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Fig. 13. A in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 13. A Bayesian inference (BI) tree for species of Parasesarma, based on the cytochrome c oxidase subunit I (COI) gene. Probability values at the nodes represent support values for BI and maximum likelihood (ML). For haplotype names, see table 1.
Fig. 1 in Fig. 3 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 1. Life cycle stages of N. indica recovered from R. kanagurta. ES-1, ES-II, and ES-III: Eggs undergoing embryonic development; Manca-I and Manca-II: larval stages; male, transitional, and female: adult stages.
Fig. 8 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 8. (A–C) Parasesarma sanguimanus n. sp., holotype male (15.2 × 13.0 mm, NCHUZOOL 15623), southern Taiwan; (D) P. sanguimanus n. sp., paratype female (12.0 × 9.8 mm, NCHUZOOL 15631), southern Taiwan; (E, F) P. cricotus (Rahayu & Davie, 2002), male (19.2 × 15.0 mm, MZB), Papua, Indonesia; (G) P. cricotus (Rahayu & Davie, 2002), female (16.9 × 3.5 mm, MZB), Papua, Indonesia. A, B, E, left dactylar finger; C, F, left G1s ventral (pleonal) views; D, G, left vulvae. A, outer view; B, E, dorsal views. Scale bars = 1.0 mm.
Fig. 2 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 2. Colour in life of three new species of Parasesarma from southern Taiwan in the field. (A–D) P. aurifrons n. sp. (specimens not collected); (E) P. sanguimanus n. sp. (specimen not collected); (F) P. gemmatum n. sp. (paratype male, 14.8 × 12.4 mm, NCHUZOOL 15532). A, B, E, on riverbed from Gangkou R. estuary; C, D, climbing on vegetations (Gangkou R. estuary, Pingtung, Taiwan); F, climbing on an eroded coral reef under a coastal forest (east coast to Tanzih Fishing Port, Pingtung, Taiwan).
Fig. 5 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 5. Parasesarma obliquefrons (Rathbun, 1924), holotype male (12.8 × 11.3 mm) (USNM 45913a), Samoa. (A) dorsal view; (B) frontal view; (C) ventral view; (D) left chela; (E) dorsal view of right chela; (F) dorsal view of left dactylar finger.
Fig. 4. Parasesarma aurifrons n in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 4. Parasesarma aurifrons n. sp., southern Taiwan. (A–E) holotype male (10.4 × 8.5 mm, NCHUZOOL 15602); (F) paratype female (13.8 × 11.2 mm, NCHUZOOL 15609). A, carapace dorsal view; B–D, right chela; E, left G1 dorsal (sternal) view; F, left vulva. B, outer view; C, dorsal view of palm and dactylar finger; D, lateral view of pectinated cristae on palm. Scale bars: A–C, E, F = 1.0 mm; D = 0.5 mm.
Fig. 1 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 1. Colour in life of three new species of Parasesarma from southern Taiwan. (A, B) P. aurifrons n. sp., paratype male (12.4 × 10.2 mm, NCHUZOOL 15610); (C, D) P. sanguimanus n. sp., paratype male (17.6 × 15.1 mm, NCHUZOOL 15626); (E, G) P. gemmatum n. sp., holotype male (15.7 × 13.1 mm, NCHUZOOL 15639); (F) P. gemmatum n. sp., paratype female (14.8 × 12.4 mm, NCHUZOOL 15532). A, C, E, F, dorsal views; B, D, G, ventral views.
Fig. 6 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 6. Color in life of species of the Phymaturus antofagastensis lineage (males). (A) Phymaturus antofagastensis (Photo: S. Nenda); (B) Phymaturus laurenti (Photo: F. Lobo); (C) Phymaturus denotatus (Photo: D. Slodki); (D) Phymaturus mallimaccii (Photo: C. Abdala).
Fig. 5 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 5. Female variation of Phymaturus fiambala sp. nov. Character 140 (1): presence of a scapular yellow to grey spot (females); character 180 (1): females or/and juvenile with transversal lighter stripes (whitish) over their backs; character 183 (2): flank color in females yellow (Photos: M. Quipildor).
Fig. 3 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 3. (A) Details of the head in a female of Phymaturus fiambala sp. nov. (MCN-UNSa 2123); (B) newborn P. fiambala sp. nov. (IBIGEO 5770); (C) ventral view of females of P. laurenti; (D) females of P. denotatus. Character 35 (number of precloacal pores in males) 112 (row of precloacal pores); character 138 (1) presence of enlarged postcloacal scales in males; character 156 (1) preocular scale small separated from canthal by another scale; character 165 (1) three to seven enlarged scales on the anterior border of the auditory meatus; character 166 (0) enlarged scales on the anterior border of auditory meatus projected posteriorly over the ear opening (Photos: M. Quipildor).
Fig. 1 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 1. (A) Dorsal view of the holotype of Phymaturus fiambala sp. nov. IBIGEO 5756. (B) Ventral view of the same specimen (Photos: M. Quipildor).
Fig. 2 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 2. (A) Dorsal view of a female of Phymaturus fiambala sp. nov. IBIGEO 5763. (B) Ventral view of the same specimen (Photos: M. Quipildor).
