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51 results for “Sagitta”
Figure 2 in Sagitta otolith of three demersal species in a tropical environment
Figure 2. Length and height of sagittae otoliths for: (A) Polydactylus virginicus; (B) Menticirrhus cuiaranensis; and (C) Conodon nobilis.
Figure 1 in Sagitta otolith of three demersal species in a tropical environment
Figure 1. Map of the coastal region of the state of Sergipe showing all the beaches where samples were collected during competitive fishing events in 2014-2015.
Figure 6 in Sagitta otolith of three demersal species in a tropical environment
Figure 6. Scatterplot of the linear discriminant analysis of morphometry and shape indices of the sagitta otolith of Polydactylus virginicus, Menticirrhus cuiaranensis and Conodon nobilis.
Assessment of the Safety and the Performance of the SAGITTA EVL R Stems in Hip Arthroplasties
ClinicalTrials.gov study NCT05153473. IPD Sharing: Not stated. Countries: 1. Publications: 5.
FIGURE 2. Orbinia sagitta n in Orbinia (Polychaeta: Orbiniidae) from the Brazilian coast: two new species and two new records
FIGURE 2. Orbinia sagitta n. sp: A: Anterior end, dorsal view; arrow indicates the first branchiae B: Uncinate spines and crenulated capillaries, chaetiger 9.
FIGURE 18. Pennella sagitta a in Review of Pennella Oken, 1816 (Copepoda: Pennellidae) with a description of Pennella benzi sp. nov., a parasite of Escolar, Lepidocybium flavobrunneum (Pisces) in the northwest Atlantic Ocean
FIGURE 18. Pennella sagitta a. habitus, ventral; b. cephalothorax, dorsal; c. first antenna, dorsal; d. apical armature of first antenna, dorsal; e. terminal segment, second antenna, dorsal (from Hogans 1988a).
Subspecies and Distribution. pos sagitta Pallas, 1773 — S Russia (Altai Krai) and right bank of Irtysh River in Kazakhstan (Pavlodar and East Kazakhstan regions). D.s.aksuensisWangSung,1964—NWChina(NTarimBasininXinjiang). D.s.austrouralensisShenbrot,1991—NWKazakhstan(WestKazakhstan,Atyrau,andAktoberegionsbetweenUralandEmbarivers). D.s.bulganensisShenbrot,1991—EKazakhstan(ELakeZaysaninEastKazakhstanRegion),NWChina(DzungarianBasininXinjiang),andMongolia(SKhovdandSWGovi-Altai). D.s.deasyiBarret-Hamilton,1900—NWChina(STarimBasininXinjiangandS&WQaidamBasininQinghai). D. s. fuscocanus Wang Sung, 1964 — W China (S foothills of E Tian Shan in Xinjiang). D. s. halli Sowerby, 1920 — China (NE Inner Mongolia [= Nei Mongol], SW Heilongjiang, NWJilin, and N Liaoning) and SE Mongolia (Stikhbaatar). D. s. innae Ognev, 1930 — S Russia (Astrakhan Region E of Volga River) and NW Kazakhstan (West Kazakhstan and Atyrau regions W of Ural River). D. s. lagopus Lichtenstein, 1823 — WC Kazakhstan (E of Emba and N of Syrdarya rivers). D. s. megacranius Shenbrot, 1991 — SE Kazakhstan (Moinkum Sands in Jambyl Region). D. s. nogai Satunin, 1907 — S European Russia (Volgograd and Astrakhan regions E of Volga River, Kalmykia, and Dagestan). D. s. sowerbyi Thomas, 1908 — N China (NE Xinjiang, N Qaidam Basin in Qinghai, Gansu, SW Inner Mongolia, N Ningxia, and N Shaanxi) and Mongolia. D. s. turanicus Shenbrot, 1991 — SW Kazakhstan (S Kyzylorda S of Syrdarya River and Mangystau regions), Uzbekistan, and Turkmenistan; it probably occurs in adjacent W Afghanistan. D. s. ubsanensis Bannikov, 1947 — NW Mongolia (N Uvs) and adjacent Russia (extreme S Tuva). D. s. usuni Shenbrot, 1991 — SE Kazakhstan (Almaty Region); it probably occurs in adjacent China (sands of Ili Valley of W Xinjiang). D. s. zaissanensis Selevin, 1934 — E Kazakhstan (NW Lake Zaysan Basin on the left bank of Irtysh River). Isolated population in N Iran (Turan Desert in E Semnan Province) may belong to turanicus or correspond to a yet undescribed subspecies. in Dipodidae
