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806 results for “Neotype”
FIG. 1 in Two poorly known species of Foraminifera: Polystomella minuta Reuss, 1865 from the Oligocene of Germany (Bavaria) and P. falunica Allix, 1913 from the Miocene of western France (Touraine). Designation of a neotype for P. falunica
FIG. 1. — Geographical areas: A, Touraine: Pontlevoy, le Piziou, le Mincé, les Gandes, la Rangère, Château Gabillon, Savigné-sur-Lathan – Anjou (Chemillé) – Poitou: Mirebeau; B, Aquitaine: Saucats, Saint-Selve, Étang des Charmes at southern Saint-Selve, Saubrigues, Sallepisse, Baudignan, Lafaurie; C, Provence: Carry-le-Rouet; D, France, general map with the localization of the geographical zones A-C.
Figs 1–4 in Neotype designation and redescription of Camponotus horseshoetus (Hymenoptera: Formicidae)
Figs 1–4. Camponotus horseshoetus Datta & Raychaudhuri, 1985, worker. 1 – head, full face view. 2 – body, lateral view. 3 – body, dorsal view. 4 – metapleural gland orifice on posterior propodeum.
Figure 3 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)
Figure 3. Light microscope image of Aplysia norfolkensis shell, (a) dorsal view, (b) ventral view, specimen AMS C.55733, collected by Brazier, J., 25 June 1892, Bradleys Head, Port Jackson, Sydney, NSW, Australia. Photograph: M. Nimbs.
Figure 2 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)
Figure 2. Original descriptions and figure illustrations of shells for Aplysia concava G. B. Sowerby I, 1833: vol. 2, p. 243, pl. 235, figs 24a,b; and Aplysia norfolkensis G. B. Sowerby II, 1869: vol. 17, p. 216, pl. 10, figs 42a,b. Sourced from Biodiversity Heritage Library, (see Sowerby I, 1833; Sowerby II, 1869).
Figure 1 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)
Figure 1. Photograph of living neotype of Aplysia concava, specimen AMS C.574820, Newcastle, NSW, Australia, collected 14 December 2016, by Stephen D. A. Smith. Photograph: M. Nimbs.
FIG. 5 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 5. — Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144: A, dorsal, ventral, and lateral view of the head; B, ventral view of the right hand; C, ventral view of the right foot. Scale bar: 20 mm.
FIG. 3. — A in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 3. — A, Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144 in life; B, habitat of neotype at the Parque das Dunas, municipality of Salvador, state of Bahia, Brazil. Photos: Ricardo Marques.
FIG. 2 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 2. — Spix and Martius' itinerary on the elevation background, highlighting the province of Bahia in 1825, the current state of Bahia, and São Francisco River. Localities visited: 1, Malhada; 2, Caetité; 3, Livramento do Brumado; 4, Rio de Contas; 5, Sincorá; 6, Maracás; 7, Vila Pedra Branca; 8, São Félix; 9, Salvador; 10, Ilhéus; 11, Almada; 12, Itacaré; 13, Conceição da Feira; 14, Feira de Santana; 15, Coité; 16, Santo Antônio das Queimadas; 17, Senhor do Bonfim; 18, Bendegó; 19, Juazeiro.
FIG. 4 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 4. — Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144: A, dorsal view of the body; B, ventral view of the body; C, lateral view of the body. Scale bar: 20 mm.
APPENDIX 1 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
APPENDIX 1. — Neotype (ZUFMS-REP 04144, adult male) of Ameivula ocellifera (Spix, 1825): A, body in dorsal view, showing: two longitudinal rows of enlarged scales in the dorsal region of the forearm (EFA); dorsal scales (DS); paravertebral field (PVF); paravertebral stripe (PVS); dorsolateral field (DLF); dorsolateral stripe (DLS); upper lateral field (ULF); and upper lateral stripe (ULS); B, body in ventral view, showing: longitudinal rows of ventrals (VLR); transverse rows of ventrals (VTR); femoral pores (FP); abdominal pores (AP); enlarged prefemoral scales (EPF); and enlarged scales of preanal plate (EP); C, body in lateral view, showing: dorsolateral field (DLF); dorsolateral stripe (DLS); upper lateral field (ULF); upper lateral stripes (ULS); lower lateral field (LLF); and lower lateral stripe (LLS). Scale bar: 20 mm.
