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53 results for “Phylactolaemata”
FIGURE 2 in Phylactolaemate bryozoans at the Zoological Survey of India and a taxonomic key to Indian Phylactolaemata
FIGURE 2. Floatoblast valves of Hyalinella indica, now identified as Hyalinella lendenfeldi. (a) Valves from the lectotype, ZEV/7 6750; (b) Floatoblast of confirmed H. lendenfeldi from Thailand showing unique concave dorsal valve. Scale bars = 100 µm.
FIGURE 10 in Phylactolaemate bryozoans at the Zoological Survey of India and a taxonomic key to Indian Phylactolaemata
FIGURE 10. Stolonate growth in Plumatella vaihiriae from Silver Lake, Cowlitz County, Washington, USA. The species is known for its normally robust, often bushy colonies. Photo has been digitally enhanced to increase contrast. Scale bar = 3 mm.
Figure 3 from: Carballeira R, Romay CD, Ramos A (2020) First record of a freshwater bryozoan species in Cuba: Plumatella repens (Linnaeus, 1758) (Phylactolaemata, Bryozoa). ZooKeys 918: 151-160. https://doi.org/10.3897/zookeys.918.38665
Figure 3 Geographical distribution of Plumatella species in the insular Caribbean area, indicating the new records of P. repens in Cuba (1) La Niña Bonita Reservoir and (2) Ciénaga de Zapata Swamp.
Figure 1 from: Carballeira R, Romay CD, Ramos A (2020) First record of a freshwater bryozoan species in Cuba: Plumatella repens (Linnaeus, 1758) (Phylactolaemata, Bryozoa). ZooKeys 918: 151-160. https://doi.org/10.3897/zookeys.918.38665
Figure 1 Presence of Plumatella repens (Linnaeus, 1758), in the wetlands of Cuba: A Location map of localities (1) La Niña Bonita Reservoir and (2) Ciénaga de Zapata Swamp B Aerial photograph of the La Niña Bonita Reservoir (ESRI World Imagery, ArcGIS 10.0) C Aerial photograph of the Ciénaga de Zapata Swamp (ESRI World Imagery, ArcGIS 10.0).
Figure 2 from: Carballeira R, Romay CD, Ramos A (2020) First record of a freshwater bryozoan species in Cuba: Plumatella repens (Linnaeus, 1758) (Phylactolaemata, Bryozoa). ZooKeys 918: 151-160. https://doi.org/10.3897/zookeys.918.38665
Figure 2 Plumatella repens (Linnaeus, 1758), floatoblast from La Niña Bonita Reservoir and the Ciénaga de Zapata Swamp (Cuba), SEM: A View of dorsal valve B View of ventral valve C Suture between valves is a single cord with a row of low tubercles on either side D Section of the annulus showing the connection between gas chambers, with circular pores with filiform extensions along the border. Scale bars: 50 µm (A, B); 10 µm (C); 5 µm (D).
FIGURE 9 in Freshwater Bryozoa of Okinawa, Japan, with descriptions of Rumarcanella gen. nov. (Phylactolaemata: Plumatellidae) and two new species
FIGURE 9. Lophopodella carteri (Hyatt, 1866). A, colony. B, floatoblast (spinoblast), dorsal view.
Figures 5-8 from: Courtney Mustaphi CJ, Githumbi EN, Shotter LR, Rucina SM, Marchant R (2016) Subfossil statoblasts of Lophopodella capensis (Sollas, 1908) (Bryozoa, Phylactolaemata, Lophopodidae) in the Upper Pleistocene and Holocene sediments of a montane wetland, Eastern Mau Forest, Kenya. African Invertebrates 57(1): 39-52. https://doi.org/10.3897/afrinvertebr.57.8191
Figures 5-8 - Lophopodella capensis statoblasts and organic detritus, including charcoal at right, from the sieved sediment subsample from25–26 cm stratigraphic depth, dated to 220–230 yr BP (5). A well preserved statoblast observed at 41–42 cm, dated to 670–711 (6). Pleistocene-aged statoblast from 480–481 cm, dated to 15600–15700 (7). Same specimen as Fig. 6 showing the split layers of the polar spine and recurved hooks (8).
