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425 results for “Taiwanese”
FIGURES 23, 24 in Revision of the Taiwanese species of the genus Leptophion Cameron, 1901 (Hymenoptera: Ichneumonidae: Ophioninae), with a discussion of their phenology and distribution
FIGURES 23, 24. The habitat (23) and LT collection (24) of L. giganteus Shimizu & Watanabe, sp. nov. on 6. x. 2015 at Lixing Industry Rd, Ren'ai Township, Nantou County, Taiwan (24° 5' 41.7" N 121° 9' 53.7" E; ca. 1630 m alt.).
FIGURES 8–14 in Revision of the Taiwanese species of the genus Leptophion Cameron, 1901 (Hymenoptera: Ichneumonidae: Ophioninae), with a discussion of their phenology and distribution
FIGURES 8–14. Partial views of female L. maculipennis (Cameron, 1905). 8–10, head in frontal (8), dorsal (9), and lateral (10) views; 11, mesosoma in lateral view; 12, propodeum in dorsal view (omitted surface sculptures on anterior area and right side); 13, hamuli on R1; 14, outer tarsal claw of hind leg.
FIGURES 16–22 in Revision of the Taiwanese species of the genus Leptophion Cameron, 1901 (Hymenoptera: Ichneumonidae: Ophioninae), with a discussion of their phenology and distribution
FIGURES 16–22. Partial views of a PT (female) of L. giganteus Shimizu & Watanabe, sp. nov. 16–18, head in frontal (16), dorsal (17), and lateral (18) views; 19, mesosoma in lateral view; 20, propodeum in dorsal view (omitted surface sculptures on anterior area and right side); 21, hamuli on R1; 22, outer tarsal claw of hind leg.
FIGURES 5–7 in Revision of the Taiwanese species of the genus Leptophion Cameron, 1901 (Hymenoptera: Ichneumonidae: Ophioninae), with a discussion of their phenology and distribution
FIGURES 5–7. Lateral habitus of Leptophion occurring in Taiwan. 5, L. maculipennis; 6, L. giganteus Shimizu & Watanabe, sp. nov. (HT); 7, L. radiatus. Scale bar: 5.0 mm.
FIGURES 1–4 in Revision of the Taiwanese species of the genus Leptophion Cameron, 1901 (Hymenoptera: Ichneumonidae: Ophioninae), with a discussion of their phenology and distribution
FIGURES 1–4. Measurement characters of Leptophion. 1, face in frontal view; 2, fore wing; 3, hind wing; 4, basal segments of metasoma in lateral view. Indices: FI=A/B, C=facial height, D=facial width, E=clypeal height, F=clypeal width, AI=I/G, CI=M/ L, DI=J/K, ICI=G/H, SDI=K/N, NI=O/P, DMI=U/V, PI=Q/R.
FIGURE 1 in A new species of tonguefish (Pleuronectiformes: Cynoglossidae) from Taiwanese waters
FIGURE 1. Symphurus multimaculatus, new species, holotype (ASIZP 67634, 93.5 mm SL) taken by commercial trawler off northeastern Taiwan. A. Ocular-side pigmentation of freshly-caught adult female. B. Blind-side coloration of same specimen.
FIGURE 2 in A new species of tonguefish (Pleuronectiformes: Cynoglossidae) from Taiwanese waters
FIGURE 2. Symphurus multimaculatus, new species, paratype (ASIZP 67648, 75.0 mm SL) taken by commercial
FIGURES 1–12 in The Taiwanese species of the genus Paraphloeostiba Steel, 1960 (Coleoptera: Staphylinidae: Omaliinae: Omaliini)
FIGURES 1–12. Abdominal segments and female genitalia of Paraphloeostiba formosana (1−6; paratypes: Taiwan, Chenkung) and P. sonani (7−12; Taiwan, Chenkung): 1, 7−male abdominal tergite VIII (dorsal view), 2, 8−male abdominal sternite VIII (ventral view), 3, 9−female abdominal tergite VIII (ventral view), 4, 10−female abdominal sternite VIII (ventral view), 5, 11−female genital segment (ventral view), 6, 12−spermatheca. Scale bar: 0.1 mm.
FIGURES 21–26 in The Taiwanese species of the genus Paraphloeostiba Steel, 1960 (Coleoptera: Staphylinidae: Omaliinae: Omaliini)
FIGURES 21–26. Aedeagus (21−25, 24—apical part of aedeagus, 25—apical part of right paramere) and male genital segment (26) of Paraphloeostiba sonani, lectotype: 21, 24—parameral view, 22, 25—dorsolateral view, 23—abparameral view, 26—ventral view. Scale bar: 0.1 mm.
