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Mammal and flea relationships in the Great Basin Desert: from H. J. Egoscue's collections.

Host-parasite association among 58 flea species parasitizing 40 mammal species in the Great Basin Desert of the western United States was investigated. Increased flea species richness was correlated with larger geographic ranges and stable locomotion of hosts. Hosts from habitats of moderately low productivity (sage and grass) and of Peromyscus maniculatus size, 10-33 g, had the highest flea species richness. Larger hosts had fewer flea species, but fleas were more prevalent. Increased host species richness correlated with flea species eye size. Mammals clustered into 3 major and 1 minor ecological groups, and fleas clustered into 2 major groups among rodents, and 6 minor groups, forming 12 host-parasite biocenoses. Factors producing biocenoses were shared burrows of mice and rats; food chains of hares, rabbits, squirrels, and their predators; keystone mammals: Lagurus curtatus, Neotoma lepida, Ochotona princeps, and Spermophilus townsendii; keystone fleas: Megabothris abantis, and Meringis hubbardi; or host isolation, Neotoma cinerea with Oropsylla montana, Sorex vagrans with Corrodopsylla curvata, and Tadarida brasiliensis with Sternopsylla distincta. Although host relatedness accounted for flea prevalence, host sociality explained the presence or absence of mammal-flea relationships.

Animals↗

Sexual differentiation in litter-bearing mammals: influence of sex of adjacent fetuses in utero.

In rodents and swine, individual differences in a broad range of characteristics correlate with intrauterine position during fetal life. By identifying the intrauterine position of mice at cesarean delivery, we can predict reliably postnatal reproductive traits such as genital morphology, timing of puberty, length of estrous cycles, timing of reproductive senescence, sexual attractiveness, sexual behavior, aggressiveness, daily activity level, body weight and tissue enzyme activity in females; in males we can predict genital and brain morphology, sexual behavior, aggressiveness, daily activity level, body weight, and tissue enzyme activity. In mice, as in all mammals, male fetuses have greater concentrations of testosterone than do females. In addition, female mouse fetuses have greater circulating concentrations of estradiol than do male fetuses, a condition not found in all mammals. A mouse fetus positioned between males has greater concentrations of testosterone than does a fetus of the same sex positioned between females, and a fetus positioned between females has greater concentrations of estradiol than does a fetus of the same sex positioned between males. Gonadal steroids regulate differentiation of secondary sexual characteristics. Studies in which the effects of intrauterine position have been eliminated by exposing fetuses to steroid receptor blockers reveal the critical role of steroids in mediating this phenomenon. The intrauterine position phenomenon provides the only mammalian model for relating postnatal traits to concentrations of endogenous hormones to which individuals are exposed during fetal life. Results from studies using this naturally occurring experimental system in litter-bearing species have given insights concerning the consequences of individual differences in steroid concentrations during sexual differentiation that likely apply to all mammals. One specific hypothesis is that circulating estradiol may interact with testosterone in mediating some aspects of sexual differentiation in rodents and, thus, possibly in other mammals.

Animals↗

Bacteria and fungi of marine mammals: a review.

A list of the different bacterial and fungal agents isolated from marine mammals in different parts of the world is presented. Importance is given to some of the most recently identified bacterial agents, including Actinobacillus delphinicola, A. scotiae, and Brucella spp. A list, in alphabetical order, of bacteria recovered from different tissues or organs from marine mammals is presented for the integumentary, respiratory, digestive, genitourinary, and reticuloendothelial systems. Infectious bacterial agents associated with abscesses and with cases of septicemia are also listed. Information about the different fungal agents recovered from marine mammals is summarized. A section covering some of the zoonotic infectious agents recovered from marine mammals is included.

Animal Diseases↗

[Neuroanatomy of the nuclear vestibular complex in the syrian hamster. Comparison with other mammals].

The vestibular complex has been studied since the fifties. The general conclusion of research on many mammals is that the vestibular complex has four main vestibular nuclei and some less constantly associated neuronal groups. The general distribution of the four main vestibular nuclei in the hamster does not differ substantially from that of other mammals: humans, many primates, cat, opossom, rabbit, chinchilla, guinea pig, etc. Of the many associated groups that have been described, we clearly identified groups < >, < >, < >, < >, and the interstitial nucleus of the vestibular nucleus of Cajal. However, the latter seems to be less developed than in other mammals. We present results and a map of serial sections of the vestibular area showing the most characteristic anatomic relations with brainstem structures, and the most relevant cytomorphometric results compared with other mammals.

Animals↗

[Comparative analysis of vestibular system development in various groups of mammals living under different environmental conditions].

