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Fig. 3 in Bats of Alpi Marittime Nature Park (North West Italy) and Site of Community Importance IT1160056: distribution and status
Fig. 3 - Trend of hibernating individuals (counted from 15th December to 15th February) for each observed bat species in the Grotte del Bandito caves and in neighbouring bunkers and tunnels (Roaschia). / Trend del numero d'individui in ibernazione (contati nel periodo compreso tra il 15 dicembre e il 15 febbraio) delle differenti specie di chirotteri osservate nelle Grotte del Bandito e nei vicini bunker e gallerie (Roaschia).
Fig. 2 in Bats of Alpi Marittime Nature Park (North West Italy) and Site of Community Importance IT1160056: distribution and status
Fig. 2 - Percentage frequency of 1 km grid cells size in which every species was reported. / Frequenza percentuale del numero di griglie chilometriche in cui sono state segnalate le differenti specie.
Fig. 1 in Karyology Of Three Vespertilionid Bats (Chiroptera: Vespertilionidae) From Turkey
Fig. 1. Map of localities studied in Turkey: 1 = Demirköy (Kırklareli), 2 = Gebze (Kocaeli), 3 = Sofular (Zonguldak), 4 = Alanya (Antalya), 5 = Silifke (Mersin). Eptesicus serotinus (), E. bottae
Fig. 1 in Different staining techniques evaluation for the study of sperm morphology and morphometry in bats (Mammalia: Chiroptera)
Fig. 1. Sperm morphology and morphometric variables. (a) Part of the spermatozoa, (b) morphometric variables measured in this study: head length (HL), head width (HW), middle piece length (MPL) and tail length (TL).
Fig. 2 in Different staining techniques evaluation for the study of sperm morphology and morphometry in bats (Mammalia: Chiroptera)
Fig. 2. Microscopic images of spermatozoa stained with (a) Toluidine Blue (TB), (b) Giemsa (G), (c) May Grünwald-Giemsa (MG-G), (d) GRAM (Gr), (e) Hematoxylin-Eosin (HE), (f) DAPI, (g) Janus Green and (JG) (h) Basic Fuchsin (BF), b=10 µm.
Figure 3 in Host conservation through their parasites: molecular surveillance of vector-borne microorganisms in bats using ectoparasitic bat flies
Figure 3. Comparison of detected microorganism prevalence (prevalence of infection) between bats and bat flies. Different bars represent hosts (black), all bat flies (dark grey), and consensus fly results, meaning that at least one infected fly individual was present on the host (light grey).
Figure 2 in Host conservation through their parasites: molecular surveillance of vector-borne microorganisms in bats using ectoparasitic bat flies
Figure 2. Prevalence of Bartonella spp., Polychromophilus spp., and Trypanosoma spp. infection in nycteribiid flies collected from 28 bats, which carried between 2 and 7 flies. Black: all flies are infected, dark grey: all flies are non-infected, light grey: both infected and non-infected flies occurred on the same host.
Figure 1 in Host conservation through their parasites: molecular surveillance of vector-borne microorganisms in bats using ectoparasitic bat flies
Figure 1. Number of detected vector-borne microorganisms in bats (A) and bat flies (B). Black colour corresponds to Miniopterus natalensis (A), and Nycteribia schmidlii scotti (B), whereas grey shows Miniopterus schreibersii (A) and Nycteribia schmidlii (B).
Fig. 6 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 6. Total WBC count and absolute numbers of each type of leukocytes in peripheral blood in bats. 1 - leukocytes 2 - monocytes, 3 - lymphocytes 4 - stab neutrophils, 5 - segmented neutrophils, 6 - eosinophils, 7 - basophils.
Fig. 2 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 2. Species structure of hibernating bat populations (% of the total number of animals in the counts): A – Leningrad Region (Стрелков 1958), B – Tver Region (ГлуШкова et al. 2006), C – Samara Region (Смирнов et al. 2012), D – Finland (Siivonen & Wermundsen 2008), E – Karelia (own data), F – Arkhangelsk Region (Рыков 2008). 1 – M. dasycneme, 2 – M. daubentoni, 3 – M. brandtii/mystacinus, 4 – M. nattereri, 5 – P. auritus, 6 – E. nilssonii.
