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280 results for “endoparasites”
FIGURE 3. A–B in Investigation of taxonomically important morphological features of endoparasitic bat flies of the subfamily Ascodipterinae (Diptera: Streblidae) by scanning electron microscopy
FIGURE 3. A–B. Ascodipteron emballonurae (ex. H. pomona), Quang Nam Province, Vietnam. A. Genital aperture, lateral view, arrows indicate spiracles. B. Genital aperture, lateral view, enlargement. C–D. Ascodipteron species A (ex. R. paradoxalophus), Tuyen Province, Vietnam. C. Genital aperture (arrow), lateral view. D. Genital aperture, lateral view, enlargement. E–F. Ascodipteron emballonurae (ex. H. pomona), spiracles, Quang Nam, Vietnam. E. Dorsal view. F. Lateral view. Abbreviations: sp5, sp6, sp7, respective numbered terminal spiracles. Scale in microns.
FIGURE 2. A–E in Investigation of taxonomically important morphological features of endoparasitic bat flies of the subfamily Ascodipterinae (Diptera: Streblidae) by scanning electron microscopy
FIGURE 2. A–E. Undescribed genus of Ascodipterinae (ex. R. affinis), Tuyen Province, Vietnam (A–B, D–E), and (ex. R. macrotis) Guangxi Province, China (C). A. Head and thorax, oblique lateral view. B. Labial theca, dorsal view. C. Labial theca, dorsal view (image by light microscopy). D. Labial theca, anterior view. E. Labial theca, anteroventral view. Abbreviation: lg, labial gutter. Scale in microns.
FIGURE 1. A–C. Ascodipteron species A in Investigation of taxonomically important morphological features of endoparasitic bat flies of the subfamily Ascodipterinae (Diptera: Streblidae) by scanning electron microscopy
FIGURE 1. A–C. Ascodipteron species A (ex. R. paradoxalophus), Tuyen Province, Vietnam. A. Head and thorax, dorsal view. Uppermost arrow indicates striations of underlying muscles of dorsal cheliceral blades. B. Head, lateral view. Arrows indicate striations of underlying muscles of dorsal and ventral cheliceral blades. C. Head, anterior view. Arrow indicates striations of ventral cheliceral blades. Abbreviations: ant, antenna; fr, frons; g, gena; lt, labial theca; lv, lateral vertex; sc, scutum. Scale in microns.
Figure 2 in Metazoan endoparasites of 18 anuran species from the mesophytic semideciduous Atlantic Forest in southern Brazil
Figure 2. Anuran species recorded in breeding habitats in forest remnants and agricultural landscapes in Diamante do Norte, Paraná State, southern Brazil and examined for endoparasites. (a) Rhinella schneideri, (b) Dendropsophus aff. minutus, (c) Dendropsophus nanus, (d) Hypsiboas albopunctatus, (e) Hypsiboas punctatus, (f) Hypsiboas raniceps, (g) Phyllomedusa tetraploidea, (h) Pseudis platensis, (i) Scinax fuscovarius, (j) Trachycephalus typhonius, (k) Leptodactylus chaquensis, (l) Leptodactylus fuscus, (m) Leptodactylus aff. latrans, (n) Leptodactylus mystacinus, (o) Leptodactylus podicipinus, (p) Physalaemus cuvieri, (q) Physalaemus nattereri, (r) Elachistocleis bicolor.
Figure 1 in Metazoan endoparasites of 18 anuran species from the mesophytic semideciduous Atlantic Forest in southern Brazil
Figure 1. Map of the study site and general views of the breeding habitats in forest remnants and agricultural landscapes in Diamante do Norte, Paraná State, southern Brazil. (a–d) Inside forest remnant; (e–i) edge of forest remnant; (j–l) pasture areas; (m–r) sugarcane crops; (s–u) manioc crops.
Figure 2 in Endoparasites of the European ground squirrel (Spermophilus citellus) (Rodentia: Sciuridae) in central Macedonia, Greece
Figure 2. The sampling sites of Spermophilus citellus in central Macedonia, Greece (1: University Agriculture Farm, 2: C Army Veterinary Hospital, 3: Axios – eastern coast, 4: Axios – western mound, 5: Anatoliko, 6: Aggelochori salt pits).
Figure 3 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 3. Frequency distribution of the size (number of setigers) of L. prolificus found in the present study and in Amaral (1977).
Figure 4 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 4. Arabella aracaensis sp. n. (A) anterior region of body (dorsal view, ZUEC-POL-2178); (B) anterior region of body (dorsal view, ZUEC-POL-103, holotype); (C) anterior region of body (ventral view, ZUEC-POL-103, holotype); (D) maxillae (dorsal view, ZUEC-POL-2178); (E) maxillae I (young, dorsal view, ZUEC-POL-2179); (F) mandibles (ventral view, ZUEC- POL-2178); (G) pygidium (ventral view, ZUEC-POL-103, holotype). Notes: AT, anterior tooth; CP, chitinous plate; RD, ridge; arrow indicates additional tooth of MII.
Figure 1 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 1. Labrorostratus prolificus. (A) Specimen with 3 setigers (dorsal view, ZUEC-POL- 2172); (B) specimen with 5 setigers (dorsal view, ZUEC-POL-2174); (C) specimen with 7 setigers (dorsal view, and terminal stolon, ZUEC-POL-2174); (D) specimen with 10 setigers (lateral view, ZUEC-POL); (E) specimen with 43 setigers (dorsolateral view, ZUEC-POL). Notes: PR1, first peristomial ring; PR2, second peristomial ring; arrow indicates the triangular simple parapodium.
