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Figure 8 in YELLOW WATER LILIES (NUPHAR, NYMPHAEACEAE) IN GREAT BRITAIN: A NEW HYBRID, A REAPPRAISAL OF RECORDS, AND A REVISED STATUS OF N. ADVENA
Figure 8. Flowers and stamens of: A, Nuphar advena from NA1 population, Spottiswoode Loch; B, Nuphar × porphyranthera from NH8 population, Oulten Park (left), and NH1 population, West Hoathly (right); C, N. lutea (no population code), Elterwater (left) and Pop1 population, Ashtead (right). Scale bars are approximate (no measurements of the photographed features were taken). Photographs: R. V. Lansdown.
Figure 5 in YELLOW WATER LILIES (NUPHAR, NYMPHAEACEAE) IN GREAT BRITAIN: A NEW HYBRID, A REAPPRAISAL OF RECORDS, AND A REVISED STATUS OF N. ADVENA
Figure 5. Nuphar × porphyranthera: A, leaf shape from NH12 population, Auchnagairn House; B, leaf shape from NH6 population, Shropham Ponds; C, habit from NH12 population in drying-out pond, Auchnagairn House. Photographs: R. V. Lansdown.
Figure 10 in YELLOW WATER LILIES (NUPHAR, NYMPHAEACEAE) IN GREAT BRITAIN: A NEW HYBRID, A REAPPRAISAL OF RECORDS, AND A REVISED STATUS OF N. ADVENA
Figure 10. Nuphar lutea leaves: A, in July 2021 with a high proportion of emergent leaves, from Pop5 population, Carlingwark Loch, England; B, in August 2020 with a mixture of emergent and floating leaves, from Pop1 population, Ashtead Park, England; C, in July 2021 with submerged and floating leaves, from (no population code) Elterwater, England. Photographs: R. V. Lansdown.
Figure 1 in YELLOW WATER LILIES (NUPHAR, NYMPHAEACEAE) IN GREAT BRITAIN: A NEW HYBRID, A REAPPRAISAL OF RECORDS, AND A REVISED STATUS OF N. ADVENA
Figure 1. Location of the 26 Nuphar advena records in the Botanical Society of Britain & Ireland database. Populations sampled for genetic analysis are marked with a triangle.
Figure 9 in YELLOW WATER LILIES (NUPHAR, NYMPHAEACEAE) IN GREAT BRITAIN: A NEW HYBRID, A REAPPRAISAL OF RECORDS, AND A REVISED STATUS OF N. ADVENA
Figure 9. Habit of Nuphar advena, showing leaves in July 2021, from NA1 population, Spottiswoode Loch. Photograph: R. V. Lansdown.
FIGURE 10 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 10. Parallel evolution of the species level for the genus Sivajiceras is plotted. Note that both M and m within the lineage show parallel evolutionary trends. Sources are: Waagen, 1875; Spath, 1931; Collignon, 1958; Callomon, 1993; Dutta and Bardhan, 2016.
FIGURE 11 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 11. Parallel evolution of the species level for the genus Obtusicostites is plotted. Note that both M and m within the lineage show parallel evolutionary trends. Sources are: same as in Figure 10.
FIGURE 9 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 9. Parallel evolution of median values of different morphological characters for three successive genera (including M and m) within Sivajiceratinae is plotted. Note that both M and m within the lineage show parallel evolutionary trends. D, U, W, and H are the same as in Figure 4. P= Primary rib (per half whorl) and S= Secondary rib (per half whorl). The dark horizontal line in the middle of the each box represents the median values, top frame of the box represents 75th percentile, bottom frame of the box represents 25th percentile and the bars at the end of vertical lines represent the minimum and the maximum data values without outliers (open circles). Sources are: Waagen, 1875; Spath, 1931; Collignon, 1958; Dutta and Bardhan, 2016.
FIGURE 8 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 8. Transverse sections (body chamber hatched) of adult shells. 1. Obtusicostites obtusicosta (M). 2. Hubertoceras omphalodes (m). Note, for 1 and 2, overall similarity of whorl sections and depressed inner whorls with rounded umbilical edge. Septal sutural patterns. 3. Obtusicostites obtusicosta (M) at diameter 150 mm, redrawn from Waagen (1875, plate 38, figure 2). 4. Hubertoceras omphalodes (m) at diameter 48 mm, redrawn from Waagen (1875, plate 38, figure 4c). Scale bar equals 20 mm.
FIGURE 7 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 7. Bivariate growth graphs between Hubertoceras omphalodes and macroconchs of the subfamily Sivajiceratinae. Maximum homogeneity of points is shown between Obtusicostites obtusicosta and Hubertoceras omphalodes. D=Diameter of the shell, U=Umbilical diameter, W=Width of the whorl and H=Height of the whorl. Measurements are taken at different ontogenetic stages of the specimens to accommodate intraspecific range of variability of each species. Photos are not to scale.
FIGURE 6 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 6. Bivariate growth graphs between Hubertoceras omphalodes and macroconchs of all contemporary (middle Callovian) species of different genera i.e., Reineckia anceps, Choffatia cobra, Idiocycloceras perisphinctoides and Indosphinctes sp. Cluster of morphological characters of Hubertoceras are separated from those of other genera. D=Diameter of the shell, U=Umbilical diameter, W=Width of the whorl and H=Height of the whorl. Measurements are taken at different ontogenetic stages of the specimens to accommodate intraspecific range of variability of each species. Photos are not to scale.