We have conducted for the first time a comparative study of the prenatal development of the vestibular system in representatives of pinnipeds (Phocidae, Otariidae, Odobenidae) and cetaceans (Odontoceti, Mysticeti) in comparison with terrestrial mammals. This allowed us to perform a detailed study of the structural organization of the inner ear in species with different ecological specialization, to find out adaptive aspects and stages of the formation of cochlear and vestibular structures in each of the studied species, and to correlate it with the properties of the environment. Studies on early embryogenesis of the labyrinth in cetaceans and pinnipeds, which represent a special direction in the evolution of placentates, give a significant contribution to the solution of problem about the evolutionary origin of the labyrinth in mammals studied. Sensory systems clearly demonstrate the scope of evolutionary and adaptive transformations, which appear in mammals during the transition from the terrestrial to the aquatic mode of life. At the same time, these results may provide help in understanding the general trends of the development of structure and function of the inner ear in mammals as a whole.

Animals↗

The importance of the evolutionary heritage of locomotion on flat ground in small mammals for the development of arboreality.

The earliest representatives of the mammalian stem line were small. Recent small mammals preserving their morphology possess rather similar kinematic and dynamic locomotor patterns, even if they are not closely related. For a small animal, the mechanics of locomotion on a large branch is comparable to locomotion on flat ground. Combining these informations, it seems sensible to start a discussion on the origins of arboreality with a detailed analysis of the locomotion of small mammals on flat ground. For this purpose, the kinematics of twelve species of mammals were observed using cineradiography, a "general limb" of small mammals was derived as a principle, and its interactions with the trunk were analyzed. These data form the basis for a theoretical upscaling of the motion patterns in arboreal animals, revealing that the transfer of torques between animal and branch becomes unavoidable, thus making the use of prehensile hands advantageous, which by their tendency of distal concentration of muscle masses force the need to change the basic kinematic patterns.

Animals↗

Role of the Office International des Epizooties in protecting the health of free-ranging mammals.

The various activities undertaken by the Office International des Epizooties (OIE) since 1924 to protect the helth of free-ranging mammals are outlined and discussed. Two types of activity have been conducted over the years: --The first type promotes measures to protect the health of free-ranging mammals in order to safeguard the health of domestic animals and human beings. These measures have prevented the propagation of the highly contagious diseases of animals and the more serious zoonoses. --The second type aims at protecting the health of free-ranging mammals in order to maintain the fauna and the natural equilibrium. Ecological and epidemiological studies are promoted with a view to effective management of wildlife populations and overcoming the associated health risks. By virtue of its close contacts with officials in charge of animal health in 126 Member Countries, the OIE has made a noteworthy contribution to the protection of populations of free-ranging mammals.

Animals↗

[Jaws of predatory mammals].

Mammals are classified into the three types by chewing manner:predatory mammals, herbivorous mammals, and omnivorous mammals. The mechanism of mastication was correlate with the development and topography of muscles and depending on the arrangement of the teeth and mandibular joint. The predatory animals are characterised by the fact that the muscles which open and close the mouth are particularly powerful while those muscles responsible for grinding action are relatively poorly developed. And the shape of mandibular joint is restricted to the movement of mandible.

Animals↗

The island rule in large mammals: paleontology meets ecology.

The island rule is the phenomenon of the miniaturization of large animals and the gigantism of small animals on islands, with mammals providing the classic case studies. Several explanations for this pattern have been suggested, and departures from the predictions of this rule are common among mammals of differing body size, trophic habits, and phylogenetic affinities. Here we offer a new explanation for the evolution of body size of large insular mammals, using evidence from both living and fossil island faunal assemblages. We demonstrate that the extent of dwarfism in ungulates depends on the existence of competitors and, to a lesser extent, on the presence of predators. In contrast, competition and predation have little or no effect on insular carnivore body size, which is influenced by the nature of the resource base. We suggest dwarfism in large herbivores is an outcome of the fitness increase resulting from the acceleration of reproduction in low-mortality environments. Carnivore size is dependent on the abundance and size of their prey. Size evolution of large mammals in different trophic levels has different underlying mechanisms, resulting in different patterns. Absolute body size may be only an indirect predictor of size evolution, with ecological interactions playing a major role.

Animals↗

Helminthiasis and toxoplasmosis among exotic mammals at the Santiago National Zoo.

