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Supplementary material 1 from: Bouvet D, Pistarino A, Soldano A, Banfi E, Barbo M, Bartolucci F, Bovio M, Cancellieri L, Conti F, Di Pietro R, Faraoni F, Fascetti S, Galasso G, Gangale C, Lattanzi E, Peccenini S, Perrino EV, Rizzieri Masin R, Romano VA, Rosati L, Salerno G, Stinca A, Tilia A, Uzunov D (2018) Contribution to the floristic knowledge of the head of the Po Valley (Piedmont, north Italy). Italian Botanist 5: 57-69. https://doi.org/10.3897/italianbotanist.5.24546
Supplementary data : Explanation note:
Figure 1 from: Bouvet D, Pistarino A, Soldano A, Banfi E, Barbo M, Bartolucci F, Bovio M, Cancellieri L, Conti F, Di Pietro R, Faraoni F, Fascetti S, Galasso G, Gangale C, Lattanzi E, Peccenini S, Perrino EV, Rizzieri Masin R, Romano VA, Rosati L, Salerno G, Stinca A, Tilia A, Uzunov D (2018) Contribution to the floristic knowledge of the head of the Po Valley (Piedmont, north Italy). Italian Botanist 5: 57-69. https://doi.org/10.3897/italianbotanist.5.24546
Figure 1 Area where the annual field trip of the working group for Floristics, Systematics and Evolution of the Italian Botanical Society took place and topographic maps (scale 1:20,000) with collecting sites (number and yellow dots). For detailed data of each site, see Suppl. material 1: 5. a July, 9 (site n. 2), July, 11 (from site n. 8 to n. 16), July, 12 (from site n. 17 to n. 20) b July, 9 (site n. 1) and July, 10 (from site n. 3 to n. 7). From: GeoPortale Piemonte (Regione Piemonte – http://www.geoportale.piemonte.it/).
Figure 1 from: Vannevel R, Brosens D, De Cooman W, Gabriels W, Lavens F, Mertens J, Vervaeke B (2018) The inland water macro-invertebrate occurrences in Flanders, Belgium. ZooKeys 759: 117-136. https://doi.org/10.3897/zookeys.759.24810
Figure 1 Location of the region of Flanders in Belgium, its main rivers (Yser, Scheldt, Meuse) and the subunits of the WFD river basin districts.
Figures 5-6 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figures 5-6 Small mammal community structure in CFMA and Pau da Fome, Rio de Janeiro, Brazil, for the (5) 2001 and (6) 2012–2015 samplings. (A, B, C, D, E, F, G, H, K, L) CFMA transects, (C1, D1, E1, F1, G1) Pau da Fome transects.
Figures 2-4 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figures 2-4 Plots of the Non-metric Multidimensional Scaling Analysis between the two periods and areas studied (● CFMA and Pau da Fome) for the small mammal species: (2) comparison between 2001 and 2012-2015 samplings including all transects pulled; (3) comparison among transects in 2001 (transects from A to D in disturbed forests and from E to H in peridomicile areas of CFMA; transects from C1 to G1 in disturbed forest of Pau da Fome); (4) comparison among transects for the 2012-2015 period (transects A, B, K, L in disturbed forest areas of CFMA; E1 in disturbed forest areas of Pau da Fome; C, D in peridomicile areas of CFMA; C1 and D1 in peridomicile areas of Pau da Fome; E and F in preserved forest areas of CFMA).
Figure 7 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figure 7 Canonical correspondence analysis (CCA) and relationship among species, transects (A, B, C, D, E, F) and habitat variables (CANO – percentage of canopy cover; TREE – number of trees with diameter at breast height ≥ 5; VCS – percentage of vegetation cover on the soil; VVO – vertical vegetation obstruction) for the 2012–2015 period in CFMA, Rio de Janeiro, Brazil.
Figure 9 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figure 9 Age structure of the marsupial Didelphis aurita for the 2012–2015 period in CFMA and Pau da Fome, Rio de Janeiro, Brazil.