FIGURE 5. Supposed antidimorphic pairs within the subfamily Sivajiceratinae. 1-2 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 5. Supposed antidimorphic pairs within the subfamily Sivajiceratinae. 1-2. Sivajiceras paramorphum (M, JUM /SP/2, bed 7, lower Callovian of Jumara and m, JUM/SP/22, bed 2, lower Callovian of Keera). 3-4. Kinkeliniceras angygaster (M. JUM/KA/1, locality/stratigraphy unknown; m. JUM/KA/5, Medisar, Jura). 5-6. Obtusicostites obtusicosta (M, JUM/OO/1, bed 11, middle Callovian of Jumara and m, JUM/OO/14, locality/stratigraphy unknown). 'x' indicates the end of phragmocone. Small arrow indicates the presence of lappets. Scale bars=20 mm. The sources are: Jana et al. (2000, 2005) for stratigraphic information and Dutta and Bardhan (2016) for taxonomy.
FIGURE 4 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 4. Different sexual dimorphic ammonites (non-Sivajiceratinae) contemporary to Hubertoceras during the middle Callovian in Kutch. Sexual Dimorphism among these species is well established and the pairs have been shown to be connected by large arrows. 1-2. Reineckia anceps (M, JUM/R/90, bed 6, middle Callovian of Keera and m, JUM/R/44, bed 9, middle Callovian of Jumara, respectively). 3-4. Choffatia cobra (M, JUM 33, bed 7, lower Callovian of Jumara and m, JUM 38, bed 7, lower Callovian of Jumara respectively). 5-6. Idiocycloceras perisphinctoides (M, JUM 450, bed 8, middle Callovian of Jura and m, JUM 270, bed 6, middle Callovian of Keera respectively). 7. J Indosphinctes sp. (M, JUM/IS/01, bed 11, middle Callovian of Jumara). Beds are following Jana et al. (2000, 2005). Note that microconch of Indosphinctes is still unknown. 'x' indicates the end of phragmocone. Small arrow indicates presence of lappets. Scale bar equals 20 mm. The sources are: Jana et al., 2005; Kayal, 2009; Bardhan et al., 2012, Dutta and Bardhan, 2016.
FIGURE 3 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 3. Representatives of Hubertoceras described by Spath (1931) from the Callovian of Kutch. 1-2. Holotype of Hubertoceras omphalodes (Waagen), GSI no. 2030, lateral and ventral views; 'Perisphinctes anceps beds' of Vanda (=middle Callovian anceps beds). 3-4. Holotype of H. dhosaence (Waagen), GSI no. 2035, lateral and apertural views; 'Perisphinctes anceps bed' of Keera (=beds nos. 5-7 of middle Callovian). 5. Holotype of H. hubertus Spath; NHMUK no. C7686, lateral view. 6-7. H. hubertus var. densicostata, GSI no. 16098, lateral and apertural views;?anceps beds of unknown locality. 8. H? sp. nov.; GSI no. 16099, lateral view; athleta beds of Fakirwadi (=athleta beds of upper Callovian). 9. Holotype of H. arcicosta, GSI no. 2099, lateral view; 'Golden Oolite' of Keera (=bed no. 2 of lower Callovian). 10. Holotype of H. mutans; GSI no. 2037, lateral view; 'Katrol group' of North Gudjinsir. Beds are following Jana et al. (2000, 2005). Commencement of body chamber and presence of lappets are indicated by 'x' and arrows respectively. GSI=Geological Survey of India, NHMUK=Natural History Museum, U.K. Scale bar equals 20 mm.
FIGURE 2 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 2. The stratigraphic distribution of the studied antidimorphic pairs under the subfamily Sivajiceratinae of Kutch. Biozonation after Jana et al. (2000, 2005); Bardhan et al. (2012).
FIGURE 1 in The taxonomic status of the genus Hubertoceras Spath: A new light on sexual dimorphism from the Callovian ammonites of Kutch, India
FIGURE 1. Geological map of Kutch showing the major localities (solid squares) from where fossils of the Sivajiceratinae have been collected (modified after Dutta and Bardhan, 2016).
Figure 1 in Robaloscion, a new genus for Sciaena wieneri Sauvage, 1883 (Teleostei, Sciaenidae) from the southeastern Pacific, with clarification of the taxonomic status of Sciaena starksi Evermann & Radcliffe, 1917
Figure 1. - Drawings of Robaloscion wieneri right sagittae. A, B: Schematic drawing of right sagitta, with measurements used for proportional ratios (see text for abbreviations, modified from Schwarzhans (1993). C: Medial view of # 5153. D-G: Medial, anterior, ventral, and posterior views of # 5057. H, I: Medial and ventral views of # 5166. J: Medial view of # 5030. Drawings by W. Schwarzhans.
Figure 3 in Robaloscion, a new genus for Sciaena wieneri Sauvage, 1883 (Teleostei, Sciaenidae) from the southeastern Pacific, with clarification of the taxonomic status of Sciaena starksi Evermann & Radcliffe, 1917
Figure 3. - Fresh specimen of Robaloscion wieneri, MNHN 2001-1365, 308 mm SL. Photograph by P. Béarez.
Figure 2. - Holotypes. A in Robaloscion, a new genus for Sciaena wieneri Sauvage, 1883 (Teleostei, Sciaenidae) from the southeastern Pacific, with clarification of the taxonomic status of Sciaena starksi Evermann & Radcliffe, 1917
Figure 2. - Holotypes. A: Sciaena wieneri Sauvage, 1883, MNHN A-4852, 456 mm SL. B: Sciaena starksi Evermann & Radcliffe, 1917, USNM 53464, 382 mm SL.
Fig. 2 in Syzygium setosum (Myrtaceae), a rare and endangered peat swamp tree in Southeast Asia: lectotypification, conservation status and a new record in Sumatra
Fig. 2. – Geographical distribution of Syzygium setosum (King) I.M. Turner. Extant populations of the taxon are represented by black solid circles, while likely extinct populations are represented by white circles.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.