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Figures 53-56 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397
Figures 53-56 Genitalia (proximal parts excluded) (53), internal structure of distal genitalia (54), transverse sections of medial epiphallus (55) and apical penial papilla (56) of Monacha pantanellii from Carsoli [Car] (FGC 41651).
Figure 2 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397
Figure 2 Maximum Likelihood (ML) tree of concatenated COI and 16S rDNA haplotypes of Monacha pantanellii (see Table 4). New COI and 16S rDNA sequences of M. pantanellii (Table 1) were compared with COI and 16S rDNA sequences of M. cantiana s. l. and M. parumcincta obtained from GenBank (Tables 2, 4). Numbers next to branches indicate bootstrap support above 50% calculated on 1000 replicates (Felsenstein 1985). The tree was rooted with M. cartusiana concatenated sequences obtained from GenBank (Table 2).
Figures 41-44 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397
Figures 41-44 Genitalia (proximal parts excluded) (41), internal structure of distal genitalia (42), transverse sections of medial epiphallus (43) and apical penial papilla (44) of Monacha pantanellii from Monte Fionchi, Torrecola [Fio2] (FGC 38944).
Figure 1 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397
Figure 1 Localities of Monacha pantanellii and M. cartusiana populations listed in Tables 1, 3 (M. pantanellii black circles Table 1, grey circles Table 3). Details of localities of other Monacha species and their molecular lineages were provided in previous papers (Pieńkowska et al. 2015, 2018a, 2018b, 2019b).
Figures 37-40 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397
Figures 37-40 Genitalia (proximal parts excluded) (37), internal structure of distal genitalia (38), transverse sections of medial epiphallus (39) and apical penial papilla (40) of Monacha pantanellii from Monte Fionchi summit [Fio1] (FGC 8140).
Supplementary material 1 from: Galasso G, Domina G, Azzaro D, Bagella S, Barone G, Bartolucci F, Bianco M, Bolzani P, Bonari G, Boscutti F, Buono S, Cibei C, Conti F, Di Gristina E, Fanfarillo E, Franzoni J, Giacanelli V, Gubellini L, Hofmann N, Laface VLA, Latini M, Liccari F, Lonati M, Longo D, Lunesu L, Lupoletti J, Magrini S, Mei G, Mereu G, Miconi F, Musarella CM, Nicolella G, Olivieri N, Peruzzi L, Pica A, Pinzani L, Pittarello M, Prosser F, Ranno V, Ravetto Enri S, Rivieccio G, Roma-Marzio F, Scafidi F, Spampinato G, Stinca A, Tavilla G, Tiburtini M, Villa M, Wellstein C, Zerbe S, Nepi C (2020) Notulae to the Italian alien vascular flora: 10. Italian Botanist 10: 57-71. https://doi.org/10.3897/italianbotanist.10.60736
Supplementary data
Supplementary material 1 from: Bartolucci F, Domina G, Bagella S, Barberis G, Briozzo I, Calbi M, Caria MC, Cavallaro V, Chianese G, Cibei C, Conti F, Dagnino D, Esposito A, Galasso G, Giacanelli V, Forte L, Gottschlich G, Lattanzi E, Longo D, Mei G, Merli M, Orsenigo S, Pau GB, Pazienza G, Peccenini S, Pisanu S, Rivieccio G, Roma-Marzio F, Scafidi F, Selvi F, Stinca A, Turcato C, Nepi C (2020) Notulae to the Italian native vascular flora: 10. Italian Botanist 10: 47-55. https://doi.org/10.3897/italianbotanist.10.60743
Supplementary data
Supplementary material 1 from: Ravera S, Puglisi M, Vizzini A, Totti C, Barberis G, Bianchi E, Boemo A, Bonini I, Bouvet D, Cocozza C, Dagnino D, Di Nuzzo L, Fačkovcová Z, Gheza G, Gianfreda S, Giordani P, Hilpold A, Hurtado P, Köckinger H, Isocrono D, Loppi S, Malicek J, Matino C, Minuto L, Nascimbene J, Pandeli G, Paoli L, Puntillo D, Puntillo M, Rossi A, Sguazzin F, Spitale D, Stifter S, Turcato C, Vazzola S (2020) Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 10. Italian Botanist 10: 83-99. https://doi.org/10.3897/italianbotanist.10.59352
Figure S1
Figure 1 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118
Figure 1 Study area and localization of sampling sites. Dotted line represents the boundary between the municipalities of Firenzuola (westwards) and Palazzuolo sul Senio (eastwards). For details on the sample sites, see Table 1.
Supplementary material 1 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118
Supplementary data
Figure 2 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118
Figure 2 A view from the site 3D in Castiglioncello (Firenzuola, Firenze) (A); Polygala nicaeensis subsp. mediterranea from site 2A (B); Potentilla neglecta (C) and P. pusilla (D) from site 2D, both new records for the flora of Toscana. For details on the sample sites, see Table 1. All photographs by L. Peruzzi.