Figure 1 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figure 1 Map of the study area indicating the sampling localities in CFMA and Pau da Fome region, State of Rio de Janeiro, Brazil. 1) CFMA – Peridomicile, 2–3) CFMA – Disturbed Forest, 4) CFMA – Preserved Forest, 5) Pau da Fome – Peridomicile, 6) Pau da Fome – Disturbed Forest.
Figure 8 from: Gentile R, Cardoso TS, Costa-Neto SF, Teixeira BR, D'Andrea PS (2018) Community structure and population dynamics of small mammals in an urban-sylvatic interface area in Rio de Janeiro, Brazil. Zoologia 35: 1-12. https://doi.org/10.3897/zoologia.35.e13465
Figure 8 Proportion of reproductively active females of the marsupial Didelphis aurita for the 2012–2015 period in CFMA and Pau da Fome, Rio de Janeiro, Brazil.
Figure 6 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 6 Hippocampuspontohi, AMS I.47833-001, preserved male non-type, 13.9 mm SL, Cape Kri, Raja Ampat, Indonesia (photograph Graham Short).
Figure 3 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 3 Hippocampusjapapigu, UW 157506, preserved female holotype, 16.33 mm SL (left), and UW 157506, 15.59 mm SL, male paratype (right), Hachijo-jima Island, Izu Islands, Japan (photograph Graham Short).
Figure 2 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 2 Hippocampusjapapigu, paratypes directly after collection (A) UW 157507, male, 15.59 mm SL (B) KAUM-I. 111770, female, 14.54 mm SL, Hachijo-jima Island, Izu Islands, Japan (photographs Hiroyuki Motomura).
Figure 9 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 9 Computed tomography scanned anterior trunk area of Hippocampusjapapigu, UW 157506, male holotype, 16.33 mm SL, Hachijo-jima Island, Japan (photograph Graham Short). A Anterolateral view B Lateral view. Note the pair of spines projecting dorsolaterad on STrR1 and triangular bony mounds arched dorsad on STrR2, STrR3, and STrR4. Abbreviations: CL, cliethral ring; STrR1, first superior trunk ridge; STrR2, second superior trunk ridge; STrR3, third superior trunk ridge; STrR4, fourth superior trunk ridge; STrR5, fifth superior trunk ridge; STrR6, sixth superior trunk ridge.
Figure 5 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 5 Hippocampusjapapigu in situ, Hachijo-jima Island, Izu Islands, Japan from 10 m depth (photograph Richard Smith).
Supplementary material 2 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
NJ tree of COI sequences from 21 specimens of H.pontohi and those referred to H.severnsi :
Figure 10 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 10 Computed tomography scanned anterior trunk area of Hippocampuspontohi, AMS I.47833-001, preserved male non-type, 16.33 mm SL, Cape Kri, Raja Ampat, Indonesia (photograph Graham Short). A Anterolateral view B Dorsal view. Note the double pair of spines projecting dorsolaterad on STrR1 and STrR1, respectively, and laterodorsal surface flat on STrR3, and STrR4. Abbreviations: CO, coronet; CL, cliethral ring; STrR1, first superior trunk ridge; STrR2, second superior trunk ridge; STrR3, third superior trunk ridge; STrR4, fourth superior trunk ridge; STrR5, fifth superior trunk ridge; STrR6, sixth superior trunk ridge.
Figure 4 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 4 Hippocampusjapapigu in situ, Hachijo-jima Island, Izu Islands, Japan at 15 m depth (photograph Richard Smith).
Figure 1 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 1 Hippocampusjapapigu, UW 157506, female holotype directly after collection, 16.33 mm SL, Hachijo-jima Island, Izu Islands, Japan (photograph Hiroyuki Motomura).
Video 1 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Video 1 YouTube video of a pair of specimens of Hippocampusjapapigu on rocky reef wall (video by Akira Bingoeral 2007)
Figure 8 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799
Figure 8 Comparison of the lateral view of reconstructed μCT scans of skeletons of A Hippocampusjapapigu, UW 157506, preserved male holotype, 16.33 mm SL, Hachijo-jima Island, Japan, and its most similar congener B Hippocampuspontohi, AMS I.47833-001, preserved male non-type 13.9 mm SL, Cape Kri, Raja Ampat, Indonesia (photographs Graham Short).
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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