Figure 1. Calcinus pascuensis Haig, 1974, neotype male 5.3 in Calcinus hermit crabs from Easter Island, with biogeographic considerations (Crustacea: Anomura: Diogenidae)
Figure 1. Calcinus pascuensis Haig, 1974, neotype male 5.3 mm (AMNH 18177): a, anterior portion of shield and cephalic appendages; b, left cheliped, outer view; c, right chela, outer view; d, left P2, lateral view; e, left P3, lateral view; f, telson, ventral view; g, detail of setae, from ventral margin of P2. Scale bars equal 1 mm. Colour pattern after 18 months in alcohol.
Fig. 2 in Amynthas carnosus (Goto & Hatai, 1899) redescribed on its neotype (Oligochaeta: Megadrilacea: Megascolecidae)
Fig. 2. Amynthas carnosus: upper Goto & Hatai's original fig. 4; lower Ph. kyamikia Kobayashi, 1934, figs. 1-3 (as exactly similar in syns. youngtai and sangyeoli).
Fig. 1 in Amynthas carnosus (Goto & Hatai, 1899) redescribed on its neotype (Oligochaeta: Megadrilacea: Megascolecidae)
Fig. 1. Amynthas carnosus (Goto & Hatai, 1899) NSMT An435 Neotype showing prostomium, ventral view of body with spermathecae and prostates in situ (GM=Genital Marking with internal glands); also septal glands on dorsal blood vessel and intestinal caecum (Ihs=left side).
Fig. 2 in Neotype Designation for Aedes (Stegomyia) albopictus (Skuse)
Fig. 2, Aedes (Stegomyia) albopictus (Skuse). A, B, dorsoventral aspects of the neotype male pupa; C, tergal aspect of the neotype male terminalia.
Figure 3 in A neotype designation for the Ascension Frigatebird Fregata aquila (Aves: Fregatidae)
Figure 3. Neotype of Fregata aquila (Linnaeus, 1758): Ventral, lateral, and dorsal views of specimen BMNH 1899.1.4.13 in the Natural History Museum at Tring, UK. Scale bar: 30 cm.
Figures 1-2 in A neotype designation for the Ascension Frigatebird Fregata aquila (Aves: Fregatidae)
Figures 1-2. (1) Plate LIV, figure 2 of PETIVER (1764 [1702-1706]), named 'The Indian Forked Tail'. (2) Plate LXXX of ALBIN (1731), named the 'The Frigate Bird'. Note the all-black plumage and red gular pouch characteristic of adult male frigatebirds.
Figs 43–52. Zosterodasys transversus, neotype specimens after protargol impregnation. 43 in Taxonomic Revision and Neotypification of Zosterodasys transversus (Kahl, 1928), with Description of a Mirror-Image Doublet (Ciliophora, Phyllopharyngea, Synhymeniida)
Figs 43–52. Zosterodasys transversus, neotype specimens after protargol impregnation. 43 – ventral view of ciliary pattern, nuclear and oral apparatus of a neotype specimen; 44 – ventral view of ciliary pattern and oral apparatus of a mirror-image cell; 45 – dorsal view of double pharyngeal tube of the monster shown in (44); 46 – lateral view of oral apparatus. The nematodesmal rods are straight for most of their length, but curve toward the oral opening at distal end (arrowhead); 47, 48, 52 – shape variability of macronucleus. Most specimens have an ellipsoidal macronucleus (47), while some display a curved (48) or a clavate (52) macronucleus; 49 – ventral view of anterior body portion showing oral apparatus and synhymenium; 50 – synhymenium extends obliquely interrupting most of the ciliary rows. It is composed of narrowly spaced dikinetids, except for the posterior tail, where they are spaced comparatively loosely (arrowheads); 51 – ventrolateral view of a specimen having some breaks in synhymenium (asterisks). CA – capitulum, D – ingested diatom, MA – macronucleus, MI – micronucleus, OA – oral apparatus, OO – oral opening, NE – nematodesmal rods, PT – pharyngeal tube, SK – somatic kineties, SY – synhymenium. Scale bars: 20 µm (47, 48, 50–52), 30 µm (44–46, 49), and 50 µm (43).