Fig. 2 in First Case ofStegobium paniceum(L., 1758) (Coleoptera: Anobiidae) Infesting Paintings in a Taiwanese Museum
Fig. 2. Stegobium paniceum infestation in the Chi Mei Museum's painting storage. a) Severely damaged support layer of painting, b) Larvae and pupae visible under the holes on the fabric lining.
Fig. 1 in First Case ofStegobium paniceum(L., 1758) (Coleoptera: Anobiidae) Infesting Paintings in a Taiwanese Museum
Fig. 1. Stegobium paniceum found in the Chi Mei Museum's painting storage, in dorsal (upper), ventral (middle), and lateral (lower) view.
Figure 1. A in Systematics and phylogeography of the Taiwanese endemic minnow Candidia barbatus (Pisces: Cyprinidae) based on DNA sequence, allozymic, and morphological analyses
Figure 1. A, image of Candidia barbatus; B, map of Taiwan showing the late Pleistocene (dashed line) shoreline, the current shoreline (solid line) (modified from Boggs et al., 1979 and Wu et al., 2007), the sampling sites of Candidia barbatus, the native species range (shaded area), and mtDNA lineages recovered. Geographical ranges of allozyme clusters are demarcated by arrows. Numerical codes for each sampling site: 1, Wulaokeng River (WL); 2, Shuangshi River (SS); 3, Masu River (MS); 4, Shandiaoling River (SD); 5, Sifen River (SF); 6, Waishuangshi River (WS); 7, Dahan River (DH); 8, Beishi River (BS); 9, Ayu River (AY); 10, Hapen River (HP); 11, Chingmei River (CM); 12, Fengshan River (FES); 13, Houlong River (HL); 14, Daan River (DA); 15, Dajia River (DJ); 16, Dadu River (DD); 17, Choshui River (CS); 18, Puzi River (PZ); 19, Tsengwen River (TW); 20, Nanzishan River (NZ); 21, Laonong River (LN); 22, Ailiao River (AL); 23, Lili River (LL); 24, Fanshan River (FAS); 25, Fengang River (FG); 26, Sichong River (SH) (also see Table 1).
Figure 4 in Systematics and phylogeography of the Taiwanese endemic minnow Candidia barbatus (Pisces: Cyprinidae) based on DNA sequence, allozymic, and morphological analyses
Figure 4. The marginal posterior probability distributions for the migration rate of Candidia barbatus between northern and central Taiwan.
Figure 3 in Systematics and phylogeography of the Taiwanese endemic minnow Candidia barbatus (Pisces: Cyprinidae) based on DNA sequence, allozymic, and morphological analyses
Figure 3. Detection of the number of groups by STRUCTURE. A, L(K) as a function of K; B, DK following Evanno et al. (2005) as a function of K.
Figure 2 in Systematics and phylogeography of the Taiwanese endemic minnow Candidia barbatus (Pisces: Cyprinidae) based on DNA sequence, allozymic, and morphological analyses
Figure 2. The neighbor-joining (NJ) tree corrected by the Hasegawa–Kishino–Yano (HKY) + Gamma (0.1719) model based on the complete mitochondrial cytochrome b sequence. The times to the most recent common ancestor for major splitting events are shown below branches with their 95% highest posterior density in parentheses. Numbers above the branches, from top to bottom, are bootstrap values derived from maximum likelihood, Bayesian, NJ, and maximum parsimony methods, respectively. Candidia sieboldii and Candidia temminckii were included as outgroups. H01–H05: lineage A, recovered from Masu River, Shandiaoling River, Sifen River, Waishuangshi River, Dahan River, Beishi River, Hapen River, and Chingmei River. H06, H07: Lineage B, recovered from Wulaokeng River, Shuangshi River, Masu River, Ayu River, Chingmei River, Fengshan River, Houlong River, and Daan River. H08: Lineage C, recovered from Masu River, Shandiaoling River, Sifen River, Beishi River, Ayu River, Dajia River, Dadu River, and Choshui River. H09–H11: Lineage D, recovered from Puzi River, Tsengwen River, and Nanzishan River. H12: Lineage E, recovered from Nanzishan River and Laonong River. H13–H19: Lineage F, recovered from Ailiao River, Lili River, Fanshan River, Fengang River, and Sichong River.
