Search results for "Vertebrate"

showing 10 items of 830 documents

Verzeichnis der Wirbeltiere der Ostseeprovinzen unter Angabe der in den Sammlungen des Naturforscher-Vereins zu Riga befindlichen Exemplare [Verzeich…

1881

Inhalt: Vorwort / G. Schweder ; [Verzeichnis]: Mammalia. Säugethiere ; Aves. Vögel ; Reptilia. Reptilien ; Amphibia. Nackte Amphibien ; Pisces. Fische.

VertebrataZoologie:NATURAL SCIENCES::Biology::Organism biology [Research Subject Categories]ZooloģijaWirbeltiere - VerzeichnisMugurkaulnieki - rādītājsZoologyVertebrates - index
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Sicilian Cenozoic sharks from the collections of G. G. Gemmellaro Museum

2006

Vertebrates sharks teeth Cenozoic Sicily systematic.Settore GEO/01 - Paleontologia E Paleoecologia
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Two interconnected functional systems in the amygdala of amniote vertebrates.

2008

The amygdala shows ventropallial and lateropallial derivatives that can be compared among vertebrates according to their topological position, either superficial (cortical amygdala) or deep (basolateral amygdala and amygdalo-hippocampal area), connections and histochemical features. On the other hand, the subpallial amygdala, also called extended amygdala, is composed of medial and central divisions. In mammals, both divisions consist of an intra-amygdaloid portion and a part of the bed nucleus of the stria terminalis. In non-mammals, the intratelencephalic trajectory of the stria terminalis is short and both poles of the extended amygdala are close together. Like its mammalian counterpart,…

Vomeronasal organLateral hypothalamusEvolutionPalliumBiologyAmygdalaMidbrainBirdsExtended amygdalaNeural PathwaysmedicineAnimalsMammalsBrain MappingGeneral NeuroscienceSpecies-specific behavioursReptilesAnatomyAmygdalaBiological EvolutionSubpalliumStria terminalismedicine.anatomical_structurenervous systemForebrainExtended amygdalaVertebratesForebrainNeurosciencepsychological phenomena and processesBasolateral amygdalaBrain research bulletin
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The pallial amygdala of amniote vertebrates: evolution of the concept, evolution of the structure

2002

Embryological studies indicate that the amygdala includes pallial structures, namely the cortical amygdala (olfactory and vomeronasal) and the basolateral complex deep to it. In squamate reptiles, the cortical amygdala includes secondary olfactory (the ventral anterior amygdala) and vomeronasal centres (the nucleus sphericus). In birds, the situation is far less clear, due to the relative underdevelopment of the chemosensory systems. The basolateral amygdala of squamate reptiles includes two ventropallial structures: the posterior dorsal ventricular ridge and the lateral amygdala. Like their mammalian counterparts, these centres give rise to glutamatergic projections to the striatal (centro…

Vomeronasal organstriatumStriatumAmygdalaBirdsGlutamatergicLimbic systemlimbic systemNeural PathwaysmedicineAnimalsMammalsbiologyGeneral NeuroscienceReptilesComparative neuroanatomyAnatomyAmygdalabiology.organism_classificationBiological EvolutionHomologycortexmedicine.anatomical_structurenervous systemHypothalamusVertebratesAmnioteNeurosciencepsychological phenomena and processesBasolateral amygdalaBrain Research Bulletin
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Crystalline wax coverage of the imaginal cuticle inCalopteryx splendens(Odonata: Calopterygidae)

2009

Abstract In this study we use high resolution SEM to describe the diversity of wax crystals and their distribution on different morphological structures in male individuals of Calopteryx splendens. The entire cuticle surface of this damselfly, with the exception of ommatidia and ocelli, is covered with crystalline wax in dimensions from submicron to micron range. It is shown that shape - rod-like, plate like, filamentous, etc. -, size, and density of crystals vary on different surfaces and in individuals of different ages. Additionally, we demonstrate different types of damage to the crystalline wax layer: scratches, compressions, wear, and contamination. The primary function of the wax cry…

WaxbiologyCuticleSimple eye in invertebratesHigh resolutionOdonatabiology.organism_classificationDamselflyCalopterygidaeOmmatidiumInsect Sciencevisual_artBotanyvisual_art.visual_art_mediumsense organsComposite materialEcology Evolution Behavior and SystematicsInternational Journal of Odonatology
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The evolutionary history of HSA7/16 synteny in vertebrates: a critical interpretation of comparative cytogenetic and genome sequence data

2013

The current work is an in silico study of data from previous publications and genome browsers, on the origin of the human synteny HSA7a/16p. The molecular composition of the chromosomal segments identified as HSA7a/16 and 7b (free or differently associated) is not yet clear. This means that a syntenic association 7/16, which can be detected by an in situ hybridization (FISH) method in different taxa, may not necessarily correspond to those of the same association in different lineages. In silico research, together with comparative cytogenetics, have been applied in order to define the composition of the 7/16 syntenic association. These results allow a confident reconstruction of the synteni…

Whole genome sequencingGeneticsmedicine.medical_specialtyHuman chromosome 7 Evolution in silico analysisPhylogenetic treeIn silicoCytogeneticsVertebrateSettore BIO/08 - AntropologiaBiologyGenomeHomology (biology)Evolutionary biologybiology.animalGeneticsmedicineGeneral Agricultural and Biological SciencesSyntenyCaryologia
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Function and evolution of vertebrate globins.