Figs 31–32. Zosterodasys transversus, neotype specimens from life. All specimens are from a field sample processed within 24 in Taxonomic Revision and Neotypification of Zosterodasys transversus (Kahl, 1928), with Description of a Mirror-Image Doublet (Ciliophora, Phyllopharyngea, Synhymeniida)
Figs 31–32. Zosterodasys transversus, neotype specimens from life. All specimens are from a field sample processed within 24 hours of collection. 31 – ventral view of a representative neotype cell with an ingested diatom; 32 – variability of body shape and size. Note that the largest specimen (arrow) is almost twice the size of the smaller ones (arrowheads). D – diatoms, OA – oral apparatus, PB – pharyngeal basket. Scale bars: 50 µm (31) and 100 µm (32).
Figs 23–30. Zosterodasys transversus, neotype specimens after protargol impregnation. 23, 25 in Taxonomic Revision and Neotypification of Zosterodasys transversus (Kahl, 1928), with Description of a Mirror-Image Doublet (Ciliophora, Phyllopharyngea, Synhymeniida)
Figs 23–30. Zosterodasys transversus, neotype specimens after protargol impregnation. 23, 25 – ventral view of ciliary pattern and oral apparatus of normal specimens; 24 – ventral view of ciliary pattern and oral apparatus of an abnormal specimen having a double cytostome and cyrtos; 26 – dorsal view of ciliary pattern showing synhymenium extending onto dorsal side; 27 – ventral view of the monster whose anterior body portion is shown in (24); 28 – ventrolateral view of a specimen having some breaks in synhymenium (asterisks); 29, 30 – ventral and dorsal views of ciliary pattern in posterior body portion showing that somatic kineties extend meridionally, i.e. do not form a suture or spica. Arrowheads denote slit-like cytopyge. CY – cytopyge, D – diatoms, MA – macronucleus, OA – oral apparatus, PB – pharyngeal basket, SK – somatic kineties, SY – synhymenium. Scale bars: 20 µm (28), 30 µm (23–26, 29, 30), and 50 µm (27).
Figs 33–42. Zosterodasys transversus, neotype specimens after protargol impregnation. 33 in Taxonomic Revision and Neotypification of Zosterodasys transversus (Kahl, 1928), with Description of a Mirror-Image Doublet (Ciliophora, Phyllopharyngea, Synhymeniida)
Figs 33–42. Zosterodasys transversus, neotype specimens after protargol impregnation. 33 – ventral view of ciliary pattern, nuclear and oral apparatus of a main neotype specimen; 34, 39, 40 – frontal (34) and lateral (39, 40) views of oral apparatus which consists of a central deeply impregnated pharyngeal tube and nematodesmal rods arranged in a ring. The nematodesmata are straight for most of their length but curve toward the oral opening at their distal end, where they are capped by a capitulum. Arrowheads (39, 40) note the site where the cytopharyngeal tube radiates fibres towards the nematodesmata; 35 – dorsal view of ciliary pattern showing synhymenium extending onto dorsal side (opposed arrowheads); 36 – surface view showing a fibre bundle extending in parallel and right of the somatic kineties; 37, 38 – dorsal and ventral views of ciliary pattern in posterior body portion. The somatic kineties extend meridionally, i.e. do not form a suture. Arrowheads in (37) denote the slit-like cytopyge. 41, 42 – lenticular and globular macronucleus. CA – capitulum, CV – contractile vacuole, CY – cytopyge, MA – macronucleus, OO – oral opening, NE – nematodesmal rods, PT – pharyngeal tube, SK – somatic kineties, SY – synhymenium. Scale bars: 10 µm (34), 20 µm (39–42), 30 µm (35–38), and 50 µm (33).
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