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2,247 results for “Western Australia”
FIGURE 6. Maximum likelihood tree built with 405 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 6. Maximum likelihood tree built with 405 bp of LSU (C-region) rRNA marker, using a GTR+G+I correction model. Numbers represent support values (bootstrap, 1000 pseudo-replicates).
FIGURE 5 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 5. Pericharax vallii sp. nov. (WAM Z45632, holotype). (A) Preserved specimen. (B) Cross-section of specimen WAM Z40489=UFRJPOR 7741 showing the cortex (ctx) and atrium (at) with canals surrounded by a palisade of apical actines. (C) Tangential section of the cortical skeleton. (D) Cross-section showing cortex (ctx), subcortical lacunae (sl) and canals (ch). (E) Detail of a hispid canal (ch). (F) Tangential section of the atrial skeleton showing exhalant canals (ex). White arrowheads point to apical actines. (G) Tripod. (H) Triactine. (I) Tetractines: tetractine I (left), tetractine II (right).
FIGURE 4 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 4. Pericharax crypta sp. nov. (WAM Z49226, holotype). (A, B) Preserved specimen. (C) Detail of spherulous cells. (D) Tangential section of the cortical skeleton. (E) Cross-section showing cortex (ctx), subcortical lacunae (sl) and canals (ch). (F) Detail of hispid canal (ch). (G) Tangential section of the atrial skeleton. (H) Detail of a hispid exhalant canal (ex). (I) Large tetractine. (J) Large triactine. (K) Small triactine. (L) Small tetractines: small tetractine I (left), small tetractine II (right).
FIGURE 2 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 2. Leucetta foliata sp. nov. (WAM Z40351, holotype). (A) Preserved specimen. (B) Tangential section of the cortical skeleton. (C) Cross-section showing cortex (ctx) and canals (ch). (D) Detail of hispid canal (ch). (E) Tangential section of the atrial skeleton showing exhalant canals (ex). (F) Detail of hispid exhalant canal (ex). (G) Large tetractine. (H) Large triactine. (I) Small triactine. (J) Small tetractines: small tetractine I (left), small tetractine II (right).
FIGURE 1 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 1. Map showing sampling locations of the analyzed material along the Western Australian coast (coloured squares).
FIGURE 3 in New Leucettidae de Laubenfels, 1936 (Porifera, Calcarea) from Western Australia
FIGURE 3. Leucetta purpurea sp. nov. (WAM Z31426, holotype). (A) Preserved specimen. (B) Tangential section of the cortical skeleton. (C) Detail of the cortical reticulation. (D) Cross-section showing cortex (ctx) and canals (ch). (E) Detail of a hispid canal (ch). (F) Tripod. (G) Triactine. (H) Tetractine.
FIGURES 5–8 in New species of Myrmicine ants from Western Australia (Hymenoptera: Formicidae)
FIGURES 5–8. Mayriella occidua Shattuck (holotype). 5, front of head; 6, lateral body; 7, dorsal body; 8, specimen labels.
FIGURES 1–4 in New species of Myrmicine ants from Western Australia (Hymenoptera: Formicidae)
FIGURES 1–4. Epopostruma inornata Shattuck (holotype). 1, front of head; 2, lateral body; 3, dorsal body; 4, specimen labels.
FIGURES 9–12 in New species of Myrmicine ants from Western Australia (Hymenoptera: Formicidae)
FIGURES 9–12. Mesostruma spinosa Shattuck (holotype). 9, front of head; 10, lateral body; 11, dorsal body; 12, specimen labels.
FIGURE 4 in caudata: Cyzicidae): a new clam shrimp from Western Australia
FIGURE 4. Scanning electron microscopy (SEM) of male paratypes of Caenestheriella mariae n.sp. (ZMUC CRU4854). A, whole view from right side; B, frontal view; C, caudal region; D, dorsal row of spines on telson; E, caudal claws (= furcae); F, head region seen from left; G, distal margin of rostrum seen from anterior; H, head region seen from right; I, occipital condyle.
