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1,416 results for “Evidence Base”
FIGURE 9 in The Rhyacophila fasciata Group in Western Europe: Confirmation of Rhyacophila denticulata McLachlan 1879 (stat. prom.) and Rhyacophila sociata Navás 1916 (stat. res.), based on morphological and molecular genetic evidence (Trichoptera: Rhyacophilidae)
FIGURE 9. Rhyacophila sociata Navás 1916, paired abdominal hook plates of pupa, 9l and 9r, left and right hook plates, respectively. A: anterior hook plates, dorsal, P: posterior hook plates, dorsal; III–VII: abdominal segments III through VII respectively, dorsal.
FIGURE 6 in Two new species of the genus Ishigakia (Hymenoptera: Ichneumonidae, Acaenitinae) from Vietnam based on morphological and molecular evidence
FIGURE 6. Ishigakia duongi sp. nov., male paratype: a. Ventral view of subgenital plate; b. Ventral view of genital capsule; c. Lateral view of aedeagus
FIGURE 5 in Two new species of the genus Ishigakia (Hymenoptera: Ichneumonidae, Acaenitinae) from Vietnam based on morphological and molecular evidence
FIGURE 5. Ishigakia duongi sp. nov., female holotype: a. Face; b. Lateral view of head and mesosoma; c. Dorsal view of head; d. Mesonotum; e. Dorsal view of propodeum; f. Lateral view of first sternite; g. Lateral view of subgenital plate; h. Tergites 1–2; i. Apical half of fore wing
FIGURE 3 in Two new species of the genus Ishigakia (Hymenoptera: Ichneumonidae, Acaenitinae) from Vietnam based on morphological and molecular evidence
FIGURE 3. Ishigakia babeensis sp. nov., female holotype: a. Face; b. Dorsal view of head and mesoscutum; c. Lateral view of head, mesosoma and first sternite; d. Ventral view of first sternite; e. Wings; f. Dorsal view of scutellum, postscutellum and propodeum
FIGURE 1. The phylogenetic relationships among Acaenitinae species inferred from a 590 in Two new species of the genus Ishigakia (Hymenoptera: Ichneumonidae, Acaenitinae) from Vietnam based on morphological and molecular evidence
FIGURE 1. The phylogenetic relationships among Acaenitinae species inferred from a 590bp fragment of the COI gene based on Maximum Likelihood, Bayesian Inference analyses. Values at nodes are bootstrap or BI. #: values less than 65 or 0.65.
FIGURE 2 in No more machismo in Callyntra (Coleoptera: Tenebrionidae): Callyntra femina, a new species discovered based on female genitalia and genetic evidence
FIGURE 2. Comparative scheme of the ventral and lateral view respectively of the ovipositors from different species of Callyntra. a–d) Callyntra femina sp. nov., b–e) Callyntra carbonaria and c–f) Callyntra riverai. g: gonostyle, cl 2+3+4: lobes of the coxite 2, 3 and 4 fused, cl 1: first lobe of the coxite and p: paraproct. Scale bar: 1 mm.
FIGURE 3. Phylogenetic tree for the four species under study. A in No more machismo in Callyntra (Coleoptera: Tenebrionidae): Callyntra femina, a new species discovered based on female genitalia and genetic evidence
FIGURE 3. Phylogenetic tree for the four species under study. A) Tree obtained using Bayesian Inference with mitochondrial COI and 16S genes combined. Number above the nodes correspond to the posterior probabilities. B) Clade G from the COI + 16S combined tree obtained by Zúñiga-Reinoso & Méndez (2018), highlighting the species under study with colorful branches. The colors are matching the species in both trees.
FIGURE 1 in No more machismo in Callyntra (Coleoptera: Tenebrionidae): Callyntra femina, a new species discovered based on female genitalia and genetic evidence
FIGURE 1. Dorsal view of Callyntra femina sp. nov. a) Head: la, labrum; cl, clipeus; fr, front; amp, anterior margin of pronotum. b) Pronotum: amp, anterior margin of pronotum; prd, pronotal disc; prc, pronotal carena; lmp, lateral margin of the pronotum. c) Elytra: mc, main carenae; es, elytral suture. Scale bar: 1 mm.
