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1,925 results for “Platyhelminthes”
Figures 30-36 from: Soares GB, Santos Neto JF, Domingues MV (2018) Dactylogyrids (Platyhelminthes: Monogenoidea) from the gills of Hassar gabiru and Hassar orestis (Siluriformes: Doradidae) from the Xingu Basin, Brazil. Zoologia 35: 1-16. https://doi.org/10.3897/zoologia.35.e23917
Figures 30-36 Vancleaveus klasseni sp. nov.: (30) holotype whole-mount, ventral; (31) copulatory complex; (32) hook; (33) ventral bar; (34) dorsal bar; (35) ventral anchor; (36) dorsal anchor. Scale bars: 30 = 50 μm; 31 = 10 μm; 32–36 = 25 μm.
Figures 1-7 from: Soares GB, Santos Neto JF, Domingues MV (2018) Dactylogyrids (Platyhelminthes: Monogenoidea) from the gills of Hassar gabiru and Hassar orestis (Siluriformes: Doradidae) from the Xingu Basin, Brazil. Zoologia 35: 1-16. https://doi.org/10.3897/zoologia.35.e23917
Figures 1-7 Cosmetocleithrum phryctophallus sp. nov.: (1) holotype whole-mount, ventral; (2) copulatory complex; (3) hook; (4) ventral bar; (5) dorsal bar; (6) ventral anchor; (7) dorsal anchor. Scale bars: 1 = 100 μm; 2, 4–7 = 25 μm; 3 = 10 μm.
Figures 15-22 from: Soares GB, Santos Neto JF, Domingues MV (2018) Dactylogyrids (Platyhelminthes: Monogenoidea) from the gills of Hassar gabiru and Hassar orestis (Siluriformes: Doradidae) from the Xingu Basin, Brazil. Zoologia 35: 1-16. https://doi.org/10.3897/zoologia.35.e23917
Figures 15-22 Cosmetocleithrum akuanduba sp. nov.: (15) holotype whole-mount, ventral; (16) copulatory complex; (17) hook; (18–19) ventral bar; (20) dorsal bar; (21) ventral anchor; (22) dorsal anchor. Scale bars: 15 = 100 μm; 16, 18–22 = 25 μm; 17 = 10 μm.
Figures 2-3 from: Leal-Zanchet A, Marques A (2018) Searching for shelter in a ferruginous cave? A new species of Pasipha from a plateau in the Brazilian savanna (Platyhelminthes, Tricladida). ZooKeys 776: 13-25. https://doi.org/10.3897/zookeys.776.26308
Figures 2-3 Pasipha ferrariaphila sp. n., holotype, dorsal view, 2 general view of preserved specimen 3 schematic drawing of the anterior region of body. The arrow indicates the anterior extremity. Eyes were drawn based on observations carried out under both stereomicroscope and microscope.
Figures 4-8 from: Leal-Zanchet A, Marques A (2018) Searching for shelter in a ferruginous cave? A new species of Pasipha from a plateau in the Brazilian savanna (Platyhelminthes, Tricladida). ZooKeys 776: 13-25. https://doi.org/10.3897/zookeys.776.26308
Figures 4-8 Pasipha ferrariaphila sp. n., holotype. 4 anterior region, transverse section 5–7 pre-pharyngeal region, transverse sections 8 pharynx, sagittal section.
Figures 10-14 from: Leal-Zanchet A, Marques A (2018) Searching for shelter in a ferruginous cave? A new species of Pasipha from a plateau in the Brazilian savanna (Platyhelminthes, Tricladida). ZooKeys 776: 13-25. https://doi.org/10.3897/zookeys.776.26308
Figures 10-14 Pasipha ferrariaphila sp. n., holotype, copulatory apparatus in sagittal sections. 10 general view 11 proximal region of prostatic vesicle 12 ejaculatory duct and proximal portion of male atrium 13 proximal portion of female atrium 14 gonoduct. Arrows indicate the strong musculature in female atrium; the arrow head indicates the canal separating proximal and distal regions of prostatic vesicle. Anterior to the left.