Fig. 2 in Lactobacillus suantsaii sp. nov., isolated from suan-tsai, a traditional Taiwanese fermented mustard green
Fig. 2. Phylogenetic tree based on the concatenated housekeeping gene sequences (pheS and rpoA) showing the relationship of Lactobacillus suantsaii sp. nov. L88T with strains of closely related species. The tree was reconstructed by the neighbour-joining method on the basis of a comparison of 1138 bp, and Leuconostoc mesenteroides subsp. mesenteroides ATCC 8293T was used as an outgroup. Bootstrap values based on 1000 replicates are shown at branch nodes for neighbour-joining, maximum-likelihood and minimum-evolution methods, respectively. Bar, 5 % sequence divergence.
Fig. 3 in Lactobacillus suantsaii sp. nov., isolated from suan-tsai, a traditional Taiwanese fermented mustard green
Fig. 3. Phylogenomic tree of Lactobacillus suantsaii sp. nov. L88T with strains of closely related species. The tree was reconstructed by the maximum-likelihood method on the basis of a comparison of 660 core genes. Leuconostoc mesenteroides subsp. mesenteroides ATCC 8293T was used as an outgroup. Bar, 10 % sequence divergence.
Fig. 1 in Lactobacillus suantsaii sp. nov., isolated from suan-tsai, a traditional Taiwanese fermented mustard green
Fig. 1. Phylogenetic tree based on 16S rRNA gene sequences showing the relationship of Lactobacillus suantsaii sp. nov. L88T with strains of closely related species. The tree was reconstructed by the maximum-likelihood method on the basis of a comparison of approximately 1419 bp, and Leuconostoc mesenteroides subsp. mesenteroides ATCC 8293T was used as an outgroup. Bootstrap values (>60 %) based on 1000 replicates are shown at branch nodes. Bar, 2 % sequence divergence.
On following pages: 138. Southern Short-tailed Shrew (Blarina carolinensis); 139. Everglades Short-tailed Shrew (Blarina peninsulae); 140. Sherman's Short-tailed Shrew (Blarina sherman); 141. Sichuan Short-tailed Shrew (Blarinella quadraticauda); 142. Burmese Short-tailed Shrew (Blarinella ward); 143. Indochinese Short-tailed Shrew (Blarinella griselda); 144. Chinese Mole Shrew (Anourosorex squamipes); 145. Taiwanese Mole Shrew (Anourosorex yamashinai); 146. Assam Mole Shrew (Anourosorex assamensis); 147. Giant Mole Shrew (Anourosorex schmidi); 148. Desert Gray Shrew (Notiosorex crawford); 149. Cockrum''s Gray Shrew (Notiosorex cockrumi); 150. Large-eared Gray Shrew (Notiosorex evotis); 151. Villa's Gray Shrew (Notiosorex villa); 152. Mexican Shrew (Megasorex gigas); 153. Taiwanese Brown-toothed Shrew (Episoriculus fumidus); 154. Arboreal Brown-toothed Shrew (Episoriculus macrurus); 155. Bailey's Brown-toothed Shrew (Episoriculus baileyi); 156. Long-tailed Brown-toothed Shrew (Episoriculus leucops); 157. Hodgson's Brown-toothed Shrew (Episoriculus caudatus); 158. Sichuan Brown-toothed Shrew (Episoriculus sacratus); 159. Hidden Brown-toothed Shrew (Episoriculus umbrinus); 160. Nepalese Brown-toothed Shrew (Episoriculus soluensis); 161. Himalayan Shrew (Soriculus nigrescens); 162. De Winton's Brown-toothed Shrew (Chodsigoa hypsibia); 163. Pygmy Brown-toothed Shrew (Chodsigoa parva); 164. Smith's Brown-toothed Shrew (Chodsigoa smithii); 165. Salenski's Brown-toothed Shrew (Chodsigoa salenski)); 166. Dusky Brown-toothed Shrew (Chodsigoa furva); 167. Lesser Taiwanese Brown-toothed Shrew (Chodsigoa sodalis); 168. Van Sung''s Brown-toothed Shrew (Chodsigoa caovansunga); 169. Hoffmann's Brown-toothed Shrew (Chodsigoa hoffmanni); 170. Lowe's Brown-toothed Shrew (Chodsigoa parca); 171. Bornean Water Shrew (Chimarrogale phaeura); 172. Sumatran Water Shrew (Chimarrogale sumatrana); 173. Malayan Water Shrew (Chimarrogale hantu); 174. Chinese Water Shrew (Chimarrogale styani); 175. Himalayan Water Shrew (Chimarrogale himalayica); 176. Leander's Water Shrew (Chimarrogale leander); 177. Japanese Water Shrew (Chimarrogale platycephala); 178. Elegant Water Shrew (Nectogale elegans); 179. Mediterranean Water Shrew (Neomys anomalus); 180. Transcaucasian Water Shrew (Neomys teres); 181. Eurasian Water Shrew (Neomys fodiens). in Soricidae
