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45 results for “Hoplodactylus”

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zenodo32/100

FIG. 7 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 7. Hemipenis of SelƲasaura almendarizae sp. nov. (QCAZ 5073, paratype) in sulcate (left), lateral (middle), and asulcate (right) views. Photographs by P. M. S. Nunes.

opennotspecifiedMay 2020View details →
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FIG. 8 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 8. Phylogeny of Cercosaurinae. Maximum likelihood tree obtained under a RAxML analysis of 147 taxa and 1,949 aligned base pairs of mitochondrial and nuclear DNA. Bootstrap support values/ posterior probabilities are indicated next to branches. Except for SelƲasaura, clades ranked as genera were collapsed into triangles if two or more species were included. Outgroup taxa are not shown. Bayesian and RAxML tree files are provided as Supplementary Tree Files 1, 2.

opennotspecifiedMay 2020View details →
zenodo32/100

FIG. 2 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 2. Standard metabolic rate of P. siculus (n = 19) at 25°C at 14 d prior to tail autotomy (preautotomy), 2 d after autotomy (postautotomy), and 64 d after autotomy (follow-up). White plots show SMR(mL O hr—1); gray plots show SMR(mL CO hr—1). O2 2 CO2 2 Horizontal lines within each box indicate the median values, and the box boundaries indicate the lower quartile (lower boundary) and upper quartile (upper boundary). Whiskers indicate minimum and maximum values within a quartile ± 1.5 times the interquartile range; individual points are outliers that occurred outside this range. Different letters above each plot represent significant differences among means at those time points, with capital letters relating to SMRO2 and lowercase letters relating to SMRCO2.

opennotspecifiedMay 2020View details →
zenodo32/100

FIG. 4 in Hoplodactylus duvaucelii

FIG. 4. Differences in boldness (A) and plastron melanization (B) between the two populations, Allee Memorial Woods (AMW) and Weiler– Leopold/Black Rock Barrens (WLBRB) nature preserves. Boldness (head emergence latency) is depicted on a logarithmic scale, and each circle represents a value for an individual turtle. Boxes represent the 25th to 75th percentiles, thick lines within the boxes represent the median, and whiskers (vertical lines) extend to all observed values within a range of 1.5 times the interquartile range from the boxes; points beyond 1.5 times the interquartile range are shown unconnected by whiskers in (B).

opennotspecifiedDec 2022View details →
zenodo32/100

FIG. 6 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 6. Specimens of SelƲasaura almendarizae sp. nov. in life. (A, B) paratype QCAZ 9140, SVL = 39.73 mm; (C, D) uncollected specimens from Bigal River Biological Reserve, Napo Province (see map in Fig. 9). Photographs by S. R. Ron (A, B), A. Anker (C), and T. Garcia (D).

opennotspecifiedMay 2020View details →
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FIG. 1 in Hoplodactylus duvaucelii

FIG. 1. Example carapace (upper row) and plastron (lower row) images of turtles demonstrating a range of melanization from low (left) to high (right). Upper row and lower row images are not paired and represent different individual turtles.

opennotspecifiedJan 2017View details →
zenodo32/100

FIG. 2 in Hoplodactylus duvaucelii

FIG. 2. Plasma corticosterone (CORT) levels from before and after confinement stress. Values from the same individual are linked by the lines. Values below 0.57 ng/mL (indicated by the horizontal dotted line) were below the detection limited and treated as censored in the analysis. The y-axis is presented on a logarithmic scale.

opennotspecifiedJan 2017View details →
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F. 1 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

F. 1. Evaporative water loss (mg H O hr—1) of P. siculus (n = 19) at IG 2 83 d prior to tail autotomy (preautotomy), 5 d after autotomy (postautotomy), and 32 d after autotomy (follow-up). Horizontal lines within each box indicate the median values, and the box boundaries indicate the lower quartile (lower boundary) and upper quartile (upper boundary). Whiskers indicate minimum and maximum values within a quartile ± 1.5 times the interquartile range; individual points are outliers that occurred outside this range. Different letters above each plot represent significant differences among means at those time points.

opennotspecifiedMay 2020View details →
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FIG. 4 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 4. Skull of the holotype of SelƲasaura almendarizae sp. nov. (QCAZ 12798) in ventral view after sequential removal of (A) maxillae, pterygoids, quadrates, parabasisphenoid, and basioccipital; and (B) vomers, palatines, jugals, ectopterygoids, orbitosphenoids, epipterygoids, otoccipitals, prootics, and stapes. Abbreviations are the same as those in Fig. 3. Images by C. Koch.

opennotspecifiedSep 2021View details →
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FIG. 2 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 2. Head of the holotype (QCAZ 12798) of SelƲasaura almendarizae sp. nov. in dorsal (top), lateral (middle), and ventral (bottom) views. Individual scales were traced for clarity. Photographs by J. Carrión.