Figure 9 from: Leal-Zanchet A, Marques A (2018) Searching for shelter in a ferruginous cave? A new species of Pasipha from a plateau in the Brazilian savanna (Platyhelminthes, Tricladida). ZooKeys 776: 13-25. https://doi.org/10.3897/zookeys.776.26308
Figure 9 Pasipha ferrariaphila sp. n., holotype, sagittal composite reconstruction of copulatory apparatus. The arrow indicates the strong musculature in female atrium. Anterior to the left.
Figure 1 from: Leal-Zanchet A, Marques A (2018) Searching for shelter in a ferruginous cave? A new species of Pasipha from a plateau in the Brazilian savanna (Platyhelminthes, Tricladida). ZooKeys 776: 13-25. https://doi.org/10.3897/zookeys.776.26308
Figure 1 Location of the type locality of Pasipha ferrariaphila sp. n., represented by a ferruginous cave, Conceição do Mato Dentro, state of Minas Gerais, Brazil. The asterisk indicates the cave location; the outline indicates areas impacted by mining exploitation projects.
Figure 1 from: Mendoza-Franco EF, Caspeta-Mandujano JM, Osorio MT (2018) Ecto- and endo-parasitic monogeneans (Platyhelminthes) on cultured freshwater exotic fish species in the state of Morelos, South-Central Mexico. ZooKeys 776: 1-12. https://doi.org/10.3897/zookeys.776.26149
Figure 1 Map of the state of Morelos, Mexico showing position of each APU: 1 7 Hermanos (18°51'49.82132"N; 98°58'01.20211"W2 Acuícola Ayala (18°45'11.59525"N; 98°56'58.87989"W) 3 Acuícola de Jiutepec (18°52'29.84116"N; 99°09'24.49751"W) 4 Acuícola Jaloxtoc (18°43'56.72740"N; 98°55'20.14003"W) 5 Adilene Marisol (18°35'43.94208"N; 99°01'43.49419"W) 6 Agua Fría (18°33'22.41096"N; 99°00'57.44948"W) 7 Aquafish (18°38'53.20757"N; 99°13'13.80019"W) 8 Betta Fish (18°46'15.00012"N; 99°12'05.44263"W) 9 Centro Zacatepec (18°39'22.70079"N; 99°12'02.36030"W) 10 Centro de Acopio La Perla (18°38'18.23968"N; 99°00'32.15165"W) 11 Consorcio Lugo-Galeana (18°53'48.34681"N; 99°11'13.92251"W) 12 El Chino (18°54'03.35178"N; 99°12'10.27438"W) 13 El Cifón (18°40'42.68111"N; 99°11'26.16448"W) 14 El Invernadero (18°37'11.86468"N; 98°59'37.85120"W) 15 Exopez (18°41'41.78829"N; 99°06'07.81780"W) 16 Granja Acuícola Foras (18°31'07.09460"N; 98°47'54.39963"W); 17. Grupo Carsal (18°37'21.23567"N; 99°00'05.49462"W) 18 Huertas de Cuatla (18°45'41.45252"N; 98°54'57.10516"W) 19 Jesús Madariaga (18°39'59.91903"N; 99°12'05.85187"W) 20 La Buena Fortuna (18°38'07.31312"N; 99°10'58.58424"W) 21 La Cascada (18°41'06.91860"N; 99°09'05.97650"W) 22 Linda Vista (18°38'11.27728"N; 98°59'41.36454"W) 23 Los Huajes (18°38'01.06064"N; 98°59'39.86312"W) 24 Maleny (18°39'43.43675"N; 99°11'52.86078"W) 25 Maricultura Argos (18°35'50.18775"N; 99°12'16.44262"W) 26 Olascoaga (18°55'43.39346"N; 99°10'40.92078"W) 27 Ornapez (18°45'06.02177"N; 98°59'14.37030"W) 28 Platanar (18°43'30.25259"N; 98°54'30.22690"W) 29 Pliego (18°37'45.93123"N; 98°59'53.99321"W) 30 San Tilapia (18°39'09.51796"N; 99°11'36.53955"W) 31 Tropipez (18°46'10.83544"N; 99°12'05.47184"W).