On following pages: 138. Southern Short-tailed Shrew (Blarina carolinensis); 139. Everglades Short-tailed Shrew (Blarina peninsulae); 140. Sherman's Short-tailed Shrew (Blarina sherman); 141. Sichuan Short-tailed Shrew (Blarinella quadraticauda); 142. Burmese Short-tailed Shrew (Blarinella ward); 143. Indochinese Short-tailed Shrew (Blarinella griselda); 144. Chinese Mole Shrew (Anourosorex squamipes); 145. Taiwanese Mole Shrew (Anourosorex yamashinai); 146. Assam Mole Shrew (Anourosorex assamensis); 147. Giant Mole Shrew (Anourosorex schmidi); 148. Desert Gray Shrew (Notiosorex crawford); 149. Cockrum''s Gray Shrew (Notiosorex cockrumi); 150. Large-eared Gray Shrew (Notiosorex evotis); 151. Villa's Gray Shrew (Notiosorex villa); 152. Mexican Shrew (Megasorex gigas); 153. Taiwanese Brown-toothed Shrew (Episoriculus fumidus); 154. Arboreal Brown-toothed Shrew (Episoriculus macrurus); 155. Bailey's Brown-toothed Shrew (Episoriculus baileyi); 156. Long-tailed Brown-toothed Shrew (Episoriculus leucops); 157. Hodgson's Brown-toothed Shrew (Episoriculus caudatus); 158. Sichuan Brown-toothed Shrew (Episoriculus sacratus); 159. Hidden Brown-toothed Shrew (Episoriculus umbrinus); 160. Nepalese Brown-toothed Shrew (Episoriculus soluensis); 161. Himalayan Shrew (Soriculus nigrescens); 162. De Winton's Brown-toothed Shrew (Chodsigoa hypsibia); 163. Pygmy Brown-toothed Shrew (Chodsigoa parva); 164. Smith's Brown-toothed Shrew (Chodsigoa smithii); 165. Salenski's Brown-toothed Shrew (Chodsigoa salenski)); 166. Dusky Brown-toothed Shrew (Chodsigoa furva); 167. Lesser Taiwanese Brown-toothed Shrew (Chodsigoa sodalis); 168. Van Sung''s Brown-toothed Shrew (Chodsigoa caovansunga); 169. Hoffmann's Brown-toothed Shrew (Chodsigoa hoffmanni); 170. Lowe's Brown-toothed Shrew (Chodsigoa parca); 171. Bornean Water Shrew (Chimarrogale phaeura); 172. Sumatran Water Shrew (Chimarrogale sumatrana); 173. Malayan Water Shrew (Chimarrogale hantu); 174. Chinese Water Shrew (Chimarrogale styani); 175. Himalayan Water Shrew (Chimarrogale himalayica); 176. Leander's Water Shrew (Chimarrogale leander); 177. Japanese Water Shrew (Chimarrogale platycephala); 178. Elegant Water Shrew (Nectogale elegans); 179. Mediterranean Water Shrew (Neomys anomalus); 180. Transcaucasian Water Shrew (Neomys teres); 181. Eurasian Water Shrew (Neomys fodiens).
On following pages: 16. Arunachal Macaque (Macaca munzala); 17. Tibetan Macaque (Macaca thibetana); 18. Stump-tailed Macaque Macaca arctoides); 19. Long-tailed Macaque (Macaca fascicularis); 20. Rhesus Macaque (Macaca mulatta); 21. Japanese Macaque (Macaca fuscata); 22. Taiwanese Macaque (Macaca cyclopis). in Cercopithecidae
On following pages: 16. Arunachal Macaque (Macaca munzala); 17. Tibetan Macaque (Macaca thibetana); 18. Stump-tailed Macaque Macaca arctoides); 19. Long-tailed Macaque (Macaca fascicularis); 20. Rhesus Macaque (Macaca mulatta); 21. Japanese Macaque (Macaca fuscata); 22. Taiwanese Macaque (Macaca cyclopis).
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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.