opennotspecifiedMay 2020View details →
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FIG. 5 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 5. Mandible of the holotype of SelƲasaura almendarizae sp. nov. (QCAZ 12798) in (A) dorsal, (B) ventral, (C) lateral, and (D) medial views. Abbreviations: an, angular; arpre, articular/prearticular complex (fused with surangular); co, coronoid; d, dentary; rp, retroarticular process; san, surangular; sp, splenial. Images by C. Koch.

opennotspecifiedMay 2020View details →
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FIG. 3 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 3. Skull of the holotype of SelƲasaura almendarizae sp. nov. (QCAZ 12798) in (A) dorsal, (B) lateral, (C) ventral, (D) anterior, and (E) posterior views. Abbreviations: boc, basioccipital; ecp, ectopterygoid; epp, epipterygoid; f, frontal; j, jugal; m, maxilla; n, nasal; os, orbitosphenoid; otoc, otoccipital; pa, parietal; pbas, parabasisphenoid; pal, palatine; pm, premaxilla; po, prootic; porb, postorbital; posf, postfrontal; pref, prefrontal; pt, pterygoid; q, quadrate; sm, septomaxilla; soc, supraoccipital; sq, squamosal; sta, stapes; sut, supratemporal; v, vomer. Images by C. Koch. Scale bars correspond to left and right images, respectively.

opennotspecifiedSep 2021View details →
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FIG. 8 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 8. Generalized linear regression models are provided for Massasauga encounters (Nindiv) with respect to the independent measures of the previous winter's mean annual, (A) groundwater thermal buffer index (TBUFF = (TGW – Mean daily TAir), (B) groundwater dissolved oxygen (GWDO mg/L), (C) snow height (cm), and (D) the Akaike top model is Life-zone size (LZ cm). Error shown shaded gray is ± SE. Encounter data are from (1998–2016), for an isolated Massasauga population located in southern Ontario, Canada.

opennotspecifiedMay 2020View details →
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FIG. 7 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 7. Massasauga encounters (Nindiv) from 2004–2014 are calculated from the long-term (1998–2016) encounter data set for an isolated population located in southern Ontario, Canada. Nindiv includes all encountered adult and juvenile Massasaugas plus those presumed present due to their age estimates from future encounters. The preflood group encounter trend is indicated to discern postflood recruitment.

opennotspecifiedMay 2020View details →
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FIG. 1 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 1. Holotype (QCAZ 12798; SVL = 39.54 mm) of SelƲasaura almendarizae sp. nov. in dorsal (top) and ventral (bottom) views. Photographs by J. Carrión.

opennotspecifiedMay 2020View details →
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FIG. 2 in Hoplodactylus duvaucelii

FIG. 2. Sex ratio expressed as percentage of females of Crotaphytus collaris hatched from eggs incubated at each of six treatments (21°C was excluded from analysis; n above each symbol).

opennotspecifiedJan 2017View details →
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FIG. 3. Hibernation habitat study methods developed for a in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 3. Hibernation habitat study methods developed for a partially mined peatland ecosystem inhabited by a Massasauga population located in southern Ontario, Canada. Life-zone methods include a grid of groundwater wells paired with a frost tube in each study area (Mined and Not Mined). Life zone (LZ) equals the groundwater level (GWL) minus frost depth (FD). All measurements are relative to the ground surface.

opennotspecifiedMay 2020View details →
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FIG. 1 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 1. Life-zone (LZ) model hypothesis for terrestrial and semiterrestrial hibernating Massasaugas. Life zone is the vertical subterranean space that remains aerobic, not frozen, and flood free throughout hibernation.

opennotspecifiedMay 2020View details →
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FIG. 4. PCA plot depicting the winter-type categories developed for winter environmental data for a in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 4. PCA plot depicting the winter-type categories developed for winter environmental data for a Massasauga population located in southern Ontario, Canada. We analyzed local annual winter (November–April) environmental data: total precipitation, rainfall, snow, and the number of days mean temperature is below zero (Environment and Climate Change Canada, 2016).

opennotspecifiedMay 2020View details →
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FIG. 6 in Hoplodactylus tohu Scarsbrook & Walton & Rawlence & Hitchmough 2023, n. sp.

FIG. 6. Massasauga hibernation habitat weekly groundwater dissolved oxygen (mean GWDO mg/L) by weekly life-zone size (mean LZ cm). The study area is a partially mined peatland located in southern Ontario, Canada. Mined and Not-Mined areas are grouped by before (2003–2005) and after (2006–2014) first flood event. Error shown shaded in gray is ±95% CI.

opennotspecifiedMay 2020View details →

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