Figure 3 from: Jaramillo KB, Cóndor-Luján B, Longakit B, Rodriguez J, Thomas OP, McCormack G, Hajdu E (2021) New records of Demospongiae (Porifera) from Reserva Marina El Pelado (Santa Elena, Ecuador), with description of Tedania (Tedania) ecuadoriensis sp. nov. ZooKeys 1011: 101-120. https://doi.org/10.3897/zookeys.1011.54485
Figure 3 Cliona aff. euryphylle Topsent, 1888 A, B specimen alive in situ (CENAIM 160510EP07-01) collected at El Pelado Marine Reserve C large tylostyles D heads of tylostyles E small tylostyles F different sizes of spirasters with large spines. Scale-bars: 1 cm (A); 5 cm (B); 100 µm (C–E); 10 µm (F).
Figure 2 from: Jaramillo KB, Cóndor-Luján B, Longakit B, Rodriguez J, Thomas OP, McCormack G, Hajdu E (2021) New records of Demospongiae (Porifera) from Reserva Marina El Pelado (Santa Elena, Ecuador), with description of Tedania (Tedania) ecuadoriensis sp. nov. ZooKeys 1011: 101-120. https://doi.org/10.3897/zookeys.1011.54485
Figure 2 Tedania (Tedania) ecuadoriensis sp. nov. A holotype in situ (CENAIM 150813EP01-05) B transverse section of ectosomal and choanosomal skeletal architecture C ectosomal tylotes D detail of terminally microspined terminations of ectosomal tylotes E choanosomal styles F detail of the bases of choanosomal styles G large onychaetes H–I small onychaetes. Scale-bars: 2 cm (A); 500 µm (B); 50 µm (C, E, G–H); 10 µm (D, F, I).
Figure 4 from: Jaramillo KB, Cóndor-Luján B, Longakit B, Rodriguez J, Thomas OP, McCormack G, Hajdu E (2021) New records of Demospongiae (Porifera) from Reserva Marina El Pelado (Santa Elena, Ecuador), with description of Tedania (Tedania) ecuadoriensis sp. nov. ZooKeys 1011: 101-120. https://doi.org/10.3897/zookeys.1011.54485
Figure 4 Callyspongia (Callyspongia) aff. californica Dickinson, 1945 (sensuCruz-Barraza and Carballo 2008) A–C specimens alive in situ: ACENAIM 150820EP02-01 BCENAIM 150813EP07–07 C specimen collected for chemical studies CENAIM 150825EP04-04, of the rarer tubular morphotype D delicate ectosomal reticulation seen through stouter subectosomal polygonal meshes E detail of ectosomal reticulation with primary and secondary meshes F detail of subectosomal reticulation showing stouter, multi-spicular tracts G oxeas H details of the terminations of the oxeas. Scale bars: 1.5 cm (A–C); 1000 µm (D); 400 µm (E–F); 50 µm (G); 50 µm (H).
Figure 1 from: Jaramillo KB, Cóndor-Luján B, Longakit B, Rodriguez J, Thomas OP, McCormack G, Hajdu E (2021) New records of Demospongiae (Porifera) from Reserva Marina El Pelado (Santa Elena, Ecuador), with description of Tedania (Tedania) ecuadoriensis sp. nov. ZooKeys 1011: 101-120. https://doi.org/10.3897/zookeys.1011.54485
Figure 1 Map of the Marine Protected Area El Pelado A The Pelado islet and its submarine platform with five sampling locations of the sponges B map of the whole Marine Protected Area El Pelado at the Ecuadorian coast C map of South America highlighting Ecuador (map created using QGIS software Version 3.2).
Figure 8 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/ib.3.13303
Figure 8 - Italian distribution map of Ambrosia maritima based only on verified sites and herbarium specimens.
Figure 6 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/ib.3.13303
Figure 6 - Extent of occurrence (orange) and area of occupancy (red) of Commicarpus plumbagineus in Spain.
Figure 7 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/ib.3.13303
Figure 7 - Ambrosia maritima in Sardinia: plants in their coastal dunes habitat, comparison between leaves of A. maritima and exotic ragweeds A. artemisiifolia (a) and A. psilostachya (b). Photographs by C. Montagnani.
Figure 5 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/ib.3.13303
Figure 5 - Flowers of Commicarpus plumbagineus in Sierra de Orihuela (Alicante, Spain). Photograph by L. Serra.
Figure 1 from: Orsenigo S, Astuti G, Bartolucci F, Citterio S, Conti F, Garrido-Becerra JA, Gentili R, del Galdo GG, Jiménez-Martínez JF, Karrer G, Lahora A, Martínez-Hernández F, Mendoza-Fernández AJ, Merlo ME, Montagnani C, Mota J, Nicolella G, Pérez-García FJ, Peruzzi L, Robles J, Roma-Marzio F, Salmerón-Sánchez E, Sánchez-Gómez P, Serra L, Stinca A, Fenu G (2017) Global and Regional IUCN Red List Assessments: 3. Italian Botanist 3: 83-98. https://doi.org/10.3897/ib.3.13303
Figure 1 - Individual in bud of Crepis lacera subsp. titani on limestone cliffs of Monte Titano (San Marino Republic). Photograph by L. Peruzzi.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.