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FIGURE 1 in A new species of Crenitulus Winters, 1926 (Coleoptera: Hydrophilidae: Chaetarthrinae: Anacaenini) from northern South America
FIGURE 1. Habitus of Crenitulus clarksoni sp. nov. (paratype, BRAZIL, Roraima State: Boa Vista Municipality, pond near the RR-205 road) A) Dorsal view, B) Lateral view, C) Ventral view. Scale: 1 mm.
FIGURE 3 in A new species of Murina (Chiroptera: Vespertilionidae) from sub-Himalayan forests of northern Myanmar
FIGURE 3. The dorsal side of the baculum of M. hkakaboraziensis sp. nov., ♂PS160218.6, holotype, from Kachin, Myanmar. Scale = 1 mm. Drawing by PS.
FIGURE 2 in A new species of Murina (Chiroptera: Vespertilionidae) from sub-Himalayan forests of northern Myanmar
FIGURE 2. Comparison of the skull of M. hkakaboraziensis sp. nov., ♂PS160218.6, holotype, from Kachin, Myanmar (a), and M. kontumensis ♀IEBR-M5697, holotype, from Kon Tum, Vietnam (b).
FIGURE 5 in A new species of Murina (Chiroptera: Vespertilionidae) from sub-Himalayan forests of northern Myanmar
FIGURE 5. The edge of a lowland semi-evergreen forest at the transition zone to an open space grassland where the specimen of M. hkakaboraziensis sp. nov. was captured. Photograph by SSLO.
FIGURE 1 in A new species of Murina (Chiroptera: Vespertilionidae) from sub-Himalayan forests of northern Myanmar
FIGURE 1. The appearance of the face, ear and pelage (a), dorsal pelage (b), and ventral pelage (c) of M. hkakaboraziensis sp. nov., ♂PS160218.6, holotype, from Kachin, Myanmar.
FIGURE 4 in A new species of Murina (Chiroptera: Vespertilionidae) from sub-Himalayan forests of northern Myanmar
FIGURE 4. Bayesian tree based on GTR+I+G of 157 COI sequences of bats in the subfamily Murininae with a Kerivoula cf. hardwickii as an outgroup. The posterior probabilities of branch support are shown on branches.
Figure 3 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 3. Phylogenetic relationships among species of the Brookesia minima group based on nuclear and concatenated DNA sequences. Phylograms (50% majority rule consensus trees) from Bayesian inference analyses of DNA sequence alignments of (a) the nuclear genes CMOS (846 bp) and (b) RAG1 (1522 bp). (c) Phylogram from BI analysis of concatenated DNA sequences of the nuclear genes CMOS (846 bp) and RAG1 (1522 bp), and the mitochondrial genes ND2 (568 bp) and 16S (580 bp). (d) Brookesia portion of the Bayesian chronogram derived from the BEAST analyses of all four concatenated genes (see Supporting Information S1 for full chronogram with all outgroups). Posterior probabilities are indicated above branches, and bars represent 95% HPDs for mean date estimates. Units on scale are millions of years. Species of the northern clade (B. tuberculata plus the four new species described herein) are marked in colour. The trees were rooted with Brookesia nasus, and including B. brygooi and B. superciliaris as hierarchical outgroups (not shown). A, B and C refer to major clades as discussed in the text. Asterisks denote posterior probabilities of 1.0. doi:10.1371/journal.pone.0031314.g003
Figure 10 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 10. Adult specimens of newly described species in life. (A) male and (B) female of Brookesia tristis from Montagne des Français; (C) male and (D) female of Brookesia confidens from Ankarana; (E) male and (F) female of Brookesia micra from Nosy Hara; (G) male and (H) female Brookesia desperata from Forêt d'Ambre. doi:10.1371/journal.pone.0031314.g010
Figure 1 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 1. Map of northern Madagascar showing distribution of species of the Brookesia minima group. Type localities in bold, B. dentata, B. exarmata, B. karchei, B. peyrierasi, and B. ramanantsoai not included, because their ranges are located further south; see inset maps in Fig. 2. Orange (dry forest) and green (rainforest) show remaining primary vegetation in 2003–2006, modified from the Madagascar Vegetation Mapping Project (http://www.vegmad.org). doi:10.1371/journal.pone.0031314.g001
Figure 6 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 6. Hemipenes of species in the Brookesia minima group. The photos show for each species, a general view of the organs and a close-up. For B. desperata, the inset picture shows a non-turgid everted hemipenis where the two apex projections are very prominent. Note that also several other of the shown preparations are not fully turgid, especially in B. ramanantsoai and B. micra. In two other species (B. confidens and B. tristis) the shown hemipenes might not be fully everted. doi:10.1371/journal.pone.0031314.g006
Figure 4 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 4. Morphometric differentiation among species of the Brookesia minima group. The two left graphs are scatterplots of the first two factors of Principal Component Analyses of (a) male and (b) female specimens of the Brookesia minima group based on measurements in Tables 1 and 2, Supporting Information S1 and [5]. Note that Factor 1 is mostly influenced by the size of specimens (see Table 5). The graphs on the right (c–d) are univariate scatterplots of selected measurements and morphometric ratios of male specimens of species in the Brookesia minima group. doi:10.1371/journal.pone.0031314.g004
Figure 5 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 5. Morphometric differentiation among sexes in species of the Brookesia minima group. Scatterplot of tail length vs. snoutvent length in male and female specimens of the Brookesia minima group, showing larger body sizes in females and a weak trend towards relatively longer tails in males. Based on measurements in Tables 1 and 2, Supporting Information S1 and [5]. doi:10.1371/journal.pone.0031314.g005
Figure 9 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 9. Life history and morphology of Brookesia desperata. (A) Female (displaying stress colouration) with two recently laid eggs. (B) Figure showing well-developed pelvic spine (1) and lateral spines on tail (2). doi:10.1371/journal.pone.0031314.g009
Figure 8 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 8. Brookesia micra sp. n. from Nosy Hara, northern Madagascar. (A) adult male on black background, showing orange tail colouration; (B) juvenile on finger tip; (C) juvenile on head of a match; (D) habitat along a small creek on western flank of Nosy Hara, where part of the type series was collected. doi:10.1371/journal.pone.0031314.g008
Figure 7 in Rivaling the World's Smallest Reptiles: Discovery of Miniaturized and Microendemic New Species of Leaf Chameleons (Brookesia) from Northern Madagascar
Figure 7. Dorsal, lateral and ventral views of preserved male holotypes of newly described species. Scale bar equals 5 mm. doi:10.1371/journal.pone.0031314.g007
Supplementary material 1 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Full data of investigated specimens of Lithobius crassipes : Explanation note: Information on locality, date, collector, collection, sex of investigated specimens of Lithobius crassipes.
Supplementary material 2 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Additional morphological characters : Explanation note: Word file containing a list and descriptions of additional morphological characters that were measured. Contains 11 external body and 8 male genital characters.
Supplementary material 4 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Morphological dataset : Explanation note: Excel file containing the complete morphological measurements. Includes a second data sheet with non-abbreviated variables and units for the measurements.
Supplementary material 3 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Supplementary tables and figures : Explanation note: Additional tables (S1-S10) and figures (S1-S6). Phylogenetic trees, BPP results, post-hoc comparisons of morphological characters etc.
Supplementary material 1 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Specimen information : Explanation note: Excel file containing information (locality data, voucher info, gender, BOLD ID) about all specimens that where measured and/or sequenced.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.