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259 results for “Synapomorphy”
Linked collectors and determiners for: The new spider genus Palindroma, featuring a novel synapomorphy for the Zodariidae (Araneae).
Natural history specimen data linked to collectors and determiners held within, "The new spider genus Palindroma, featuring a novel synapomorphy for the Zodariidae (Araneae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/efa2a512-3b55-4cd7-83ff-b391ec49c058">https://bionomia.net/dataset/efa2a512-3b55-4cd7-83ff-b391ec49c058</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/efa2a512-3b55-4cd7-83ff-b391ec49c058">https://gbif.org/dataset/efa2a512-3b55-4cd7-83ff-b391ec49c058</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Studies in Liocranidae (Araneae): a new afrotropical genus featuring a synapomorphy for the Cybaeodinae.
Natural history specimen data linked to collectors and determiners held within, "Studies in Liocranidae (Araneae): a new afrotropical genus featuring a synapomorphy for the Cybaeodinae". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f0d32c6d-abb8-428a-aa91-9b4a4ce7b2ae">https://bionomia.net/dataset/f0d32c6d-abb8-428a-aa91-9b4a4ce7b2ae</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f0d32c6d-abb8-428a-aa91-9b4a4ce7b2ae">https://gbif.org/dataset/f0d32c6d-abb8-428a-aa91-9b4a4ce7b2ae</a>. Formatted as a Frictionless Data package.
FIGURE 6 in Total Evidence Phylogenetic Analysis Supports New Morphological Synapomorphies for Bovidae (Mammalia, Artiodactyla)
FIGURE 6. Maximum clade credibility Bayesian total evidence topology (opposite page, above, and next page). Extinct species are labeled Ancient DNA or Fossil to denote how they appear in the matrix. Posterior probabilities for each node over 0.5 are represented as scaled circles. Divergence dates estimated from fossil calibrations are represented in millions of years. Note the estimated divergence time of the clade Oreotragini + Cephalophini + Antilopini was older than the estimated divergence of the rest of Antilopinae in which it belongs.
Figure 12. Supporting synapomorphies, mapped onto a in A new stereospondyl from the German Middle Triassic, and the origin of the Metoposauridae
Figure 12. Supporting synapomorphies, mapped onto a cladogram of the preferred phylogeny. Only unequivocal character distribution is counted here as synapomorphy.
DATASET Sound production mechanism in triggerfish (Balistidae): a synapomorphy
<p>Dataset corresponding to the article "Sound production mechanism in triggerfish (Balistidae): a synapomorphy". </p> <p>This dataset contains the sounds of three species of Balistidae : <em>Balistapus undulatus</em>, <em>Rhinecanthus aculeatus</em> and <em>Rhinecanthus rectangulus</em>.</p> <p>All the specimens are from Moorea Island (French Polynesia)<br> <em>B. undulatus</em> [standard length (SL) 10.59–15.35 cm]<br> <em>R. aculeatus</em> (SL: 12.7–17.4 cm) <br> <em>R. rectangulus</em> (SL: 8.1–15.3 cm) </p> <p>Specimens were recorded hand-held in a glass aquarium with a hydrophone HTI-96-MIN (sensitivity: −163.9dB V μPa−1; High Tech Inc., Long Beach, MS, USA) connected to a TASCAM DR-07 recorder (TEAC, Wiesbaden, Germany).<br> The sounds were digitized at 44.1 kHz (16-bit resolution).</p>
Figure 3. Propsilocerus lacustris pupal exuviae. A. specimen 1 in Propsilocerus Kieffer, 1923 shares morphological synapomorphies with Prodiamesinae
Figure 3. Propsilocerus lacustris pupal exuviae. A. specimen 1; B. specimen 2 (brightfield microscopy).
Figure 5 in Propsilocerus Kieffer, 1923 shares morphological synapomorphies with Prodiamesinae
Figure 5. Female genitalia of Prodiamesina. A, B. Prodiamesa olivacea (TRIC Fluorescence); C. Propsilocerus lacustris (TRIC fluorescence); D. Propsilocerus lacustris. Rami of gonapophyses marked in blue (bright-field microscopy).
Figure 1. A in Propsilocerus Kieffer, 1923 shares morphological synapomorphies with Prodiamesinae
Figure 1. A. Podochlus sp. pupa, habitus (brightfield microscopy); B. same, thoracic horn, tracheal connection to the spiracle is marked in blue (phase contrast).
Figure 4 in Propsilocerus Kieffer, 1923 shares morphological synapomorphies with Prodiamesinae
Figure 4. Indirect tracheal connections in Prodiamesinae pupae. A and A1. Prodiamesa olivacea (brightfield micros- copy); B. Monodiamesa bathyphila (brightfield microscopy); C. Odontomesa fulva (brightfield microscopy); D, E. Propsilocerus lacustris (phase contrast). Abbreviations – th: thoracic horn; tr: tracheoles; sp: spiracle.