Subspecies and Distribution. pos sagitta Pallas, 1773 — S Russia (Altai Krai) and right bank of Irtysh River in Kazakhstan (Pavlodar and East Kazakhstan regions). D.s.aksuensisWangSung,1964—NWChina(NTarimBasininXinjiang). D.s.austrouralensisShenbrot,1991—NWKazakhstan(WestKazakhstan,Atyrau,andAktoberegionsbetweenUralandEmbarivers). D.s.bulganensisShenbrot,1991—EKazakhstan(ELakeZaysaninEastKazakhstanRegion),NWChina(DzungarianBasininXinjiang),andMongolia(SKhovdandSWGovi-Altai). D.s.deasyiBarret-Hamilton,1900—NWChina(STarimBasininXinjiangandS&WQaidamBasininQinghai). D. s. fuscocanus Wang Sung, 1964 — W China (S foothills of E Tian Shan in Xinjiang). D. s. halli Sowerby, 1920 — China (NE Inner Mongolia [= Nei Mongol], SW Heilongjiang, NWJilin, and N Liaoning) and SE Mongolia (Stikhbaatar). D. s. innae Ognev, 1930 — S Russia (Astrakhan Region E of Volga River) and NW Kazakhstan (West Kazakhstan and Atyrau regions W of Ural River). D. s. lagopus Lichtenstein, 1823 — WC Kazakhstan (E of Emba and N of Syrdarya rivers). D. s. megacranius Shenbrot, 1991 — SE Kazakhstan (Moinkum Sands in Jambyl Region). D. s. nogai Satunin, 1907 — S European Russia (Volgograd and Astrakhan regions E of Volga River, Kalmykia, and Dagestan). D. s. sowerbyi Thomas, 1908 — N China (NE Xinjiang, N Qaidam Basin in Qinghai, Gansu, SW Inner Mongolia, N Ningxia, and N Shaanxi) and Mongolia. D. s. turanicus Shenbrot, 1991 — SW Kazakhstan (S Kyzylorda S of Syrdarya River and Mangystau regions), Uzbekistan, and Turkmenistan; it probably occurs in adjacent W Afghanistan. D. s. ubsanensis Bannikov, 1947 — NW Mongolia (N Uvs) and adjacent Russia (extreme S Tuva). D. s. usuni Shenbrot, 1991 — SE Kazakhstan (Almaty Region); it probably occurs in adjacent China (sands of Ili Valley of W Xinjiang). D. s. zaissanensis Selevin, 1934 — E Kazakhstan (NW Lake Zaysan Basin on the left bank of Irtysh River). Isolated population in N Iran (Turan Desert in E Semnan Province) may belong to turanicus or correspond to a yet undescribed subspecies.
On following pages: 18. Hotson's Five-toed Jerboa (Scarturus hotsoni); 19. Small Five-toed Jerboa (Scarturus elaten; 20. Vinogradov's Jerboa (Pygeretmus shitkovi); 23. Lesser Fat-tailed Jerboa (Pygeretmus platyurus); 24. Dwarf Fat-tailed Jerboa (Pygeretmus Mongolian Three-toed Jerboa (Stylodipus andrews); 28. Thick-tailed Three-toed Jerboa (Stylodipus telum); 29. Dzungarian Three-toed Jerboa (Jaculus orientalis); 32. Blanford's Jerboa (Jaculus blanfordl); 33. Lesser Egyptian Jerboa (Jaculus jaculus); 34. African Jerboa (Scarturus vinogradovi); 21. Fourtoed Jerboa (Scarturus tetradactylus); 22. Greater Fat-tailed pumilio); 25. Comb-toed Jerboa (Paradipus ctenodactylus); 26. Northern Three-toed Jerboa (Dipus sagitta); 27. Jerboa (Stylodipus sungorus); 30. Lichtenstein's Jerboa (Eremodipus lichtensteini); 31. Greater Egyptian Hammada Jerboa (Jaculus hirtipes); 35. Arabian Jerboa (Jaculus loftusi). in Dipodidae
On following pages: 18. Hotson's Five-toed Jerboa (Scarturus hotsoni); 19. Small Five-toed Jerboa (Scarturus elaten; 20. Vinogradov's Jerboa (Pygeretmus shitkovi); 23. Lesser Fat-tailed Jerboa (Pygeretmus platyurus); 24. Dwarf Fat-tailed Jerboa (Pygeretmus Mongolian Three-toed Jerboa (Stylodipus andrews); 28. Thick-tailed Three-toed Jerboa (Stylodipus telum); 29. Dzungarian Three-toed Jerboa (Jaculus orientalis); 32. Blanford's Jerboa (Jaculus blanfordl); 33. Lesser Egyptian Jerboa (Jaculus jaculus); 34. African Jerboa (Scarturus vinogradovi); 21. Fourtoed Jerboa (Scarturus tetradactylus); 22. Greater Fat-tailed pumilio); 25. Comb-toed Jerboa (Paradipus ctenodactylus); 26. Northern Three-toed Jerboa (Dipus sagitta); 27. Jerboa (Stylodipus sungorus); 30. Lichtenstein's Jerboa (Eremodipus lichtensteini); 31. Greater Egyptian Hammada Jerboa (Jaculus hirtipes); 35. Arabian Jerboa (Jaculus loftusi).