FIGURE 2 in caudata: Cyzicidae): a new clam shrimp from Western Australia
FIGURE 2. Line drawings of holotype and allotype of Caenestheriella mariae n. sp. A, Male holotype seen from right side (WAM C34418); B, head (e.g. including occipital condyle and rostrum) and right antennule of holotype seen from right side; C, caudal region of holotype seen from right side; 19 limb bearing body segments are present; D, allotype seen from right side (WAM C34419).
FIGURE 1 in caudata: Cyzicidae): a new clam shrimp from Western Australia
FIGURE 1. Photographs of preserved Caenestheriella mariae n. sp. A, carapace of male holotype seen from right side (WAM C34418); B, allotype (female paratype) seen from right side (WAM C34419).
FIGURE 3 in caudata: Cyzicidae): a new clam shrimp from Western Australia
FIGURE 3. Line drawings of trunk legs of male holotype of Caenestheriella mariae n. sp. (WAM C34418). A, trunk leg 1 (clasper) of right side seen from anterior; B, trunk leg 3 of right side seen from posterior.
FIGURE 5 in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 5. Malo maxima, gen. et sp. nov. A. Subumbrellar view of section of velarium, showing typical velarial canal pattern and perradial lappets. B. Female gonad; note conspicuous eggs. C. Male gonad; note fingerprintlike pattern. D. Dissected view of proboscis. E. Dissected view of subumbrellar wall; note mesenterial flap in upper region, continuing down to the rhopaliar stem as a sessile cordlike thickening of tissue.
FIGURE 3 in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 3. Malo maxima, gen. et sp. nov. A. Pedalium; note nematocyst freckles on outer keel, and lack of "spike" in pedalial canal bend. B. Tentacles; note different banding pattern from Carukia shinju n. sp., above. C. Rhopalial niche ostium. D. Rhopalium, side view; note two main median complex eyes, absence of lateral eye spots.
FIGURE 2 in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 2. Malo maxima, gen. et sp. nov. A. In situ; note the salp in the lower right corner, commonly observed with Irukandjis. B. Holotype, preserved.
FIGURE 1. Carukia shinju n in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 1. Carukia shinju n. sp. A. Holotype, preserved. B. Pedalium, note pedalial canal shape at bend, lacking upwardpointing spike. C. Tentacle banding pattern, with "tailed" or "cuffed" nematocyst bands. D. Tentacle band; note nematocysts visible as small dots on main band. E. Rhopaliar niche, note long narrow rhopalial horns (arrows); upper margin of niche is damaged. F. Velarial canals and perradial lappet.
FIGURE 4 in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 4. Malo maxima, gen. et sp. nov. A. Rhopalial horns (arrows), exumbrellar view (rhopalium removed). B. Rhopaliar horns (arrows), subumbrellar view (rhopalium removed).
FIGURE 6 in Two new species of jellyfishes (Cnidaria: Cubozoa: Carybdeida) from tropical Western Australia, presumed to cause Irukandji Syndrome
FIGURE 6. Nematocysts of Carukia shinju n. sp. and Malo maxima gen. et sp. nov. A. Tentacular nematocysts of C. shinju, undischarged. B. Same, discharged. C. Bell nematocysts of C. shinju. D. Tentacular nematocysts of M. maxima, undischarged. E. Same, discharged. F. Bell nematocysts of M. maxima.
FIGURE 4 in A new species of Trapania (Nudibranchia: Goniodorididae) from Western Australia with comparisons to other IndoWest Pacific Trapania
FIGURE 4. Trapania safracornia (CASIZ 156067), Reproductive organs. Abbreviations: am, ampulla; bc, bursa copulatrix; dd, deferent duct; fgm, female gland mass; p, penis; pr, prostate; ps, penial spines; rs, receptaculum seminis; v, vagina; vd, vaginal duct. Scale bar = 0.25 mm.
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