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1,478 results for “Sulawesi”
Figure 7 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 7. Caridina sulawesi new species. (A) First pereiopod, (B) Second pereiopod, (C) third pereiopod, (D) dactylus of third pereiopod, (E) fifth pereiopod, (F) dactylus of fifth pereiopod, (G) male first pleopod, (H) male second pleopod. Scale bars: A–C, E, 0.5 mm; D, F, 0.1 mm; G, H, 0.2 mm. (A–F, female, cl 4.6 mm, holotype, ZMB; G, H, male, cl 3.4 mm, paratype, ZRC, Filtrage, Beru, Kappang, Maros, Sulawesi.)
Figure 6 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 6. Caridina sulawesi new species. (A) Cephalothorax and cephalic appendages, (B) telson, (C) distal portion of telson, (D) scaphocerite, (E) first maxilliped, (F) second maxilliped, (G) third maxilliped, (H) preanal carina, (I) diaeresis. Scale bars: A, 1 mm; B, D–H, 0.5 mm; C, I, 0.2 mm. (Holotype, female, cl 4.6 mm, ZMB, Beru, Kappang, Maros, Sulawesi.)
Figure 2 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 2. Caridina pareparensis. (A) Cephalothorax and cephalic appendages, (B) telson, (C) distal portion of telson, (D) scaphocerite, (E) first maxilliped, (F) second maxilliped, (G) third maxilliped, (H) first pereiopod, (I) second pereiopod, (J) preanal carina, (K) diaeresis. Scale bars: A, D, 1 mm; B, E–J, 0.5 mm; C, K, 0.2 mm. (Female, cl 3.0 mm, ZRC, Kabupaten Maros, above Bantimurung water fall, southern Sulawesi, Indonesia.)
Figure 4 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 4. Caridina parvidentata. (A) First pereiopod, (B) second pereiopod, (C) third pereiopod, (D) dactylus of third pereiopod, (E) fifth pereiopod, (F) dactylus of fifth pereiopod, (G) male first pleopod, (H) male second pleopod. Scale bars: A–C, E, 0.5 mm; F, D, 0.1 mm; G, H, 0.2 mm. (Male, cl 4.2 mm, egg sized 0.95×0.62 mm, RMNH, Makale, South Sulawesi.)
Figure 3 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 3. Caridina parvidentata. (A) Cephalothorax and cephalic appendages, (B) telson, (C) distal portion of telson, (D) scaphocerite, (E) mandible, (F) maxillula, (G) maxilla, (H) first maxilliped, (I) second maxilliped, (J) third maxilliped, (K) preanal carina, (L) diaeresis. Scale bars: A, D, 1 mm; B, E–K, 0.5 mm; C, L, 0.2 mm. (Male, cl 4.2 mm, egg size 0.95×0.62 mm, RMNH, Makale, South Sulawesi.)
Figure 5 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 5. Caridina parvidentata. (A) Cephalothorax and cephalic appendages, (B) telson, (C) distal portion of telson, (D) first pereiopod, (E) second pereiopod, (F) endopod of male first pleopod, (G) appendix masculina and appendix interna of male second pleopod, (H) diaeresis. Scale bars: A, 1 mm; B, D, E, 0.5 mm; C, F–H, 0.2 mm. (One male, cl 3.9 mm, ZRC, Gua Tanette, Kappang, Maros, Sulawesi Selatan, Indonesia.)