On following pages: 112. Southern Flying Squirrel (Glaucomys volans); 113. Javanese Flying Squirrel (lomys horsfieldi 116. Travancore Flying Squirrel (Petinomys fuscocapillus); 117. Basilan Flying Squirrel (Petinomys crinitus); 118. Mindanao Vordermann''s Flying Squirrel (Petinomys vordermanni); 121. Hagen''s Flying Squirrel (Petinomys hageni); 122. Siberut Flying Squirrel (Hylopetes phayrei); 125. Red-cheeked Flying Squirrel (Hylopetes spadiceus); 126. Palawan Flying (Hylopetes winston); 129. Sipora Flying Squirrel (Hylopetes sipora); 130. Gray-cheeked Flying Squirrel (Hylopetes kinlochii); 133. Hose's Pygmy Flying Squirrel (Petaurillus hosel); 134. Lesser Pygmy Flying Squirrel (Petaurillus emiliae); 114. Mentawai Flying Squirrel (lomys sipora); 115. Temminck's Flying Squirrel (Petinomys setosus), Flying Squirrel (Petinomys mindanensis); 119. Whiskered Flying Squirrel (Petinomys genibarbis); 120. Flying Squirrel (Petinomys lugens); 123. Particolored Flying Squirrel (Hylopetes albonigen); 124. Indochinese Squirrel (Hylopetes nigripes); 127. Jentink's Flying Squirrel (Hylopetes platyurus); 128. Sumatran Flying Squirrel sagitta); 131. Bartels's Flying Squirrel (Hylopetes bartelsi); 132. Selangor Pygmy Flying Squirrel (Petaurillus). in Sciuridae
On following pages: 112. Southern Flying Squirrel (Glaucomys volans); 113. Javanese Flying Squirrel (lomys horsfieldi 116. Travancore Flying Squirrel (Petinomys fuscocapillus); 117. Basilan Flying Squirrel (Petinomys crinitus); 118. Mindanao Vordermann''s Flying Squirrel (Petinomys vordermanni); 121. Hagen''s Flying Squirrel (Petinomys hageni); 122. Siberut Flying Squirrel (Hylopetes phayrei); 125. Red-cheeked Flying Squirrel (Hylopetes spadiceus); 126. Palawan Flying (Hylopetes winston); 129. Sipora Flying Squirrel (Hylopetes sipora); 130. Gray-cheeked Flying Squirrel (Hylopetes kinlochii); 133. Hose's Pygmy Flying Squirrel (Petaurillus hosel); 134. Lesser Pygmy Flying Squirrel (Petaurillus emiliae); 114. Mentawai Flying Squirrel (lomys sipora); 115. Temminck's Flying Squirrel (Petinomys setosus), Flying Squirrel (Petinomys mindanensis); 119. Whiskered Flying Squirrel (Petinomys genibarbis); 120. Flying Squirrel (Petinomys lugens); 123. Particolored Flying Squirrel (Hylopetes albonigen); 124. Indochinese Squirrel (Hylopetes nigripes); 127. Jentink's Flying Squirrel (Hylopetes platyurus); 128. Sumatran Flying Squirrel sagitta); 131. Bartels's Flying Squirrel (Hylopetes bartelsi); 132. Selangor Pygmy Flying Squirrel (Petaurillus).