Parasitologic evaluations of 112 fecal specimens from 292 mammals from the Santiago National Zoo (36 specimens were pooled specimens from greater than or equal to 2 animals) indicated that 51 mammals had protozoa or helminths in their feces. Most of the parasites in the herbivorous species were trichurids and strongylids, whereas most of the parasites in the carnivorous species were ascarids. Coccidia spp and Giardia spp were the most frequently detected protozoans in the mammals evaluated. Of 127 captive mammals serologically evaluated for antibodies against Toxoplasma gondii (indirect hemagglutination test), 35 (27.5%) were positive for T gondii: 7 (46.6%) of 15 carnivores, 24 (25.2%) of 95 artyodactyls, and 4 (22.5%) of 17 nonhuman primates. Antibodies against T gondii also were found in 8 of 10 domestic cats captured within the zoo and in 6 of 13 volunteer zookeepers.

Animals↗

[Report of inaccuracies in the study of the dentition of mammals].

After discussing the existing view points and on the base of author's own studies, the designation of premolars and molars is proposed in the deciduous and permanent dentition of placental mammals, corresponding to the function, form, and structure of the teeth. With the admittance of the molars in the deciduous dentition of mammals, the discrepancy between milk dentition of mammals and humans is eliminated. In this way, the molars of deciduous dentition appeared to be the precursors of premolars and molars of permanent dentition. The separate groups of teeth are differentiated depending on the way of life and kind of consumed food, according to position and function of the teeth in the dentition. Lacerating teeth, premolars are formed in carnivora mammals for tearing off the food, and in case of intensive masticatory function of herbivora and omnivora, very likely, from the same germs of premolars, the molars are formed.

Animals↗

[Evolutionary aspects of the distribution of Ascaridoidea in mammals (author's transl)].

In an attempt to interpret the distribution of Ascaridoidea in Mammals and Birds, a scheme is proposed, based on the concept of geological periods of evolutionary expansion for parasitic lines. It is assumed that the evolutionary expansion period of Ascaridoidea in Mammals occurred after the diversification of primitive mammals; this would explain the absence of ascarids in these groups. Periods of evolution appear to coincide with the diversification of Carnivora and Sirenia, the first to become invaded; Artiodactyla and Equidae became invaded later, at the time of their diversification. The other cases of parasitism of Mammals by Ascarids are thought to be "captures".

Animals↗

[Phosphatase activity of Pasteurella multocida strains isolated from poultry and mammals].

The qualitative test of Berber et al. was employed to determine the phosphatase activity of Pasteurella multocida strains from birds and mammals (cattle, pigs, and rabbits). Only eight out of a total of 50 Pasteurella strains isolated from birds (34 from cases of acute cholera, 12 - of atypic cholera and 4 - from oedema of the wattles ) proved positive (4 isolated from cases of acute cholera, and 4 isolated from cases of atypic cholera). The remaining 42 strains did not show phosphatase activity. A total of 96 P. multocida strains (37 from cattle, 27 from pigs, and 32 from rabbits) were studied. Positive phosphatase activity were shown to have 32 of the strains isolated from cattle, 26 of those isolated from pigs, and 29 of those from rabbits. In terms of percent 42 (84%) of the investigated strains isolated from birds were negative, and 16% were positive for phosphatase activity. Ninety-six as cited above, were the strains isolated from mammals, of which 90.6% were positive, and 9.4% were negative for phosphatase activity. The phosphatase activity of the Psateurella multocida strains may effectively be used to divide the strains purely biologically - as such isolated from mammals and such isolated from birds. The exceptions observed are likely to be due to migration of Pasteurella organisms from birds to mammals, and vice versa. The phosphatase activity is not shown to correlate with the pathogenicity of the respective strains for albino mice.

Animals↗

Phylogenetical changes and functional specializations in the dorsal lateral geniculate nucleus (dLGN) of mammals.

Depending on their visual specialization and their place in the zoological system the mammalian species show some peculiarities in the morphology of the dorsal lateral geniculate nucleus (dLGN). The lamination of dLGN can be find in mammals with a highly developed visual system and a proportionally big part of ipsilaterally projecting retinogeniculate fibres. Number and sequence of ipsi- and contralaterally innervated laminae varies between species of different taxonomical categories. Hence these features depend on phylogenetical trends which could traced back to the beginning of the "mammalian radiation" in the cretaceous period and the earliest tertiary. Ancestral conditions may be found in mammals with an unlaminated dLGN and a medially located ipsilaterally innervated part. It may be registrated that a cytoarchitectonical separation of laminae (concerning the ipsi- and contralateral innervation) is the secondary step after fibre anatomical separation. The most primitive status may be realized in mammals having a zone of mixed ipsi- and contralateral fibre input. Some conclusions are made with regard to the suitability of lab mammals for generalization of results in the dLGN morphology.

Animals↗

Central neuroanatomical systems involved in the regulation of food intake in birds and mammals.