Figure 1 from: Suárez D, Martín S, Naranjo M (2018) First report of the invasive alien species Caenoplana coerulea Moseley, 1877 (Platyhelminthes, Tricladida, Geoplanidae) in the subterranean environment of the Canary Islands. Subterranean Biology 26: 67-74. https://doi.org/10.3897/subtbiol.26.25921
Figure 1 A location of "La Federica" mine (red dot) within Gran Canaria (Canary Islands) B topography of the mine. C.coerulea individuals were observed in the red shaded area.
Figures 5-6 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figures 5-6 Paucumaratrigonocephala. 5ZMA V.Pl. 7279.1, microphotograph of sagittal section of the copulatory apparatus; anterior to the left 6 Dorsal view of live specimen from Lake Hi-numa, Japan. Scale bar not available.
Figures 10-11 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figures 10-11 Obrimoposthiawandeli. 10 NIBRIV0000813547, microphotograph of sagittal section of the copulatory apparatus; anterior to the left 11ZMA V.Pl. 951.5, microphotograph of transverse section through the bursal canal and gonopore.
Figure 1 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figure 1 Maximum-likelihood tree based on 18S ribosomal DNA sequences. Numbers on nodes represent support values for Maximum-Likelihood (bootstrap –BO) and Bayesian Inference (posterior probability – PP): BO/PP. Scale bar indicates number of nucleotide substitutions per site.
Figures 2-3 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figures 2-3 Paucumaratrigonocephala. 2 Dorsal view of live specimen from South Korea. Scale bar not available 3ZMA V.Pl. 7279.1, microphotograph of eye lens; anterior to the left.
Figure 9 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figure 9 Obrimoposthiawandeli. NIBRIV0000813547, sagittal reconstruction of the copulatory apparatus; anterior to the left.
Figures 7-8 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figures 7-8 Obrimoposthiawandeli. 7 Dorsal view of preserved specimen from King George Island. Scale bar not available 8 NIBRIV0000813547, microphotograph of sagittal section of penis papilla; anterior to the left.
Figures 12-13 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figures 12-13 Obrimoposthiawandeli. 12 MZUPL 00290-A163, microphotograph of sagittal section of copulatory apparatus of holotype of Procerodessanderi; anterior to the left 13 MZU PL. 00291(nos. A788-821), sagittal reconstruction of the copulatory apparatus of presumed specimen of Procerodessanderi.
Figure 4 from: Yang H-M, Sluys R, Kawakatsu M, Min G-S (2018) New molecular sequences for two genera of marine planarians facilitate determination of their position in the phylogenetic tree, with new records for two species (Platyhelminthes, Tricladida, Maricola). ZooKeys 781: 1-17. https://doi.org/10.3897/zookeys.778.26324
Figure 4 Paucumaratrigonocephala. ZMA V.Pl. 7279.1, sagittal reconstruction of the copulatory apparatus; anterior to left.
Figure 2 from: Dong Z, Shi C, Chu G, Dong Y, Chen G, Liu D (2018) Morphological changes of gonad and gene expression patterns during desexualization in Dugesia japonica (Platyhelminthes: Dugesiidae). Zoologia 35: 1-7. https://doi.org/10.3897/zoologia.35.e21933
Figure 2 Sagittal section of testis during starvation. The blue lines indicate the innermost region and the yellow lines indicate that the border between the testis region and the surrounding tissue. d: days after starvation, sg: spermatogonium, sc: spermatocyte, st: spermatid, sp: spermatozoa. Scale bar: 100 μm.
Figure 1 from: Dong Z, Shi C, Chu G, Dong Y, Chen G, Liu D (2018) Morphological changes of gonad and gene expression patterns during desexualization in Dugesia japonica (Platyhelminthes: Dugesiidae). Zoologia 35: 1-7. https://doi.org/10.3897/zoologia.35.e21933
Figure 1 Histological changes of the ovary during starvation. The ovary of on the day 25th is sagittal section and the others are horizontal section. The yellow lines indicate the innermost region and the oogoniums marked by black arrows, d: days after starvation, og: oogonium, oc: oocyte. Scale bar: 200 μm.
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