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Fig. 13 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 13 Anatomy of C. atlasensis sp. nov., Sidi Mimoun Spring, near Awa Lake, Ifrane (type locality). a Ctenidium, b stomach; c–d female genitalia: c pallial oviduct, d bursa copulatrix and seminal receptacle; e–f male genitalia: e head with penis, f prostate gland
Fig. 14 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 14 Shells, opercula and radulae of C. wakrimi sp. nov., Spring in Douar Assoul, near Khenifra, Middle Atlas (type locality). a–d Shells, a, b holotype MHNM 18ZTMH49, e protoconch and f detailed
Fig. 5 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 5 Anatomy of C. marocana, Lahjar Spring, Essaouira (type locality). a Ctenidium, b stomach, c partial nervous system, d–e female genitalia: d pallial oviduct, e bursa copulatrix and seminal receptacle; f–h
Fig. 12 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 12 Shells, opercula and radulae of C. atlasensis sp. nov., Sidi Mimoun Spring, near Awa Lake, Ifrane (type locality). a–d Shells, a holotype MHNM 18ZTMH47, b paratype MHNM 18ZTMH48. e Inner
Fig. 2 in Coalescence-based species delimitation using genome-wide data reveals hidden diversity in a cosmopolitan group of lichens
Fig. 2 Maximum likelihood tree reconstructions based on single PKS8 gene (a) and four gene: ITS, GPD, mtLSU, and PKS8 (b) data sets. Nodes in bold indicate those with support values of 95% and higher. Black dots
Fig. 4 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 4 Shells, opercula and radulae of C. marocana, Lahjar Spring, Essaouira (ype locality). a–d Shells, e protoconch and f detailed microsculpture of protoconch, g inner and h outer sides of operculum; i–k radulae: i portion of radular ribbon, j central tooth of radula, k inner and outer marginal teeth
Fig. 3 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 3 Time calibrated tree of Corrosella species obtained with *BEAST based on the combined dataset (COI, 16S and 28S) and the normal uncorrelated relaxed clock model. Blue bars on nodes represent the
Fig. 11 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 11 Anatomy of C. mahouchii sp. nov., Tizerdiouin Spring, Timdghasse, 40 km S-E of Khenifra (type locality). a Ctenidium, b stomach, c partial nervous system; d–e female genitalia: d pallial oviduct, e bursa copulatrix and seminal receptacle; f–g male genitalia: f head with penis, g prostate gland
Fig. 8 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 8 Shells, opercula and radulae of C. nechadae sp. nov. a–c Shells, Regrag Spring, 44 km S-E of Fes city (type locality), a holotype MNCN 15.05/200122H, d shell, Tadoute Spring, 70 km N-E Fes, e protoconch and f detailed microsculpture of protoconch, Regrag Spring, 44 km S-E of
Fig. 7 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 7 Anatomy of C. pallaryi. a Ctenidium, Ait Alla Spring, Middle Atlas; b stomach, Chebouka Spring near Miaami Lake, Middle Atlas; c partial nervous system, Spring near Chebouka River and Miaami Lake, Middle Atlas; d–e female genitalia, Chebouka Spring near Miaami Lake, Middle Atlas: d pallial oviduct, e bursa copulatrix and seminal receptacle, f–h male genitalia, Chebouka Spring near Miaami Lake, Middle Atlas: f head with penis, g prostate gland
Fig. 1 a in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 1 a Map of the Mediterranean region showing distributions of the Corrosella populations used in the molecular analyses, b detailed map of the Corrosella populations of southern Iberia. For locality codes, see Table 1 and Suppl. material 1: Table S1
Fig. 10 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 10 Shells, opercula and radulae of C. mahouchii sp. nov., Tizerdiouin Spring, Timdghasse, 40 km S-E of Khenifra (type locality). a–d Shells, a, b Holotype MNCN 15.05/200121H, e protoconch and f
Fig. 15 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 15 Anatomy of C. wakrimi sp. nov., spring in Douar Assoul, near Khenifra, Middle Atlas (type locality). a Ctenidium, b stomach, c partial nervous system; d–e female genitalia: d pallial oviduct, e bursa copulatrix
Fig. 6 in Hidden species diversity of Corrosella Boeters, 1970 (Caenogastropoda: Truncatelloidea) in the Moroccan Atlas reveals the ancient biogeographic link between North Africa and Iberia
Fig. 6 Shells, opercula and radulae of C. pallaryi. a–d Shells, a, b Chebouka Spring near Miaami Lake, Middle Atlas (type locality), c Ait Alla Spring, 5 km S-W of Miaami lake Middle Atlas, d Spring near Chebouka River and Miaami Lake, Middle Atlas, e protoconch and f detailed microsculpture of protoconch, g inner and h outer sides of
FIGURE 8 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 8. Collybiopsis nonnulla (BKF10189). A. Basidiomata; B. Basidiospores; C. Basidia; D. Cheilocystidia; E. Pileipellis; F. Caulocystidia. Scale bars: A = 10 mm; B–D, F = 10 µm; E = 20 µm.
FIGURE 7 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 7. Collybiopsis melanopus (SDBR-CMUWP072).A. Basidiomata; B. Basidiospores; C. Basidia; D. Cheilocystidia; E. Pileipellis; F. Caulocystidia. Scale bars: A = 10 mm; B–F = 10 µm.
FIGURE 4 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 4. Collybiopsis gibbosa (SDBR-CMUWP051). A. Basidiomata; B. Basidiospores; C. Basidia; D. Cheilocystidia; E. Pileipellis. Scale bars: A = 10 mm; B–E = 10 µm.
FIGURE 3 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 3. Phylogenetic tree derived from maximum likelihood analysis of 95 ITS gene sequences. (Continued)
FIGURE 5 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 5. Collybiopsis indocta (SDBR-TSU027). A. Basidiomata; B. Basidiospores; C. Basidia; D. Cheilocystidia; E. Pileipellis; F. Caulocystidia. Scale bars: A = 10 mm, B–F = 10 µm.
FIGURE 3 in Five new records of Collybiopsis (Agaricales, Omphalotaceae) in Thailand: a significant addition to the species diversity and global distribution of the genus
FIGURE 3. Phylogenetic tree derived from maximum likelihood analysis of 95 ITS gene sequences. Sequences of Rhodocollybia maculata TFB14382 and R. butyracea TFB13989 were used as outgroups. The numbers above the branches represent bootstrap percentages (left) and posterior probabilities (right). Bootstrap values ≥ 75% and posterior probabilities ≥ 0.90 are shown. The scale bar represents the expected number of nucleotide substitutions per site. Sequences of specimen vouchers obtained in this study are highlighted in red. Type species are shown in bold.
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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.