The neural regulation of food intake seems to be quite similar in birds and mammals. The ventromedial hypothalamic syndrome produced by lesions within the mediobasal hypothalamus of both birds and mammals is composed of several independent physiological and behavioral changes. Other neural sites known to be important in mammals for regulating food intake need to be examined in birds including the paraventricular nucleus, nucleus tractus solitarius and parabrachial nucleus. Members of the opioid and pancreatic polypeptide families are effective in stimulating food intake in avian species. Both prolactin and growth hormone are also efficacious in stimulating food intake. In contrast, cholecystokinin inhibits food intake when administered intracerebroventricularly. The autonomic and endocrine hypothesis developed to explain obesity in mammals appears to be quite applicable to genetic strains of commercial birds selected for meat production. Specifically the commercial broiler appears to display an imbalance of the autonomic nervous system. The parasympathetic nervous system dominates as a consequence of intense genetic selection for growth rate.

Amino Acids↗

Fleas and lice parasitizing mammals in Missouri.

Three species of chewing lice, 11 species of sucking lice, and 28 species of fleas are recorded from mammals in Missouri. Of these, seven species of sucking lice (Hoplopleura acanthopus, Hoplopleura hesperomydis, Hoplopleura sciuricola, Neohaematopinus sciuri, Neohaematopinus sciurinus, Neohaematopinus sciuropteri, and Solenopotes ferrisi) and one species of flea (Doratopsylla blarinae) represent new state records. From 1993 to 1995, 773 individual mammals were examined for ectoparasites in southeastern Missouri. One species of chewing louse, 6 species of sucking lice, and 11 species of fleas were recovered from 18 of the 21 mammal species examined. Ctenophthalmus pseudagyrtes was recovered from more mammal species (6) than any other flea species; and the white-footed mouse, Peromyscus leucopus, was parasitized by more flea species (5) than other hosts examined. Except for H. sciuricola, which was recovered from two congeneric species of tree squirrels, each species of louse was confined to a separate host species.

Animals↗

[Presence in a rodent of Chili of the nematode Inglamidinae (sub. fam. nov.) belonging to Amidostomatidae, a family known to be found in mammals of Australia].

The Inglamidinae n. sub-fam., a new sub-family of Amidostomatidae from chilean Cricetidae is described with Inglamidum akodon gen. et sp. n. as the type genus and species. Out of the 23 Akodon captured in the same area, three samples of this nematode have been collected from two different species. These findings confirm that we are dealing with a well-adapted parasite and exclude the possibility of a fortuitous catch or an accidental transfer. This family displays two significant groups of taxonomic characters, including archaic characters such as cephalic structures which unite them to the Amidostomatidae, and on the other hand some more recently elaborated characters such as monodelphism and shape of synlophe and spicules which relate them to the Heligmosoms and more significantly to the line Viannaia-Viannella parasite of South-American Marsupials. We interpret this species as a "parasite of capture" and we assume that very similar species might occur in other endemic Mammals, mostly Marsupials. On a paleobiogeographical point of view this interpretation would make due allowance for postulating that the Amidostomatidae from Mammals have originated during the Secondary concurrently with the Marsupial expansion. These ancestral Nematodes would have given birth to the other Trichostrongyloidea through reduction of buccal cavity, and to the Ancylostomatoidea by further elaboration of buccal apparatus. Contrary to Inglis's hypothesis we are in favour of the genera Globocephaloides and Hypodontus to be assigned to the Globocephalinae and Uncinariinae (Ancylostomatidae) respectively, rather than to the Amidostomatidae. The occurrence of an Amidostomatidae in a South American Cricetidae is somewhat quite unexpected, mostly because this family is known to occur from australian Mammals only and also because the parasited Mammals are the most primitive of the group (Monotremes and Marsupials).

Animals↗

Hindlimb suspension and hind foot reversal in Varecia variegata and other arboreal mammals.

The foot, perhaps more than any other region of the primate body reflects the interaction of positional behaviors with the geometric properties of available supports. The ability to reverse the hind foot during hindlimb suspension while hanging from a horizontal support or descending a large diameter vertical trunk has been noted in many arboreal mammals, including primates. Observations of Varecia variegata in the wild and under seminatural conditions document hindlimb suspension in this lemurid primate. The kinematics and skeletal correlates of this behavior are examined. Analogy is made with the form and function exhibited by nonprimate mammalian taxa employing this behavior. Examples of carnivores and rodents display very similar adaptations of the tarsals while other mammals, such as the xenarthrans, accomplish a similar end by means of different morphologies. However, a suite of features is identified that is shared by mammals capable of hind foot reversal. Hindlimb suspension effectively increases the potential feeding space available to a foraging mammal and represents a significant, and often unrecognized, alternative adaptive strategy to forelimb suspension and prehensile-tail suspension in primates.

Adaptation, Physiological↗