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289 results for “Baleares islands”
Fig. 1. – Orobanche rumseiana A. Pujadas & P. Fraga. A in Orobanche rumseiana A. Pujadas & P. Fraga (Orobanchaceae), a new species from the Balearic Islands
Fig. 1. – Orobanche rumseiana A. Pujadas & P. Fraga. A. Appearance; B. Flower, front view; C. Flower, side view; D. Bract; E. Open calyx; F. Calyx, side view and bracteole; G. Open corolla and androecium; H. Anther; I. Gynoecium. [A. Pujadas s.n., COA]
Fig. 1. – Cotoneaster majoricensis L in Cotoneaster majoricensis L. Sáez & Rosselló (Rosaceae), a new species from Majorca (Balearic Islands, Spain)
Fig. 1. – Cotoneaster majoricensis L. Sáez & Rosselló. A. Detail of flowering stem; B. Detail of fruits; C. Detail of flower. [Valle & Sáez LS-6177, BC] [Drawings: L. Sáez]
Fig. 4 in Some Dermestidae (Coleoptera) of Mallorca (Balearic Islands, Spain)
Fig. 4.- Habitus dorsal aspect: 4a.- Globicornis bifasciata. 4b.- Globicornis peckhamae. Scale bar = 1 mm in both cases.
Fig. 2 in Some Dermestidae (Coleoptera) of Mallorca (Balearic Islands, Spain)
Fig. 2.- Attagenus, habitus dorsal aspect: 2a.- Att. maritimus. 2b-c.- Att. unicolor, male and female, respectively. Scale bar = 1 mm in all cases.
Fig. 1 in Recent records of Leptoglossus occidentalis Heidemann, 1910 on the Balearic Islands (Spain) (Hemiptera: Heteroptera: Coreidae: Coreinae: Anisoscelini).
Fig. 1.- Leptoglossus occidentalis Heidemann, 1910, Ses Bardetes, Formentera, Spain, 28.10.2019. (Photograph: Pau Arranz Morell).
Figure. The adult male of Podarcis lilfordi from Sa Dragonera, Mallorca (Balearic Islands), presenting a tail-like appendage in the left hind limb. in A case of limb regeneration in a wild adult Podarcis lilfordi lizard
Figure. The adult male of Podarcis lilfordi from Sa Dragonera, Mallorca (Balearic Islands), presenting a tail-like appendage in the left hind limb.
Fig. 10 in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 10. Comparison of the dorsal view of the preserved cranium of Messapicetus cf. longirostris (MDM-2029) with some stem beaked whales. The dotted ovals indicate the extent of the prenarial basin.
Fig. 7. 3D in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 7. 3D reconstruction resulting from the CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull MDM-2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain); in left lateral view (A1), left lateral view without the mandibles (A2), detail of the orbital area (A3).
Fig. 8 in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 8. CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull (MDM-2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain). A. Transverse section of the rostrum. B. Dorsal outline of the cranium showing the position of the section. C. Variation of the gray-value density along the transverse section of the rostrum.
Fig. 6. 3D in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 6. 3D reconstruction resulting from the CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull (MDM-2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain); in right lateral view (A1), right lateral view without the mandibles (A2), detail of the pterygoid hamuli showing the well-preserved transverse crests (A3).
Fig. 4. 3D in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 4. 3D reconstruction resulting from the CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull (MDM-2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain); in anterior view, showing transverse cross sections of the rostrum (A1–A4) made at different distances from the rostrum base. Not to scale.
Fig. 9 in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 9. CT-scan 3D reconstruction of the posterior portion of the left mandible of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull (MDM-2029) inside two limestone slabs from Tortonian of Menorca (Balearic Islands, Spain); in anterior (A1) lateral (A2) posterior (A3), and medial (A4) views.
Fig. 3. 3D in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 3. 3D reconstruction resulting from the CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull MDM-2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain), in dorsal (A1) and anterodorsal (A2) views.
