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87 results for “Hatchling”
Fig. 1 Midsagittal section through a in Comparative 3D microanatomy and histology of the eyes and central nervous systems in coleoid cephalopod hatchlings
Fig. 1 Midsagittal section through a cephalopod-coleoid central nervous system with its main neuropils (Loligo vulgaris). a Profiles of subesophageal and supraesophageal masses with neuropils (light gray) and perikaryal layers (dark gray)(compare, e.g., with Novicki et al. 1990, Fig. 14). b Digital YZ-reslice with labeled neuropils (2D). c Digital YZ-reslice with labeled neuropils (3D, same colors as in b). Labels: abl=anterior basal lobe, bl=brachial lobe, dbl=dorsal basal lobe, es=esophagus, ifl=inferior frontal lobe, mbl=median basal lobe, pcl=precommissural lobe, pdc=peduncle commissure, pl= pedal lobe, pvl=palliovisceral lobe, sfl=superior frontal lobe, svl= subvertical lobe, vtl=vertical lobe
F in Effects of temperature on the embryonic development and hatchling size of Betaeus emarginatus (Decapoda: Caridea: Alpheidae)
F. 3. Duration of embryonic stages (indicated by different fillings) of Betaeus emarginatus at the three temperatures used in laboratory experiments; arrows depict the appearance of the eye pigment (E) and the hatching of the larvae (H).
F in Effects of temperature on the embryonic development and hatchling size of Betaeus emarginatus (Decapoda: Caridea: Alpheidae)
F. 1. Consumption of the egg yolk (expressed as a percentage) during the embryonic development of Betaeus emarginatus reared at 15°C.
F in Effects of temperature on the embryonic development and hatchling size of Betaeus emarginatus (Decapoda: Caridea: Alpheidae)
F. 2. Relation between temperature and duration of incubation period of Betaeus emarginatus maintained in the laboratory.
Behavioral variability of hatchlings modifies dispersal potential in crown conch (Melongena corona): Why do larvae crawl away but sometimes swim?
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Mexican black spiny-tailed iguana Ctenosaura pectinata (squamata:iguanidae): Female reproductive traits and hatchling phenotypic variability in a harvested population
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Data from: Incubation under climate warming affects learning ability and survival in hatchling lizards
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Data from: The anti-predator role of within-nest emergence synchrony in sea turtle hatchlings
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Data from: Hotter nests produce hatchling lizards with lower thermal tolerance
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Data from: Predicting climate warming effects on green turtle hatchling viability and dispersal performance
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Data from: Higher incubation temperatures produce long-lasting upward shifts in cold tolerance, but not heat tolerance, of hatchling geckos
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Data from: Squamate hatchling size and the evolutionary causes of negative offspring size allometry
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Data from: Evidence for atypical nest overwintering by hatchling lizards, Heloderma suspectum
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Data from: Habitat- and season-specific temperatures affect phenotypic development of hatchling lizards
Embryonic environments influence phenotypic development, but relatively few experiments have explored the effects of natural environmental variation. We incubated eggs of the lizard Anolis sagrei under conditions that mimicked natural spatial and temporal thermal variation to determine their effects on offspring morphology and performance. Incubation temperatures mimicked two microhabitats (open, shade) at two different times of the incubation season (April, July). Egg survival, incubation duration and offspring size were influenced by interactions between habitat- and season-specific nest temperatures, and locomotor performance was influenced primarily by temporal factors. These findings highlight the importance of spatial and temporal environmental variation in generating variation in fitness-related phenotypes.
Figure 3 from: Simões TN, Candido da Silva A, de Melo Moura CC (2017) Influence of artificial lights on the orientation of hatchlings of Eretmochelys imbricata in Pernambuco, Brazil. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e13727
Figure 3 - Multidimensional scaling (MDS) showing the existence of differences between the degree of orientation of hatchlings in relation to the ocean in illuminated and non-illuminated areas; formation of distinct groups (stress = 0.02) in samples collected in Merepe Beach, coast of Ipojuca, Pernambuco Brazil.
Figures 1-2 from: Simões TN, Candido da Silva A, de Melo Moura CC (2017) Influence of artificial lights on the orientation of hatchlings of Eretmochelys imbricata in Pernambuco, Brazil. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e13727
Figures 1-2 - Trajectory deviations of hatchlings of the species Eretmochelys imbricata in (1) illuminated nests and (2) non-illuminated made in Merepe Beach, coast of Ipojuca, Pernambuco, Brazil.
Figure 4 from: Simões TN, Candido da Silva A, de Melo Moura CC (2017) Influence of artificial lights on the orientation of hatchlings of Eretmochelys imbricata in Pernambuco, Brazil. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e13727
Figure 4 - Percentage of emergence events diverted in function of the lunar phase and in illuminated and non-illuminated areas. Data based on ten experimental events in different lunar conducted in Merepe Beach, coast of Ipojuca, Pernambuco, Brazil.
Data from: The geomagnetic environment in which sea turtle eggs incubate affects subsequent magnetic navigation behavior of hatchlings
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Data from: Habitat- and season-specific temperatures affect phenotypic development of hatchling lizards
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Data from: Adaptive acceleration in growth and development of salamander hatchlings in cannibalistic situations
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Allen Brain Atlas
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.