Figure 1 in The freshwater shrimps of the genera Caridina and Parisia from karst caves of Sulawesi Selatan, Indonesia, with descriptions of three new species (Crustacea: Decapoda: Caridea: Atyidae)
Figure 1. Caridina pareparensis. (A) Cephalothorax and cephalic appendages, (B) telson, (C) distal portion of telson, (D) scaphocerite, (E) mandible, (F) maxillula, (G) maxilla, (H) first maxilliped, (I) second maxilliped, (J) third maxilliped, (K) pereiopod, (L) second pereiopod, (M) third pereiopod, (N) dactylus of third pereiopod, (O) fifth pereiopod, (P) dactylus of fifth pereiopod, (Q) endopod of male first pleopod, (R) appendix masculine and appendix interna of male second pleopod, (S) preanal carina, (T) diaeresis. Scale bars: A, D, 1 mm; B, E–M, O, S, 0.5 mm; C, N, P–R, T, 0.2 mm. (Syntypes, A–P, S,T, ovigerous female, cl 3.4 mm, egg size 0.9×0.6 mm; Q, R, male, cl 2.6 mm, BNHM.)
FIGURES 8–13 in A review of the genus Hoplasoma (Coleoptera: Chrysomelidae: Galerucinae) from Sulawesi, Indonesia, with the description of H. bosi sp. nov.
FIGURES 8–13. Aedeagus of Hoplasoma (dorsal view at left, lateral view at right). 8—H. apicale; 9—H. celebense; 10—H. paradoxum; 11—H. rostripenne; 12—H. sulawesianum; 13—H. bosi sp. nov. Scale bar 1 mm.
FIGURES 14–24 in A review of the genus Hoplasoma (Coleoptera: Chrysomelidae: Galerucinae) from Sulawesi, Indonesia, with the description of H. bosi sp. nov.
FIGURES 14–24. Details of Hoplasoma. 14–19: male abdomen; 20–23, 25: H. bosi sp. nov.; 24: H. sulawesianum. 14—H. apicale; 15—H. celebense; 16—H. paradoxum; 17—H. rostripenne; 18—H. sulawesianum; 19—H. bosi sp. nov.; 20—male hind tarsus; 21— male middle tarsus; 22— male fore tarsus; 23—spermatheca; 24–25—hind tibia (lateral view). Scale bar 1 mm for Figs. 14–22 and 24–25; 2 mm for Fig. 23.
FIGURES 2–7 in A review of the genus Hoplasoma (Coleoptera: Chrysomelidae: Galerucinae) from Sulawesi, Indonesia, with the description of H. bosi sp. nov.
FIGURES 2–7. Habitus of males of Hoplasoma. 2—H. apicale (lectotype); 3—H. celebense; 4—H. paradoxum (holotype); 5—H. rostripenne; 6—H. sulawesianum (holotype); 7—H. bosi sp. nov. (holotype).
FIGURE 1 in A review of the genus Hoplasoma (Coleoptera: Chrysomelidae: Galerucinae) from Sulawesi, Indonesia, with the description of H. bosi sp. nov.
FIGURE 1. Distributional map of Sulawesian Hoplasoma (—H. apicale; —H. celebense; —H. paradoxum; —H. rostripenne; —H. sulawesianum; —H. bosi sp. nov.).
FIG. 3 in Resource defence mating system in two ¯ies from Sulawesi: Gymnonerius fuscus Wiedemann and Telostylinus sp. near duplicatus Wiedemann (Diptera: Neriidae)
FIG. 3. Male`A' of G. fuscus is mating with a female on the left beside the active beetleboring that he guarded daily. The small male`C' is ignored while mating with a female on the right. Male`A' subsequently prevented this female from laying any eggs in his prime site.
FIG. 2 in Resource defence mating system in two ¯ies from Sulawesi: Gymnonerius fuscus Wiedemann and Telostylinus sp. near duplicatus Wiedemann (Diptera: Neriidae)
FIG. 2. Male`A' of G. fuscus was easily recognized because he had a front leg missing. While copulating with a female he turns at 90ss to face the approaching male`B'.
Fig. 2 in The Termitophilous Scaphidiinae (Coleoptera: Staphylinidae) from Sulawesi, Indonesia
Fig. 2. Termitoscaphium kistneri: A) Dorsal view, B) Lateral view, C) Male genitalia. Baeoceridium celebense, paratype, male: D) Dorsal view, E) Lateral view, F) Male genitalia, G) Scutellum.