Figure 2 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 2. Labrorostratus prolificus. (A) Parapodium from median region (anterior view, specimen with 40 setigers); (B) parapodium from anterior region (specimen with 35 setigers) and detail of the limbate geniculate seta; (C) specimen with 65 setigers; (D) specimen with 17 setigers; (E) specimen with 39 setigers. Notes: Figures C–E from Amaral (1977); arrows indicate the beginning of formation of a terminal stolon.
Figure 6 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 6. Arabella aracaensis sp. n. (setae and aciculum). (A–D) From parapodium 6 (A, superior; B, mediodorsal; C, medioventral; D, ventral modified); (E–F) from parapodium 25 (E, superior; F, mediodorsal); (G) mediodorsal (parapodium 146); (H) medioventral (parapodium 25); (I) medioventral (parapodium 62); (J) inferior (parapodium 25); (K) inferior (parapodium 80); (L) inferior (parapodium 146); (M) from parapodium 73; (N) supra-acicular bundle (parapodium 45); (O) subacicular bundle (parapodium 45); (P) ventral modified; (Q) mediodorsal (detail of serrated blade); (R–U) from parapodium 30 (young specimen, ZUEC-POL-2179 (R, superior; S, mediodorsal; T, medioventral; U, ventral modified); (V) aciculum. Notes: INF, ventral modified seta; MD, mediodorsal seta; MV, medioventral seta; SU, superior seta.
Figure 5 in Arabella aracaensis, a new species with growth rings on its mandibles, and some remarks on the endoparasitic Labrorostratus prolificus (Polychaeta: Oenonidae) from southeast Brazil
Figure 5. Arabella aracaensis sp. n. (A) Parapodium 6; (B) parapodium 25; (C) parapodium 80; (D) parapodium 45; (E) parapodium 21 (young specimen). Notes: All parapodia in anterior view; A–D from ZUEC-POL-2178; E from ZUEC-POL-2179.
FIGURE 80. Pneumocoptes penrosei Baker, 1951, female. A in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 80. Pneumocoptes penrosei Baker, 1951, female. A, dorsal view; B, ventral view; C, gnathosoma in ventral view; D, chelicera in lateral view. Scale bars: 100 µm (A, B), 50 µm (C, B).
FIGURE 68 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 68. Yunkeracarus faini Hyland et Clark, 1959, female from Peromyscus leucopus (A–K). A, dorsal view; B, ventral view; C, tarsus I in dorsal view; D, same in ventral view; E, tarsus II in dorsal view; F, same in ventral view; H, tarsus III in ventral view; G, tarsus IV in ventral view; I, seta cGI; J, seta cGII; K, posterior projection of coxal field I. Male (L–O). L, seta cGI; M, seta cGII; N, opisthosoma in ventral view; O, aedeagus. Scale bars: 100 µm (A, B, N), 50 µm (C–M, O).
FIGURE 74. Mortelmansia longus Fain, 1959, female legs. A, tarsus I in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 74. Mortelmansia longus Fain, 1959, female legs. A, tarsus I in dorsal view; B, leg I in ventral view; C, tarsus II in dorsal view; D, leg II in ventral view; E, leg III in ventral view; F, tarsus III in dorsal view; G, tibia and tarsus IV in ventral view; H, tarsus IV in dorsal view.
FIGURE 65. Yunkeracarus ascanicus Zabludovskaya, 1989, female. A in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 65. Yunkeracarus ascanicus Zabludovskaya, 1989, female. A, dorsal view; B, ventral view; C, sternum; D, tarsus I in dorsal view; E, tarsus I in ventral view; F, tarsus III in ventral view; G, tarsus IV in ventral view. Scale bars: 100 µm (A, B), 50 µm (C–G).
FIGURE 84. Pneumocoptes tiollaisi Doby, 1963 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 84. Pneumocoptes tiollaisi Doby, 1963, male (A–C). A, dorsal view; B, ventral view; C, aedeagus. Scale bars: 100 µm (A, B), 25 µm (C).
FIGURE 60 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 60. Yunkeracarus lophuromys Bochkov et OConnor sp. nov., protonymph. A, ventral view; B, leg I in ventral view; C, tarsus I in dorsal view; D, tarsus and tibia III in ventral view; E, tarsus IV in ventral view. Scale bars: 100 µm (A), 50 µm (B–E).
FIGURE 59 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 59. Yunkeracarus lophuromys Bochkov et OConnor sp. nov., larva. A, dorsal view; B, ventral view; C, leg I in dorsal view; D, tarsus I in ventral view; E, leg III in dorsal view; F, tarsus IV in ventral view; H, tarsus and tibia III in dorsal view; G, tarsus III in ventral view. Scale bars: 100 µm (A, B), 50 µm (C–G).
FIGURE 85. Pneumocoptes jellisoni Baker, 1951, female. A in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 85. Pneumocoptes jellisoni Baker, 1951, female. A, dorsal view; B, ventral view; C, leg I in dorsal view; D, tarsus I in dorsal view; E, leg III in dorsal view; F, tarsus III in ventral view; G, tarsus IV in dorsal view; H, same in ventral view. Scale bars: 100 µm (A, B), 25 µm (C–H).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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