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121 results for “body size variation”
Figure 7 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 7 - Seasonal patterns at Sharm El-Maya Bay, the northern Red Sea. A Temperature and Salinity B pH and dissolved oxygen concentrations (DO), and C Chlorophyll a concentration (chl a) and abundance of Acartia bispinosa.
Figure 6 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 6 - Variations in Acartia bispinosa from the northern Red Sea. A–C female genital compound somite D female leg 5 E–H male last pediger I male second urosomite. All scale bars in mm.
Figure 4 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 4 - Acartia bispinosa male from the northern Red Sea. A habitus, dorsal view B rostrum, ventral view C urosome, dorsal view D urosome, latero-ventra view E left antennule F right antennule G leg 5 H terminal segment of left exopod of leg 5 I terminal segment of right exopod of leg 5. All scale bars in mm.
Figure 2 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 2 - SEM micrographs of Acartia bispinosa female from the northern Red Sea. A rostrum, ventral view B urosome, fine hairs on the posterior margin of genital compound somite indicated by arrow, ventral view C proximal part of antennule, claw-like curved spine indicated by arrow, lateral view D Female leg 5.
Figure 1 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 1 - Acartia bispinosa female from the northern Red Sea. A habitus, dorsal view B habitus, lateral view C rostrum and proximal part of the antennule, lateral view D urosome, dorsal view E urosome, ventral view F urosome, later view right G urosome, lateral view left H–I antennule. All scale bars in mm.
Figure 10 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 10 - Distribution of Acartia bispinosa based on previous records and on the present study (Note that its distribution is restricted between 35°N and 32°S).
Figure 5 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 5 - SEM micrographs of Acartia bispinosa male from the northern Red Sea. A abdomen, lateral view B leg 5, posterior surface.
Figure 3 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 3 - Acartia bispinosa female from the northern Red Sea. A antenna B mandible C maxillule D maxilla E maxilliped F Leg 1 G leg 2, posterior surface H Leg 3, posterior surface I leg 4, posterior surface J third exopodal segment of leg 1, anterior surface K second endopodal segment of leg 3, anterior surface L basis of leg 4, anterior surface I leg 5 anterior surface. All scale bars in mm.
Figure 9 from: El-Sherbiny M, M Al - Aidaroos A (2014) First report of the presence of Acartia bispinosa Carl, 1907 (Copepoda, Calanoida) in a semi-enclosed Bay (Sharm El-Maya), northern Red Sea with some notes on its seasonal variation in abundance and body size. ZooKeys 444: 95-118. https://doi.org/10.3897/zookeys.444.7633
Figure 9 - Box and whisker plot of seasonal variations of total and prosome length of female A and male B of Acartia bispinosa (total length: open symbol, prosome length: filled symbol).
Figures 4–5 in Individual variation in the advertisement call of Aplastodiscus albosignatus (Anura: Hylidae) is correlated with body size and environmental temperature
Figures 4–5. Spectrogram and oscillogram of two advertisement calls of the same male of Aplastodiscus albosignatus: (4) call with the dominant frequency in the first harmonic (= minimum frequency); (5) call with the dominant frequency in the third harmonic. Male recorded on January 14, 2020, voucher of specimen RLUTF 1220, voucher of recording FNJV 45563, 4.7 g, 44.8 mm, 18.1 °C.
Data from: Hot rocks and not-so-hot rocks on the seashore: patterns and body-size dependent consequences of microclimatic variation in intertidal zone boulder habitat
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Data from: Lowland biotic attrition revisited: body size and variation among climate change ‘winners’ and ‘losers’
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Data from: Intraspecific variation in body size does not alter the effects of mesopredators on prey
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Data: Generalized evidence for Bergmann’s rule body size variation in a cosmopolitan owl genus
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Data from: Temperature-driven colour lightness and body size variation scale to local assemblages of European Odonata but are modified by propensity for dispersal
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Ecological specialisation and range size determine intraspecific body size variation in a speciose clade of insect herbivores
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Data from: Mainland size variation informs predictive models of exceptional insular body size change in rodents
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Geographic variation in body size and plumage colour according to diet composition in a nocturnal raptor
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DNA methylation Landscape of body size variation in sheep
GEO Series GSE62345. Ovis aries. 10 samples. Type: Methylation profiling by high throughput sequencing.
Evidence that variation in adult body size among mammalian species is achieved by modulating the pace of a growth-regulating genetic program
GEO Series GSE48916. Bos taurus; Ovis aries. 30 samples. Type: Expression profiling by array.
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Allen Brain Atlas
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International Brain Laboratory public data
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