Fig. 1. Vituratella termitophila. A in The Termitophilous Scaphidiinae (Coleoptera: Staphylinidae) from Sulawesi, Indonesia
Fig. 1. Vituratella termitophila. A) Male from Sulawesi, dorsal view, B) Lateral view, C) Male genitalia, D) Holotype male from India, dorsal view, E) Lateral view, F) Labels of the holotype.
Figure 3 in Morphological and molecular characterization of the problematic whip black coral genus Stichopathes (Hexacorallia: Antipatharia) from Indonesia (North Sulawesi, Celebes Sea)
Figure 3. Morphological characteristics of the four Indonesian clades. A–D, clade A. A, spiral or contorted, thin stem. B, C, triangular, laterally compressed, papillose spines. D, light-brown polyps. E, H, clade B. E, contorted, thick stem, with flat and meandritic convolutions. F, G, triangular–conical spines, with few, small apical tubercles, and, at times, basal papillae. H, brown polyps, sagittally compressed. I, L, clade C. I, spiral, thick stem. J, K, triangular–conical spines, with numerous, small apical tubercles and sparse secondary spines. L, dense brown or white polyps, sagittally compressed. M, P, clade D. M, straight, thick stem, several metres long, and often with one or a few lateral branches. N, O, triangular–conical spines, with numerous, small apical tubercles and sparse secondary spines. P, dense brown or white polyps, sagittally compressed. Scale bars: M, 20 cm; A, E, I, 10 cm; D, 5 cm; H, L, P, 0.5 cm; B, F, J, N, 400 Mm; C, G, K, O, 200 Mm.
Figure 4 in Morphological and molecular characterization of the problematic whip black coral genus Stichopathes (Hexacorallia: Antipatharia) from Indonesia (North Sulawesi, Celebes Sea)
Figure 4. SEM photographs showing the variability of the spines in clade A (A–H), clade B (I–P), and clade C (Q–X) (central portions shown). A, E, straight portions of the stem. B, F, curved portions of the stem. C, G, polypar spines. D, H, abpolypar spines. I–J, M–N, curved portions of the stem. K, O, polypar spines. L, M, abpolypar spines. Q–R, U–V, curved portions of the stem. S, W, polypar spines. T, X, abpolypar spines. Scale bar: A, C, E, F, I, J, M, N, Q, R, U, and V, 250 Mm; K, L, O, P, S, T, W, and X, 100 Mm; C, D, G, and H, 50 Mm.
Figure 5 in Morphological and molecular characterization of the problematic whip black coral genus Stichopathes (Hexacorallia: Antipatharia) from Indonesia (North Sulawesi, Celebes Sea)
Figure 5. SEM photographs showing the variability of the spines in clade D. A–L, central portions of several specimens, with close-up views of the spines. M, N, apical portions of two specimens. Scale bars: A, D, E, F, G, H, J, L, and M, 1 mm; C, K, and N, 500 Mm; I, 200 Mm; B, 100 Mm.
Figure 2 in Morphological and molecular characterization of the problematic whip black coral genus Stichopathes (Hexacorallia: Antipatharia) from Indonesia (North Sulawesi, Celebes Sea)
Figure 2. Phylogenetic tree obtained by Bayesian inference, based on internal transcribed spacer rDNA of 45 antipatharian specimens, and with the scleractinian coral Porites lutea as the out-group. The numbers on the left represent the posterior probabilities (> 95). The maximum parsimony tree (length, 975 steps; consistency index, CI, 0.711; and retention index, RI. 0.874) shows identical topology, and the numbers on the right represent the bootstrap estimated values (> 50).
FIGURE 3. Hoya batutikarensis. A in One new species and a new record of Hoya (Apocynaceae, Asclepiadoideae) from Sulawesi, Indonesia
FIGURE 3. Hoya batutikarensis. A, habit; B, inflorescence from above; C, inflorescence, side view. Based on habitat observations. Photos by W.H. Ardi.
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International Brain Laboratory public data
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OpenNeuro
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