Fig. 5 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 5. Differential WBC count in different bat species. 1 - monocytes, 2 - lymphocytes, 3 - band neutrophils, 4 - segmented neutrophils, 5 - eosinophils, 6 - basophils.
Fig. 3 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 3. Distribution patterns of the hibernating northern bat, % of the total number of animals in counts: Finland (Siivonen & Wermundsen 2008), Karelia (own data), Ural region (Орлов 2000, БольШаков et al. 2005), Samara Region (Смирнов et al. 2008, Смирнов & Вехник 2009).
Fig. 1 in The Eco-Physiological Status Of Hibernating Bats (Chiroptera) In The North Of The European Distribution Range
Fig. 1. Locations of bat hibernacula in the Republic of Karelia. Legend: 1 – Lahdenpohja, 2 – Ruskeala, 3 – Sona, 4 – Shcheleyki, 5 – Medvezhjegorsk, 6 – Shunga.
Figure 2 in The Distribution Of The Northern Bat Eptesicus Nilssonii (Keyserling & Blasius, 1839) In Latvia Assessed By Passive Acoustic Survey
Figure 2. Dot plot showing the activity of E. nilssonii in each observation site. The outer dot in each region represents the mean and the whiskers the standard error of the mean. Different letters indicate statistically significant differences (p<0.05) (A). Data visualization depicting the gradient of the activity of E. nilssonii in four parts of Latvia. The darker color represents the higher activity (B).
Figure 1 in The Distribution Of The Northern Bat Eptesicus Nilssonii (Keyserling & Blasius, 1839) In Latvia Assessed By Passive Acoustic Survey
Figure 1. The map of Latvia divided in four regions under LKS92 25x25 km square network. Bat activity was studied in randomly selected squares (visited squares marked grey). In total, 60 squares were surveyed with six survey sites chosen in each square (n=360).
FIGURE 1 in Ectoparasitic flies (Diptera, Streblidae) on bats (Mammalia, Chiroptera) in a dry tropical forest in the northern Colombia
FIGURE 1: Study sites of host-ectoparasite relationship between Streblidae and bats in Colombia. Darker areas correspond to higher altitudes.
FIGURE 2 in Bats in settlements from an atlantic forest area in northeastern Brazil
FIGURE 2: The Sorensen/Bray-Curtis Similarity test Dendrogram for Biological Reserve areas and the villages. Where JPER, IMB, CAI, correspond to the each of the villages, and MATA and TAB correspond to Guaribas Biological Reserve (Atlantic forest and Tabuleiro, respectively).
FIGURE 10. Bats. 1 in Late Holocene land vertebrate fauna from Cueva de los Nesofontes, Western Cuba: Stratigraphy, chronology, diversity, and paleoecology
FIGURE 10. Bats. 1, left hemimandible of Artibeus anthonyi (no, 1663, lower Level III). 2, ventral view of Phyllops vetus incomplete skull (no. 37, Level II). Both specimens were radiocarbon-dated (14C). 3, four hemimandibles of Antrozous koopmani (no. 20, 75, 1429, 1430 from Levels II and IV, also 14C dated). These specimens were also dated, helping corroborate the chronology discussed. The scale bar equals 10 mm.
Figure 5 in Systematic analysis of leisler's bat Nyctalus leisleri (Kuhl, 1817) captured from FATA region, Pakistan
Figure 5. Peculiar to COI by Maximum parsimony method (K2P model). Numbers show percent of 1000 bootstraps replication above 50. ♦ shows the sequences of species of the present research.
Figure 4 in Systematic analysis of leisler's bat Nyctalus leisleri (Kuhl, 1817) captured from FATA region, Pakistan
Figure 4. Genus Nyctalus peculiar to COI by Maximum likelihood method. Number shows percent of 1000 bootstraps replication above 50. ♦ shows the sequences of species of the present research.
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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.