Fig. 4 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 4. Homogeneous pattern and color of males of Phymaturus fiambala sp. nov. Character 124 (0): sides and dorsum of head melanism of mature males absent; character 111 (0): anterior gular fold absent; character 108 (1): presence of enlarged scales on posterior gular fold; character 113 (1): presence of supernumerary precloacal pores; character 139 (1): presence of a scapular yellow to grey spot in males; character 172 (1): dorsal melanism of neck incomplete over the mid vertebral line (Photos: M. Quipildor); character 116 (0): Throat of males immaculate; character 138 (1): Presence of enlarged postcloacal scales in males.
Fig. 7 in Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 7. Phylogenetic relationships recovered for the mallimaccii subclade of the Phymaturus palluma group. (A) based on all available DNA sequences of the genbank (P. aguanegra and P. sp. lar not included because the lack of data). (B) based on a combined data set of DNA sequences and morphology. We updated morphological information on the new species and other nine species and added 15 new characters to Lobo et al. (2016) and Hibbard et al. (2019) original data sets. Values under branches are Jackknife support calculated TNT v1.5. Running the analysis with only DNA sequences P. fiambala sp. nov. is basal to the remaining species of the antofagastensis lineage.
Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A in Chloeia incerta de Quatrefages 1866
Fig. 1. Norileca indica and its protandrous hermaphroditic reproductive system. A. Norileca indica – male; B. paired structure of gonad (20 X); C-E. Gonad in different male stages (C: M1, D: M2, E: M3) (40 X); F. testes lobes showing different staged cells and germarium. t1, t2, t3- testis lobes 1-3, oovary, od- oviduct, vd- vas deferens, avd- anterior vas deferens, pvd- posterior vas deferens, Oo- oocytes, sp- spermatophore, ag- androgenic gland.
Fig. 11 Female reproductive system. a in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 11 Female reproductive system. a Semithin transverse section of the single ovary provided with small blood vessels (asterisk), containing oocytes, located between the oviduct and the ventral blood vessel. b Ultrastructure of the oviduct composed of an inner ciliated epithelium with apical junctional complexes (arrowhead) and a basal matrix (double arrowhead) surrounded by a myoepithelium. c Oocyte in the first meiotic prophase full of yolk granules and lipid droplets surrounded by a small blood vessel, blood lacuna and flattened follicle cells. d Oocyte in direct contact with blood lacuna ramifying into the oolemma (arrowhead). e Egg envelope consisting of extracellular matrix penetrated by microvilli. f Light microscopy of oocyte. Abbreviations: bc = bacteriocyte; bl = blood lacuna; bv = blood vessel; cc = coelomic cavity; ci = cilium; ep = epidermis; fc = follicle cell; ge = germinal vesicle; ld = lipid droplet; mc = myocytes; ml = body wall muscle layer; mm = median mesentery; ms = mesenchyme; mv = microvilli; ne = nucleolus; oc = oocyte; od = oviduct; vv = ventral blood vessel; y = yolk granule
Figure 3 in Anatomical and histochemical descriptions of the male reproductive system of Diachasmimorpha longicaudata (Ashmed) (Hymenoptera: Braconidae)
Figure 3 Histology of the male reproductive system of Diachasmimorpha longicaudata. A. Longitudinal section of the testicle, showing the presence of only one follicle.B. Germarium region with spermatogonia from the testicular follicle (circle). Spermatogonia (Sg). C. Cysts with spermatocytes in the testicular follicle growth zone (circle). Spermatocytes (Sc). D. Testicular follicle with cysts at different stages of spermatogenesis: Cystic cell (arrow continues), spermatids (dashed circle), spermatozoa in bundles with elongated shape (continuous circle), spermatozoa bundles (dotted arrow), conjunctiva capsule (C). Spermatids (St); Spermatozoa (Sz). E. Cyst containing mature spermatozoa (arrow), cystic cell nucleus (CC).
Figure 5 in Anatomical and histochemical descriptions of the male reproductive system of Diachasmimorpha longicaudata (Ashmed) (Hymenoptera: Braconidae)
Figure 5 Histochemistry of the accessory glands of Diachasmimorpha longicaudata. A. Longitudinal section and B. cross section of the accessory gland stained with Xylidine Ponceau. Lumen (L), protein secretions (arrow).C. Accessory gland wall containing secretory vesicles (arrow). D and E. PAS. positive for secretions and substances present in the apical region of secretory cells, and pavement epithelial cells (arrow).
Figure 1 in Anatomical and histochemical descriptions of the male reproductive system of Diachasmimorpha longicaudata (Ashmed) (Hymenoptera: Braconidae)
Figure 1 Photomicrograph of the male reproductive system of Diachasmimorpha longicaudata. A. The testes and seminal vesicles are surrounded by the capsule (c), accessory gland (g), ejaculatory duct (ed), B. testicles after capsule rupture. Testis (t), deferent duct (dd), seminal vesicle (sv), accessory glands (g), ejaculatory duct (ed) and aedeagus (ae).
Fig. 37. Female reproductive system. A in A Phylogenetic Reassessment Of The Rare S. E. Asian Firefly Genus Pygoluciola Wittmer (Coleoptera: Lampyridae: Luciolinae)
Fig. 37. Female reproductive system. A, diagrammatic representation of ventrite 8, part of female genitalia, bursa and spermatheca and gland [bursa is shown to side of spermatheca] Figure not to scale, dimensions represented relatively; B, internal aspect, hook in bursa; scale line is 1 mm. Figure legend: B, bursa (arrow indicates hook); O, median oviduct; S, spermatheca; P, gland; V8, ventrite 8; V, valvifers female genitalia.
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Allen Brain Atlas
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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.