately. Degeneration, on the contrary, implied partial reduction of original muscles together with their nerves and complete disappearance of them. Occasional division of the M. obliquus superior and M. palpebralis into 2 parts with the same innervation, moreover, suggests the probable appearance of new muscles in relation to eye movement and in animal species not yet examined. These changes, including the original form, primitive pattern, and most differentiated types, were summarized schematically in 27 species of vertebrates.

Amphibians↗

Chloride conductance of mesangial cells. Insights into the transcellular signaling of tubuloglomerular feedback and its physiological significance.

In each nephron, a change in Cl delivered to the macula densa affects afferent arteriolar tone, and thus SNGFR. This phenomenon, called tubuloglomerular feedback (TGF), is the main function of the juxtaglomerular apparatus (JGA) and serves as the fine regulator of SNGFR. The phylogeny of the JGA strongly suggests that its physiological significance may be closely related to autoregulation of RPF and GFR and that JGA and TGF will allow maintenance of SNGFR in the face of low sodium intake. We propose that JGA, which appeared from amphibia, was a prerequisite, during evolution, for transition to terrestrial life style where abundant sodium intake was not guaranteed. In other words, our nephron is in essence a salt-conserving machinery to maintain SNGFR. Further, resetting of TGF or maladaptation of TGF in the presence of abundant salt intake may underlie the pathogenesis of essential hypertension.

Animals↗

[The morphology of the endocrine portion of the amphibian pancreas].

It has been shown that the endocrinous part of the pancreas in amphibia is formed of A-, B- and D-cells. B-cells are always disposed around sinusoid capillaries, while A- and D-cells lie on the islet periphery and often have no contact with capillaries. In addition to islets in the pancreas there are remnants of the so-called "external" epithelium which is represented by solitary B-cells, located in the wall of small excretory ducts. In the periinsular zone there are numerous acino-islets of A-, B- and D-types among which B-cells are prevailing.

Animals↗

[Phylogenetic vision of bile acids].

Bile acids are the most important solutes of bile: they are essential in cholesterol degradation, solubilization and excretion; they are determinants of bile flow and secretion; and their role is crucial in the intestinal absorption of lipids and lipid soluble vitamins. In amphibia and in cartilaginous fish, the 27C cholestane molecule is hydroxylated to alcohols. In birds, the terminal 27C-OH group is oxydated to cholestanoic acids. In vertebrates of a more recent evolutionary origin, the lateral chain is shortened to 24C and oxydated to cholestanoic acids. Further transformations include chemical changes in the cholestane skeleton and in the lateral chain (hydroxylations, dehydroxylations, epimerization, etc). In the intestinal lumen, the saprophytic flora provides enzymes catalysing new changes that originate "secondary" bile acids. During entero-hepatic circulation, another variety of bile acids appear, commonly termed "tertiary" bile acids. A recent study of Lee R Hagey characterized bile acid composition of over 600 species of vertebrates, showing that bile acid composition of bile has been the subject of an interesting evolutionary phenomenon and that it is a chemical marker of biodiversity in vertebrates.

Animals↗

Cardio-respiratory modeling in fishes and the consequences of the evolution of airbreathing.

The microcirculation of the respiratory organ of water and air breathing vertebrates is similar and can be described as sheet flow. The gross morphologies of the systems, however, are very different and reflect the properties of the medium. The fish heart has a single ventricle that forces blood first through the gills and then through the body. The pressure in the gills is higher than in the systemic circulation, the reverse of the situation seen in mammals. The gill epithelium is thicker than that in the lung and is involved in ionic and acid-base functions carried out in the kidney of mammals. Gills stick together in air. Therefore, fish breathe air using some other structure, such as the gut or mouth, the swimbladder, or the skin. The gills are retained for carbon dioxide excretion and ion and acid-base regulation. This results in a separation of oxygen uptake and carbon dioxide excretion. The gills are often modified in air-breathing fish such that venous blood flows to well developed gills for carbon dioxide and acid excretion, whereas oxygenated blood flow bypasses the gills. This is the beginning of a separation of flows in the heart which is more highly developed in amphibians and reptiles and complete in mammals. The loss of gills requires transfer of ionic and acid base regulation processes to the skin in amphibia and to the kidney in reptiles and mammals, allowing a completely terrestrial existence. The organization of the venous system is influenced by the degree of support offered by the medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Air↗

Cone photoreceptor regeneration in adult fish retina: phenotypic determination and mosaic pattern formation.

The retina of anamniotes (fish and amphibia), unlike the CNS of most vertebrates, can regenerate neurons following injury. Using the highly ordered mosaic of single and double cones in the retina of the adult green sunfish (Lepomis cyanellus) as our model system, we examined the events that followed the surgical excision of a small patch of central retina. After surgery there was a transient elevation in the number, and a change in the distribution, of proliferative cells within the retina. The wound was filled in two ways: a proliferative regeneration of new retina and a nonproliferative movement of the wound boundaries toward the center of the lesion. The nonproliferative movement stretched the surrounding, intact retina. In stretched retina the basic pattern of the cone mosaic was maintained, but it was augmented by new cones, even though cones are not normally generated in intact central retina. The stretch itself likely triggered the anomalous cone production. The new and preexisting cones in stretched retina had their morphological phenotypes influenced by mutual contact, often resulting in atypical morphologies (triple and quadruple cones). In the center of the lesioned area, the regenerated cone mosaic was disordered, had a higher than normal cone density, and contained atypical morphologies. The presence of outer segments and synaptic pedicles suggested that the new cones in regenerated and stretched retina were functional. We interpret these results to mean (1) a stretch-induced decrease in cell density can trigger a compensatory, adaptive neurogenesis, (2) cone morphological phenotypes in fish retina are plastic throughout life, and are influenced by cone-cone contacts, (3) the mechanisms that spatially regulate cone production during normal growth are disrupted regeneration.

Animals↗

Blood supply to the amphibian mesonephros.

The purpose of the present study was to describe geometry of branching, topography and sources of blood vessels supplying the mesonephros of three different species of amphibia and to infere from the results their common and species-specific features. The detailed information on arrangement of portal and arterial blood supply to mesonephros is necessary for better understanding of the conditions under which these kidneys function. For this reason the blood vessels of the mesonephros of adult Hynobius Keyserlingi, Triturus vulgaris and Rana temporaria were injected with stained gelatin. The urodelian kidneys were shown to be supplied by numerous segmental arteries. Three types of arterial supply to glomeruli were distinguished: those mediated by short, medium and long branches, which create different physical conditions for the glomerular filtration in pertinent nephrons--as the blood pressure necessarily decreases with the increasing distance from the aorta. The tributaries to the renal portal vein were identified in all three species as the veins draining hind limbs, tail, pelvis and body wall. It is being suggested that the purpose of this large drainage area is to secure a sufficient volume of blood to the peritubular network.

Amphibians↗

[Morphology of the endocrine portion of the reptile pancreas].

The endocrinous part of the pancreatic gland of reptiles Lacerta agilis, Agama sanguinolenta, Varanus griseus, Testudo horsfieldi and Clemmus Caspica is formed by A-, B- and D-cells. The main form of its structural organization is pancreatic islands. In adition to them, remnants of the "external epithelium" are found in Varanus griseus and A-cells disposed outside of the pancreatic islands in Testudo horsfieldi and Clemmys caspica. As compared with amphibia, reptiles have a better developed counterinsular component (A-cells) of the endocrinous part of the pancreas. The acino-island cells of "A" and "D" types are also found in the pancreas of reptiles, "A"-type cells being predominant among them.

Animals↗