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FIGURE 7 in Two new enigmatic species of the genus Merodon Meigen (Diptera: Syrphidae) from the north-eastern Middle East
FIGURE 7. Male genitalia of Merodon, hypandrium, lateral view. A Merodon eumerusi sp. n., B Merodon ottomanus. vr— ventral ridge, s—lateral sclerite of aedeagus. Scale bar, 0.2 mm.
FIGURE 8 in Two new enigmatic species of the genus Merodon Meigen (Diptera: Syrphidae) from the north-eastern Middle East
FIGURE 8. Head of Merodon mixtum sp. n.. A, C lateral view, B, D dorsal view. A, B male, C, D female. Scale bar, 1 mm.
Supplementary Table S1A in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Table S1A. Original sequences and sequences from GenBank used in the molecular genetic analysis
Supplementary Fig. S8 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S8. Bivariate plot of skull dimensions of the examined samples of the R. hipposideros group: results of the canonical discriminant analysis of selected nine plain and seven relative dimensions (see Results for details)
Supplementary Fig. S6 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S6. Maximum likelihood tree of the reconstructed phylogenetic relationships of the R. hipposideros group and selected species of the genus Rhinolophus based on STAT. Branch support values are shown above/below the branches in order SH-aLRT/ UFBoot
Supplementary Fig. S7 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S7. Chronogram of the family Rhinolophidae based on a Bayesian inference of the nuclear dataset (according to the model by Dool et al., 2016). The numbers at nodes show mean divergence time estimates (Ma) and horizontal boxes 95% highest posterior density intervals of these estimates. The asterisk (*) indicates nodes with low branch support, the rest of the nodes were supported (PP ≥ 0.95)
Supplementary Fig. S5 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S5. Maximum likelihood tree of the reconstructed phylogenetic relationships of the R. hipposideros group and selected species of the genus Rhinolophus based on ROGDI. Branch support values are shown above/below the branches in order SHaLRT/UFBoot
Supplementary Fig. S4 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S4. Maximum likelihood tree of the reconstructed phylogenetic relationships of the R. hipposideros group and selected species of the genus Rhinolophus based on COPS. Branch support values are shown above/below the branches in order SH-aLRT/UFBoot
Supplementary Fig. S3 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S3. Maximum likelihood tree of the reconstructed phylogenetic relationships of the R. hipposideros group and selected species of the genus Rhinolophus based on BGN. Branch support values are shown above/below the branches in order SHaLRT/UFBoot
FIG. 4 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 4. Bivariate plot of skull dimensions of the examined samples of the Rhinolophus hipposideros group: condylocanine length of skull (LCc) against length of the upper tooth-row (CM3); values in mm
FIG. 3 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 3. Chronogram of the family Rhinolophidae based on a Bayesian inference of the nuclear dataset (according to the model by Stoffberg et al., 2010). The numbers at nodes show mean divergence time estimates (Ma) and horizontal boxes 95% highest posterior density intervals of these estimates. The asterisk (*) indicates nodes with low branch support, the rest of the nodes were supported (PP ≥ 0.95)
FIG. 9 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 9. Portraits of Rhinolophus midas Andersen, 1905 from Oman; A, B — ♂ (NMP 93782), Misfah, Ad Dakhiliyah Province, 9 April 2011, lateral and frontal views; C — ♀ (NMP 93994), Sal Alah, Masandam Province, 13 March 2012, lateral view. Photos by A. Reiter
FIG. 8 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 8. Spectrograms of echolocation call examples of the Rhinolophus hipposideros group (original data); A — an individual recorded inside the Aksamitka Cave, Slovakia; B — an individual foraging at Arjank, Iran (cf. Benda et al., 2012); C — a handled individual recorded at Zingrogh, Tajikistan; D — a handled individual recorded at Misfah, Oman. For details see Materials and Methods
Supplementary Fig. S2 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S2. Maximum likelihood tree of the reconstructed phylogenetic relationships of the R. hipposideros group and selected species of the genus Rhinolophus based on ACOX. Branch support values are shown above/below the branches in order SH-aLRT/UFBoot
Supplementary Fig. S1 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
Supplementary Fig. S1. Maximum likelihood tree of reconstructed phylogenetic relationships of the R. hipposideros group based on as complete as possible cytochrome-b dataset (1,103 bp). Branch support values are shown at the nodes
FIG. 6 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 6. Bivariate plot of tooth dimensions of the examined samples of the Rhinolophus hipposideros group: relative crown size of third upper molar (LM3×LaM3/LM1×LaM1) against crown size of upper canine (LCs×LaCs)
FIG. 2 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 2. Maximum likelihood tree of reconstructed phylogenetic relationships of the Rhinolophus hipposideros group with selected species of the families Rhinolophidae and Hipposideridae based on the nuclear (left) and mitochondrial (right) datasets, respectively. Branch support values are shown by pie charts on the nodes
FIG. 1 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 1. Map of the distribution range of the Rhinolophus hipposideros group (pale grey; after numerous sources) and the localities of origin and grouping of the examined samples (some symbols can denote more sites); full squares indicate the samples examined in both molecular genetic and morphological comparisons, open squares indicate the samples examined in the morphological comparison only, and open circles the samples used in molecular genetic analysis only. Grey dots denote isolated records out of the known distribution range
FIG. 5 in A revision of the Rhinolophus hipposideros group (Chiroptera: Rhinolophidae) with definition of an additional species from the Middle East
FIG. 5. Bivariate plot of skull dimensions of the examined samples of the Rhinolophus hipposideros group: relative length of rostrum (CM3/LCc) against relative horizontal length of tympanic bulla (LBT/LCc)
Fig. 8. A in Taxonomic evaluation of the "irani-schidlovskii" species complex (Rodentia: Cricetidae) in the Middle East: a morphological and genetic combination
Fig. 8. A) Ventral, dorsal, and lateral views of the skull. B) Upper and lower tooth rows in Microtus irani darvishi n. ssp. from Bakhtiari Mts., southwestern Iran. The lingual side is to the right. The additional lop of M2 (posterio-lingual salient angle) is absent in all specimens examined. Note the variation of the anterior cup of m1 and the morphotype of M3.
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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.