Figure 2 in Propsilocerus Kieffer, 1923 shares morphological synapomorphies with Prodiamesinae
Figure 2. Pupal exuviae of Prodiamesinae. A. Prodiamesa olivacea; B. Monodiamesa bathyphila; C. Odontomesa fulva (brightfield microscopy).
FIGURE 12 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 12. Indian Ocean. # indicates terrestrial. + indicates coastal. Red indicates Protorchestoidae taxa. Blue indicates Talitroidae taxa.
FIGURE 9 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 9. South Atlantic Ocean. # indicates terrestrial. + indicates coastal. Red indicates Protorchestoidae taxa. Blue indicates Talitroidae taxa.
FIGURE 8 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 8. North Atlantic Ocean. # indicates terrestrial. + indicates coastal. Blue indicates Talitroidae taxa.
FIGURE 7 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 7. Cladogram of relationships in the Talitroidea. Significant synapomorphies are indicated (see table 1).
FIGURE 6. Epimera 1–3. 38.2 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 6. Epimera 1–3. 38.2 with slits (after Lowry & Myers 2013). Uropod 1 peduncle 39.1 with distolateral robust seta (after Friend 1987). Uropods 1 and 2 rami. 40.2 dorsally flattened (after Lowry & Baldanzi 2016). Uropod 2 exopod 43.2 with apical spear-shaped setae (after Momtazi et al. 2017); Telson. 48.1 tapering distally (after Duncan 1994); 48.2 rounded distally (after Friend 1987); 48.3 subrectangular (after Hurley 1957); 49.2 with apical robust setae only (after Duncan 1994, Hurley 1957); 49.3 with apical and marginal robust setae (after Friend 1987).
FIGURE 3. Male gnathopod 1 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 3. Male gnathopod 1 propodus anterior margin; 24.1 with 1–2 groups of robust setae (after Morino 2014); 24.2 with 3–4 groups of robust setae (after Marsden & Fenwick 1984); 24.3 with 5–9 groups of robust setae (after Lowry & Myers 2019a); 24. 4 with scattered groups of very short setae (after Bousfield 1982). Male gnathopod 1 propodus 25.1 subrectangular (after Stock & Martin 1988); 25.2 enlarged subrectangular (after Hurley 1957); 25.3 subovoid (after Jo 1988); 25.4 subtriangular with well developed posterodistal lobe (after Marsden & Fenwick, 1984)); 25.5 subrectangular tapering distally (after Shoemaker 1936). Male gnathopod 1 palm 26.1 transverse (White et al. 2013); 26.2 acute or obtuse (Friend 1982); 26.3 absent (after Lowry & Myers 2019a)
FIGURE 11 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 11. South Pacific Ocean. # indicates terrestrial. + indicates coastal. Red indicates Protorchestoidae taxa. Blue indicates Talitroidae taxa.
FIGURE 5. Pereopod 5 merus and carpus. 32. 1 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 5. Pereopod 5 merus and carpus. 32. 1. Not expanded (after Stock 1997); 32.2 merus and carpus expanded (after Bellan-Santini & Ruffo 1991). Pereopod 5 dactylus. 33.1 long, slender (after Stock 1997); 33.2 short, inflated (after Bellan-Santini & Ruffo 1991). Pereopod 7 sexual dimorphism.; 35.2 merus and carpus slightly incrassate (after Duncan 1994); 35.3 merus and carpus strongly incrassate (after Smith 1998); 35.4 carpus massive, plate-like (after Hurley 1956). Oostegites 36.1 with curled tips (after Bousfield 1982); 36.2 with simple smooth tips (after Bousfield 1982); 36.3 with multifurcated tips (after Serejo & Lowry 2008); 36.4 with spatulate tips (after Wildish & LeCroy 2014).
FIGURE 10 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 10. North Pacific Ocean. # indicates terrestrial. + indicates coastal. Red indicates Protorchestoidae taxa. Blue indicates Talitroidae taxa.
FIGURE 2. Male gnathopod 1. 23.2 in A phylogeny and classification of the Talitroidea (Amphipoda, Senticaudata) based on interpretation of morphological synapomorphies and homoplasies
FIGURE 2. Male gnathopod 1. 23.2 posterior margin of merus, carpus and proximal margin of propodus each with palmate setae (after Friend 1982); 23.1 posterior margin of merus, carpus and propodus each with patch of palmate setae (after Hurley 1957); 23.3a. posteriormargin of carpus and propodus each with patch of palmate setae (after Richardson 1991); 23.3b posterior margin of merus and carpus each with patch of palmate setae (after Friend 1987); 23.3c posterior margin of propodus with patch of palmate setae (after Hurley 1957); 23.3d posterior margin of carpus with patch of palmate setae (after Friend 1987); 23.4 posterior margin of merus, carpus and propodus each without patch of palmate setae (after Lowry & Myers 2019a).
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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.