2014

Globins are haem-proteins that bind O2 and thus play an important role in the animal's respiration and oxidative energy production. However, globins may also have other functions such as the decomposition or production of NO, the detoxification of reactive oxygen species or intracellular signalling. In addition to the well-investigated haemoglobins and myoglobins, genome sequence analyses have led to the identification of six further globin types in vertebrates: androglobin, cytoglobin, globin E, globin X, globin Y and neuroglobin. Here, we review the present state of knowledge on the functions, the taxonomic distribution and evolution of vertebrate globins, drawing conclusions about the fu…

Whole genome sequencingbiologyPhysiologyCytoglobinVertebrateOxidative phosphorylationAnatomyAdaptation PhysiologicalGlobinsEvolution Molecularchemistry.chemical_compoundMyoglobinchemistryEvolutionary biologyhemic and lymphatic diseasesbiology.animalNeuroglobinAnimalsHumansGlobinFunction (biology)PhylogenyActa physiologica (Oxford, England)
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Mining extraction in the ocean depths: a baseline to understand and reduce acoustic impact on biodiversity.

2020

[ES] A lo largo de la historia, el hombre ha explotado los recursos minerales de la tierra para su supervivencia y desarrollo tecnológico sin un equilibrio con su regeneración. Dado el crecimiento de la población mundial y la reducción de recursos, el hombre comenzó a buscar nuevos depósitos que se encontraron en la década de 1960 en las profundidades de los océanos. Con estos, la humanidad empezò a pensar en extraer los minerales de estos depósitos y esto llevò al nacimiento de Deep Sea Mining (DSM). Las consecuencias de las actividades mineras en las profundidades del mar no se conocen realmente y los efectos pueden ser diferentes: contaminación acústica, contaminación lumínica, contamina…

ZOOLOGIAbiologyHolothuria tubulosanoise pollutionZoologyphysiological responses.Physiological responsesJuvenile fishbiology.organism_classificationChromis chromisDeep Sea Miningbiochemical parameterDeep sea miningBiochemical parametersHabitat destructionNoise pollutionbiology.animalFISICA APLICADAbehavioural responseBehavioural responsesSettore BIO/06 - Anatomia Comparata E CitologiaArbacia lixulaSea urchinInvertebrate
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Individual variation of form of the brain of Triton cristatus Laur. and its relation to the specific variation of the brain of Urodela

1931

Zoology experimentalAmphibian brainAbinieku smadzenesTritonu smadzenesDzīvnieku nervu sistēmaMugurkaulnieku smadzenes:NATURAL SCIENCES::Biology::Organism biology::Morphology [Research Subject Categories]Newt brainZooloģija eksperimentālāBrain of vertebrates
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Genetic variation in the primary sex ratio in populations of the intertidal copepod, Tigriopus californicus, is widespread on Vancouver Island.

2011

Hypothesis: Genetic variation for the primary sex ratio is widespread in a copepodwith polygenic sex determination. Cytoplasmic sex ratio distorters (e.g. Wolbachia andmicrosporidians) influence the primary sex ratio in this copepod. Organism: The intertidal copepod, Tigriopus californicus; six populations from VancouverIsland, British Columbia. Study site: Quantitative genetics experiment in the laboratory. PCR and antibioticsexperiment to test for the presence of cytoplasmic sex ratio distorters. Results: Genetic variation for the primary sex ratio was found in five of the six populationssurveyed. The primary sex ratio was paternally transmitted. There was no evidence thatWolbachia or mic…

[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologycopepodfungipolygenic sex determination[ SDV.GEN.GA ] Life Sciences [q-bio]/Genetics/Animal genetics[SDV.GEN.GA] Life Sciences [q-bio]/Genetics/Animal geneticsheritability[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsWolbachia.primary sex ratioparasitic diseases[SDV.BA.ZI] Life Sciences [q-bio]/Animal biology/Invertebrate Zoology[SDV.GEN.GPO] Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]microsporidiacytoplasmic sex ratio distortersTigriopus californicusRifampin[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyWolbachiacytoplasmic feminizers
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