Fig. 2 in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 2. The two limestone slabs showing longitudinal cross sections of the Messapicetus cf. longirostris skull (MDM-2029) from the Tortonian of Menorca (Balearic Islands, Spain). A. Surface of slab 1 (A1, top; A2, bottom), details of A2 (A3, A4, explanatory drawing). B. Surface of slab 2 (B1, top; B2, bottom).
Fig. 5. 3D in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 5. 3D reconstruction resulting from the CT-scan of the ziphiid cetacean Messapicetus cf. longirostris Bianucci, Landini, and Varola, 1992 skull (MDM- 2029) inside two limestone slabs from the Tortonian of Menorca (Balearic Islands, Spain); in ventral view (A1), ventral view without the mandibles (A2).
Fig. 11 in A new beaked whale record from the upper Miocene of Menorca, Balearic Islands, based on CT-scan analysis of limestone slabs
Fig. 11. Geographic distribution of fossil remains of Messapicetus from upper Miocene deposits worldwide (see text for data sources).
Linked collectors and determiners for: The spider family Dysderidae in the Balearic Islands.
Natural history specimen data linked to collectors and determiners held within, "The spider family Dysderidae in the Balearic Islands". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/df8e24d8-b6f2-4006-a065-dbae51af1600">https://bionomia.net/dataset/df8e24d8-b6f2-4006-a065-dbae51af1600</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/df8e24d8-b6f2-4006-a065-dbae51af1600">https://gbif.org/dataset/df8e24d8-b6f2-4006-a065-dbae51af1600</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Revision of the Ephippiochthonius complex in the Iberian Peninsula, Balearic Islands and Macaronesia, with proposed changes to the status of the Chthonius subgenera (Pseudoscorpiones, Chthoniidae).
Natural history specimen data linked to collectors and determiners held within, "Revision of the Ephippiochthonius complex in the Iberian Peninsula, Balearic Islands and Macaronesia, with proposed changes to the status of the Chthonius subgenera (Pseudoscorpiones, Chthoniidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/3ff74501-6241-43b2-a52f-0e7580bb2f45">https://bionomia.net/dataset/3ff74501-6241-43b2-a52f-0e7580bb2f45</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/3ff74501-6241-43b2-a52f-0e7580bb2f45">https://gbif.org/dataset/3ff74501-6241-43b2-a52f-0e7580bb2f45</a>. Formatted as a Frictionless Data package.
Fig. 8 in Bat-infesting chiggers (Acariformes: Trombiculidae) of the Balearic Islands and new data on the genus Trisetica Traub et Evans, 1950
Fig. 8. Trisetica knighti (Radford, 1954), larva. A – genu, tibia, and tarsus of leg I in specimen ZIN 11168; B – trochanter, basifemur, and telofemur of leg I in specimen ZIN 11168; C – genu, tibia, and tarsus of leg II in specimen ZIN 11168; D – trochanter, basifemur, and telofemur of leg II in specimen ZIN 11168; E – genu, tibia, and tarsus of leg III in specimen ZIN 11169; F – trochanter, basifemur, and telofemur of leg III in specimen ZIN 11169. Abbreviations: f1 – famulus I; f2 – famulus II; ga – genuala I; gm – genuala II; gp – genuala III; mga – microgenuala I; mta – microtibiala; ST – subterminala; pST – parasubterminala; PT' – pretarsala I; PT" – pretarsala II; S 1 – tarsala I; S 2 – tarsala II; ta – tibiala I; tm – tibiala II; tp – tibiala III.
Fig. 1 in Bat-infesting chiggers (Acariformes: Trombiculidae) of the Balearic Islands and new data on the genus Trisetica Traub et Evans, 1950
Fig. 1. Larvae of Oudemansidium komareki (Daniel et Dusbábek, 1959) onPipistrellus kuhlii (Kuhl) (photographed by Juan Quetglas).
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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)
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.