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Fig. 3 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 3. Relationship between body size (SL, mm) and isotopic values (A: δ13C; B: δ15N) in studied apogonids. Only significant relationships are illustrated.
Fig. 1 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 1. (A) Mean values (± SD) of δ13C (‰) and δ15N (‰) of cardinalfishes. (B) Isotopic niches of cardinalfishes. Points are individual measurements, and solid lines represent the bivariate standard ellipses associated to each group Species and sampling years are represented by different symbols and colors, respectively.
Fig. 7 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 7. SEM of sensilla of P. brachychaeta male: (a) ventral side of pedicel with short, rigid and pointed type-1 trichoid sensilla and single rhinariolum near the distal end of the segment (white arrow); (b) structure of the rhinariolum showing small aperture and coeloconic-like sensillum with poorly-developed projections; (c) antenna segments I-V; (d) secondary rhinaria (small placoid sensilla) on ANT III; (e) different shapes and sizes of the secondary rhinaria (small placoid sensilla) on ANT III; (f) secondary rhinaria (small placoid sensilla) (sr) and primary rhinarium (large placoid sensillum) (white arrowhead) on ANT IV; (g) sensilla on ANT V: primary sensilla in form of major rhinarium (large placoid sensillum) (white arrowhead) and accessory rhinaria (black arrowhead) on the apex of BASE and secondary rhinaria (small placoid sensilla) on the whole length of BASE of ANT V; (h) structure of primary rhinaria on ANT V: large and rounded major rhinarium (white arrowhead), and two kinds of accessory rhinaria – mushroom-shaped small placoid sensilla (solid arrows) and sunken coeloconic sensilla (dotted arrow); (i) type-I trichoid sensillum as found on antennal segments I-IV and ANT V BASE; (j) type-II trichoid sensilla on ANT V PT, arranged into three apical (ap) and two subapical (sap) setae; (k) straight trichoid sensillum with expanded apex as distributed mostly on the spinal and pleural regions of the body; (l) slightly curved and blunt trichoid sensillum as distributed mostly on the marginal regions of the body; (m) trichoid sensilla on tibia: with capitate or blunt apices dorsally and with pointed apices ventrally.
Fig. 6 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 6. Relationships between the chemical compositions (water composition: water in % wet mass (WM), carbon composition: C in % dry mass (DM) and nitrogen composition: N in % DM) and relative composition of the oil sac volume (OSV) to the total volume (TV) for various Copepoda in the subarctic Pacific Ocean (cf. Table 3). For significant relationships, regressions were calculated; ***: p <0.001, ****: p <0.0001, ns: not significant. The values for volume were the applied mean values of the lateral and dorsal views.
Fig. 7 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 7. Comparison of the dry mass (DM) - prosome length (PL) regressions of Copepoda of similar body sizes belonging to three genera (Paraeuchaeta, Neocalanus and Eucalanus bungii). For details of the regressions, see table 1.
Fig. 4 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 4. Cypria lacrima sp. nov. A: Hemipenis of male, B: rake-like organ of male, C: A2, D: T1, E: hypostome. Female (C-E). Scale bar = 10 μm.
Fig. 5 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 5. Scatterplot of CV1 and CV2 scores for lateral view of the mandible. TPS deformation grids for the extreme points of each axis are shown. Deformation grids were 3x exaggerated.
Fig. 2 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 2. Diagrams of the length and volume measurements of Copepoda (Eucalanus bungii C6F with full lipid) in dorsal (A) and lateral (B) views. C: E. bungii C6F with low lipid, D: Neocalanus cristatus C5 with full lipid (left) and low lipid (right), E: Metridia okhotensis C5F with full lipid (left) and low lipid (right). PL: prosome length, PW: prosome width, OSL: oil sac length, OSW: oil sac width, UL: urosome length, UW: urosome width.
Fig. 5 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 5. Percent changes in the volumes, masses and chemical compositions of Eucalanus bungii C6F, Metridia okhotensis C6F and Neocalanus cristatus C5 along with relative lipid contents (low: L, medium: M and full: F) (cf. Table 3). PV: prosome volume, OSV: oil sac volume, TV: total volume (= PV + urosome volume [UV]), WM: wet mass, DM: dry mass, C: carbon, N: nitrogen. For volumes, the mean values of the lateral and dorsal views were applied for these calculations.
Fig. 3 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 3. Locations of landmarks for (a) ventral view of the skull and (b) lateral view of the mandible. Landmarks numbers corresponded to those listed in Table 1.
Fig. 2 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 2. Phylogenetic relationships of the genus Megadontomys based on cytochrome b sequence data (modified from Vallejo and González-Cózatl 2012).