FIGURES 11–18 in A new Epeorus (Caucasiron) (Ephemeroptera: Heptageniidae) species from Turkey based on molecular and morphological evidence
FIGURES 11–18. Epeorus (Caucasiron) turcicus sp. nov., mature larvae: 11, abdominal tergum VII, surface and posterior margin; 12, gill I; 13, gill III; 14, gill VII (flattened on the slide); 15a–c, gill plates VII (in natural position from ventral view), variability in shape; 16, gill plates VII, ventral view; 17, sternum IX, male; 18, sternum IX, female.
FIGURE 21–22 in A new Epeorus (Caucasiron) (Ephemeroptera: Heptageniidae) species from Turkey based on molecular and morphological evidence
FIGURE 21–22. Epeorus (Caucasiron) turcicus sp. nov., sampling sites: 21, locality 1; 22, locality 3.
FIGURE 20 in A new Epeorus (Caucasiron) (Ephemeroptera: Heptageniidae) species from Turkey based on molecular and morphological evidence
FIGURE 20. Sampling sites with records of Epeorus (Caucasiron) turcicus sp. nov. (locality numbers correspond to those given in parentheses in the list of material studied, arrow points to the area depicted on the larger map).
FIGURES 6–8 in A new Epeorus (Caucasiron) (Ephemeroptera: Heptageniidae) species from Turkey based on molecular and morphological evidence
FIGURES 6–8. Epeorus (Caucasiron) turcicus sp. nov., mature larvae: 6, labrum (a) ventral, (b) dorsal); 7, incisors of right mandible, ventral; 8, incisors of left mandible, ventral.
Replication data for: Evidence for Dispersing 1D Majorana Channels in an Iron-based Superconductor
<p>Replication Data for: Evidence for Dispersing 1D Majorana Channels in an Iron-based Superconductor</p>
FIGURE 4 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 4. Phylogenetic tree inferred from Maximum likelihood (ML) and Bayesian inference (BI) analyses of complete plastomes. The posterior probability and bootstrap support values are shown next to the branches. Peucedanum macilentum are shown in bold.
FIGURE 1 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 1. Morphology of Peucedanum macilentum. A. Isolectotype of P. macilentum (Delavay J.M. 2476, P [P02272027]); B. A duplicate of voucher specimen (J. Zhou & Z.W. Liu 20160673); C. Fruit. Scale bar= 0.5 mm; D. Mericarp transection. Scale bar= 0.1 mm.
FIGURE 3 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 3. Phylogenetic tree inferred from Maximum likelihood (ML) and Bayesian inference (BI) analyses of ITS sequences. The posterior probability and bootstrap support values are shown next to the branches. The four newly sampled accessions are shown in bold.
FIGURE 2 in Transferring Peucedanum macilentum (Apioideae, Apiaceae) to Ligusticopsis based on morphological and molecular evidences
FIGURE 2. Plastome map of P. macilentum. Genes inside and outside the circle are transcribed clockwise and counterclockwise, respectively. The thick line indicates the extent of different regions, and the dark gray area in the inner circle indicates GC content. Different colors for genes indicate different functional groups.
FIGURE 4 in Two new diploid species of Isoetes (Isoetaceae: Lycopodiopsida) from Southeastern China based on morphological and molecular evidence
FIGURE 4. Chloroplast phylogenetic tree of Isoetes species. ML bootstrap values are presented under branches. Isoetes malinverniana and Isoetes nuttallii were set as the outgroups.
FIGURE 5 in Two new diploid species of Isoetes (Isoetaceae: Lycopodiopsida) from Southeastern China based on morphological and molecular evidence
FIGURE 5. Phylogenetic tree of the second intron of LEAFY homolog. The circles stand for bootstraps ≥ 70. Isoetes hypsophila was set as the outgroup.
FIGURE 2. Isoetes yuhangensis X. Liu & Y.C. Chen. A in Two new diploid species of Isoetes (Isoetaceae: Lycopodiopsida) from Southeastern China based on morphological and molecular evidence
FIGURE 2. Isoetes yuhangensis X. Liu & Y.C. Chen. A. Proximal view of megaspore. B. Distal view of megaspore. C. Equatorial view of megaspore of. D. Proximal view of microspore of. E. Distal view of microspore. F. Mitotic chromosomes of root tip cells. G. Megasporangium. H. Microsporangium. I. Habitat. Scale bars: A–C = 100 μm; D–E = 5 μm; F = 20 μm; G–H = 2 mm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.