Figure 1 from: Courtney Mustaphi CJ, Githumbi EN, Shotter LR, Rucina SM, Marchant R (2016) Subfossil statoblasts of Lophopodella capensis (Sollas, 1908) (Bryozoa, Phylactolaemata, Lophopodidae) in the Upper Pleistocene and Holocene sediments of a montane wetland, Eastern Mau Forest, Kenya. African Invertebrates 57(1): 39-52. https://doi.org/10.3897/afrinvertebr.57.8191
Figure 1 - Location of the study site in Africa (A) and within Kenya (B). The location of the coring site (black circle) within Enapuiyapui (C). The red line represents a fire break cutline.
Figure 4 from: Courtney Mustaphi CJ, Githumbi EN, Shotter LR, Rucina SM, Marchant R (2016) Subfossil statoblasts of Lophopodella capensis (Sollas, 1908) (Bryozoa, Phylactolaemata, Lophopodidae) in the Upper Pleistocene and Holocene sediments of a montane wetland, Eastern Mau Forest, Kenya. African Invertebrates 57(1): 39-52. https://doi.org/10.3897/afrinvertebr.57.8191
Figure 4 - BACON version 2.2 R program language script age-depth model for the Enapuiyapui stratigraphy using MCMC random walks (greyscale shading) through the probable radiocarbon dates (1σ age probability distributions represented in blue) that were calibrated using the IntCal13 curve (Table 1; Blaauw and Christenson 2011; Reimer et al. 2013; R Development Core Team 2015). The final model used the weighted average of the random walk densities (red line) and 95% CI (dotted grey lines) and parameter settings are shown at the top right (red font). Ages reported as calibrated year BP (before present, 1950 CE). ITRAX optical core face photographs and magnetic susceptibility profile (grey line) at bottom left that shows the 484–0 cm section of the 537 cm core. Zones were defined using a regime shift index of the magnetic susceptibility values (Rodionov 2004). Lophopodella capensis presence data are represented by red '+' symbols on the magnetic susceptibility profile. Abbreviations are AHP: African Humid Period, H: Holocene, Ps: Pleistocene.
Figures 2-3 from: Courtney Mustaphi CJ, Githumbi EN, Shotter LR, Rucina SM, Marchant R (2016) Subfossil statoblasts of Lophopodella capensis (Sollas, 1908) (Bryozoa, Phylactolaemata, Lophopodidae) in the Upper Pleistocene and Holocene sediments of a montane wetland, Eastern Mau Forest, Kenya. African Invertebrates 57(1): 39-52. https://doi.org/10.3897/afrinvertebr.57.8191
Figures 2-3 - An wide angle aerial oblique photograph of Enapuiyapui wetland from the northwest facing southeast (2). Coring the center of the Cyperaceae-Poaceae wetland, April 2014 (3).
Fig. 9 in A new species of the European freshwater bryozoan fauna: Plumatella similirepens WOOD, 2001 (Bryozoa, Phylactolaemata)
Fig. 9: Plumatella similirepens. Scanning electron micrograph of the suture. Scale bar = 20 µm. Fig. 10: Plumatella similirepens. Scanning electron micrograph of the sessoblast. a) Frontal valve. Scale bar = 100 µm. b) Detail of a). Scale bar = 50 µm. Fig. 11: Scanning electron micrograph of dorsal valve. a) Plumatella repens from the same hatchery. Scale bar = 100 µm. b) Detail of a). Scale bar = 50 µm. c) Typical Plumatella repens from an Italian natural site. Scale bar = 100 µm. d) Detail of c). Scale bar = 20 µm.
FIGURE 7 in Phylactolaemate bryozoans at the Zoological Survey of India and a taxonomic key to Indian Phylactolaemata
FIGURE 7. Plumatella persica, now recognized as P. casmiana. (a) SEM images of floatoblasts from ZEV3637, "Plumatella (Afrindella) persica type"; (b) Floatoblast valves of ZEV 3339 "Plumatella allmani diffusa;" (c) Sessoblasts of "Plumatella persica," modified from Annandale, 1919 showing features typical of P. casmiana: crowded narrow annulus, and absence of prominent tubercles; (d) Sessoblasts of P. casmiana from Thailand presented for comparison with Figure 7c. Scale bars = 100 µm.
FIGURE 6 in Phylactolaemate bryozoans at the Zoological Survey of India and a taxonomic key to Indian Phylactolaemata
FIGURE 6. Plumatella mukaii. (a) Floatoblast valves from P1184, scale bar = 100 µm; (b) SEM image from P1179 showing floatoblast asymmetry, scale bar = 100 µm; (c) Floatoblast SEM image from P1179 showing wrinkled texture, scale bar = 30 µm.
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OpenNeuro
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