Fig. 1 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 1. Cypria lacrima sp. nov. A: Dorsal view, B: External and C: internal view of LV, D: Posterior end of RV, E: RV internal view, F: Internal views of anterior, and G: posterior ends of LV. Male (A-C, F, G); Female (E, D). Scale bars: 100 μm for A-C, E; 50 μm for F; 20 μm for D, 10 μm for G. Arrows show anterior end.
Fig. 3 in Figs. 10-16 in Taxonomic Review of Zavreliella Kieffer from East Asia
Fig. 3. Scatter plots of the water (water, % wet mass [WM]), carbon (C, % dry mass [DM]) and nitrogen (N, % DM) compositions for various zooplankton taxa (cf. Table 2). Plotted areas for the gelatinous taxa (Annelida, Appendicularia, Chaetognatha, Cnidaria, Mollusca and Salpida) are indicated by dashed circles. For taxa other than the gelatinous taxa, regression lines are calculated for each panel. The separation of gelatinous and semi-gelatinous taxa was derived from Larson (1986).
Рис. 1. Регион иссΛеΑований: A — его поΛожение на карте Восточной Азии; B — общий виΑ Буреинско-Хинганской низменности; C — карта-схема ΑебеΑинского стационара Хинганского заповеΑника. УсΛовные обозначения: I — Хинганский заповеΑник (вкΛючает Αва кΛастера); II — заказник «Ганукан». 1 — Антоновское воΑохраниΛище; 2 — оз. ΔоΛгое; 3 — оз. Гусиное; 4 — оз. Третье ΑебеΑиное Fig. 1. Study region: A — study region on the map of the East Asia; B — Burea-Khingan (Arkhara) lowland; C — Lebedinsky Station. Notes: I — two clusters of Khingan Nature Reserve; II — Ganukan Sanctuary. 1 — Antonovskoye Reservoir; 2 — Dolgoye Lake; 3 — Gusinoye Lake; 4 — Lebedinoye Lake in The results of long-term observation of waterfowl spring migration in Khingan Nature Reserve, Eastern Russia
Рис. 1. Регион иссΛеΑований: A — его поΛожение на карте Восточной Азии; B — общий виΑ Буреинско-Хинганской низменности; C — карта-схема ΑебеΑинского стационара Хинганского заповеΑника. УсΛовные обозначения: I — Хинганский заповеΑник (вкΛючает Αва кΛастера); II — заказник «Ганукан». 1 — Антоновское воΑохраниΛище; 2 — оз. ΔоΛгое; 3 — оз. Гусиное; 4 — оз. Третье ΑебеΑиное Fig. 1. Study region: A — study region on the map of the East Asia; B — Burea-Khingan (Arkhara) lowland; C — Lebedinsky Station. Notes: I — two clusters of Khingan Nature Reserve; II — Ganukan Sanctuary. 1 — Antonovskoye Reservoir; 2 — Dolgoye Lake; 3 — Gusinoye Lake; 4 — Lebedinoye Lake
Fig. 20 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 20. Drawida odaesan sp. nov. Holotype (H, DNA HY1) showing ventral anterior and corresponding internal organization, dorsal view of prostomium and a nephridium in segment 16; boxed are the unusual supra-intestinal vascular loops.
Fig. 14. Drawida keikiensis Kobayashi, 1938 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 14. Drawida keikiensis Kobayashi, 1938. After Kobayashi (1938: fig. 4) showing (a) male field, (b) male terminalia (prostate and penis but accessory gland not shown) and (c) spermatheca and accessory gland corresponding to a spermathecal papilla (not mentioned in text).
Fig. 12 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 12. Drawida koreana nanjiro sub-sp. nov. Holotype showing in situ spermathecae in 7/8rhs, testis sac and prostates in 10/11 rhs with lateral view of stubby blunt penis, and gizzards in 12-13 plus ovisac in 11/12-15.
Fig. 11 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 11. Drawida koreana austri sub-sp. nov. A ‾ Holotype, B ‾ Paratype dissected to show spermatheca, male organs and gizzards in 12- 14. Boxed are Kobayashi's (1938: figs. 1 & 3) comparing spermathecae of C ‾ Drawida japonica and D ‾ D. koreana koreana that differ from those of the current specimens.
Fig. 10. Drawida koreana koreana Kobayashi, 1938 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 10. Drawida koreana koreana Kobayashi, 1938. After Kobayashi (1938: fig. 3) showing (a) male field, (b and c) enlarged spermathecae. Note that his sketch of the male field of D. koreana is similar to that found in several current specimens.
Fig. 9. Drawida moriokaensis Ohfuchi, 1938 in Reports of Drawida (Oligochaeta: Moniligastridae) from far East Asia
Fig. 9. Drawida moriokaensis Ohfuchi, 1938. After Ohfuchi (1938: 44, figs. 10-11) showing male field, gizzards and dorsal blood vessel, a spermatheca (Sp. spermathecal ampulla, Sp.Atr. spermathecal atrium) and male organs (T.s.‾Testis sac).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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