Fig. 1 in A geometric morphometric approach for disparity of the sulcus acusticus of sagitta in species of Gerreidae (Teleostei: Perciformes)
Fig. 1 Concepts of variability in the empirical morphospace constructed from a set of principal components (λ1 and λ2). MD morphological disparity, the morphospace occupied by all specimens in a group. The broken line illustrates the distance added from each specimen to the group mean; PD partial disparity, the contribution that a group makes to the morphological disparity of a set of groups. The dark line illustrates the distance added from each specimen in a group to the overall mean. Small filled black dots = group centroid; large filled black dot = overall centroid; empty black dots = specimens
FIGURE 8. Antarctotetilla sagitta from Terre D in Description of two new genera (Antarctotetilla, Levantiniella) and a new species of Tetillidae
FIGURE 8. Antarctotetilla sagitta from Terre D'Adelie (MNHN-IP 2009 31). A. Arrows point to the oscules. B. Surface: arrows point to the pores clustered in sieve-like areas. C. Smooth area surrounding the osculum, arrows point to the osculum. D. Transversal section of the syntype of Tethya sagitta Lendenfeld, 1907. E. Transversal section of A.sagitta (MNHN-IP 2009 31). Pictures A, B, E are from Carella et al. (2016).
Figure 3. Mean FCR values for Sagitta enflata, S. serratodentata, S. minima and S in Abundance, vertical distribution and feeding of chaetognaths in the upper 50 m layer of the eastern Aegean Sea
Figure 3. Mean FCR values for Sagitta enflata, S. serratodentata, S. minima and S. setosa in each depth interval (0–10, 10–20, 20–30, 30–40 and 40–50 m).
FIG. 4 in A new species of Sagitta (Chaetognatha) from a Laccadive lagoon (Indian Ocean) having fan-shaped anterior teeth: phylogenetical implications
FIG. 4. SEM photographs of Sagitta nairi n. sp. (a±d) and Krohnitta subtilis (e): (a) head armature in ventral view; (b) detail of anterior teeth in ventral view; (c) teeth in lateral view; (d) hooks in dorsal view; (e) right set of teeth in ventral view. at, anterior teeth; m, mouth; pt, posterior teeth; vp, ventral plate. In (a, d) arrows indicate the point of change of the hooks, curve. Scale bars 5 10 mm.
FIG. 1 in A new species of Sagitta (Chaetognatha) from a Laccadive lagoon (Indian Ocean) having fan-shaped anterior teeth: phylogenetical implications
FIG. 1. Sampling location of Sagitta nairi n. sp.: (a) location of Agatti Atoll in the Laccadive Archipelago north of 8ssN; (b) con®guration of the atoll, with depths in metres (modi®ed from Madhupratap et al., 1991).
FIG. 3 in A new species of Sagitta (Chaetognatha) from a Laccadive lagoon (Indian Ocean) having fan-shaped anterior teeth: phylogenetical implications
FIG. 3. Light photographs of Sagitta nairi n. sp.: (a) anterior part of the body; (b, c) two aspects of head and anterior part of trunk; (d, e) diOEerent aspects of the seminal vesicles; (f) eyes. at, anterior teeth; c, collarette; id, intestinal diverticula; pf, posterior ®ns; tf, tail ®n. In (d, e) the limits of the posterior and tail ®ns are indicated by arrows.
FIG. 2 in A new species of Sagitta (Chaetognatha) from a Laccadive lagoon (Indian Ocean) having fan-shaped anterior teeth: phylogenetical implications
FIG. 2. Schematic representation of Sagitta nairi n. sp. in dorsal view. af, anterior ®ns; c, collarette; id, intestinal diverticula; o, ovaries; pf, posterior ®ns; sv, seminal vesicles; tf, tail ®n; vg, ventral ganglion.
Ambispective Study to Assess the Safety and the Performance of SAGITTA EVL R Stem
ClinicalTrials.gov study NCT06096155. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Ambispective Study Evaluating the Clinical Results of SAGITTA EVL R Revision Stems
ClinicalTrials.gov study NCT06096168. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Figure 7 in Ontogenetic and sexual variation in the sagitta otolith of Menticirrhus americanus (Teleostei; Sciaenidae) (Linnaeus, 1758) in a subtropical environment
Figure 7. Scatterplot of the principal component analysis of the contour of the sagitta otolith of Menticirrhus americanus along its ontogeny sampled in two subtropical environments in the Southwestern Atlantic.
Figure 3. Otolith contour using 512 in Ontogenetic and sexual variation in the sagitta otolith of Menticirrhus americanus (Teleostei; Sciaenidae) (Linnaeus, 1758) in a subtropical environment
Figure 3. Otolith contour using 512 equidistant point in the otolith the Menticirrhus americanus para a in a subtropical environment: D = dorsal region of otolith,V = ventral region of otolith, A = anterior region of otolith and P = posterior region of otolith.
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