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50 results for “Mephitidae”

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Fig. 3 in Status and distribution of Paraguayan Procyonidae and Mephitidae (Mammalia: Carnivora)

Fig. 3 - Distribution of Nasua nasua in Paraguay. Specimen examined (yellow circle); Specimen not examined (blue triangle); Literature reference (green square); Photographic record (red hexagon); Reliable observation (purple star). / Distribuzione di Nasua nasua in Paraguay. Esemplare esaminato (cerchio giallo); esemplare non esaminato (triangolo blu); riferimento bibliografico (quadrato verde); documentazione fotografica (esagono rosso); osservazione affidabile (stella viola).

opencc-by-4.0Apr 2024View details →
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Fig. 2 in Status and distribution of Paraguayan Procyonidae and Mephitidae (Mammalia: Carnivora)

Fig. 2 - Map showing Paraguayan ecoregions. Brown (Dry Chaco and Cerrados del Chaco); olive green (Humid Chaco); orange (Cerrado); dark green east of Paraguay River (Atlantic Forest); dark green west of Paraguay River (Pantanal). / Mappa delle ecoregioni paraguaiane. Bruno (Chaco secco e Cerrados del Chaco); verde oliva (Chaco umido); arancione (Cerrado); verde scuro a est del fiume Paraguay (Foresta atlantica); verde scuro a ovest del fiume Paraguay (Pantanal).

opencc-by-4.0Apr 2024View details →
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Fig. 1 in Status and distribution of Paraguayan Procyonidae and Mephitidae (Mammalia: Carnivora)

Fig. 1 - Map showing the political departments of Paraguay and the number of species of procyonids and mephitids recorded in each. For departments in eastern Paraguay with possible presence of skunk, the number is presented separated by "/" representing the number of species excluding / including the questionable report. Departments as follows: Chaco region - Alto Paraguay (APY), Boquerón (BOQ), Presidente Hayes (PHA); Oriental region - Amambay (AMA), Alto Paraná (APA), Caaguazú (CAA), Canindeyú (CAN), Caazapá (CAZ), Central (CEN), Concepción (CON), Cordillera (COR), Guairá (GUA), Itapúa (ITA), Misiones (MIS), Ñeembucú (ÑEE), Paraguarí (PAR), San Pedro (SPE). / Mappa dei dipartimenti politici del Paraguay con indicazione del numero di specie di procionidi e mefitidi rilevate in ciascuno di essi. Per i dipartimenti del Paraguay orientale con possibile presenza di Conepatus chinga, il numero è presentato separato da "/", che rappresenta il numero di specie esclusa / inclusa la segnalazione dubbia. Dipartimenti come di seguito: Regione del Chaco - Alto Paraguay (APY), Boquerón (BOQ), Presidente Hayes (PHA); Regione orientale - Amambay (AMA), Alto Paraná (APA), Caaguazú (CAA), Canindeyú (CAN), Caazapá (CAZ), Central (CEN), Concepción (CON), Cordillera (COR), Guairá (GUA), Itapúa (ITA), Misiones (MIS), Ñeembucú (ÑEE), Paraguarí (PAR), San Pedro (SPE).

opencc-by-4.0Apr 2024View details →
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Fig. 4 in Status and distribution of Paraguayan Procyonidae and Mephitidae (Mammalia: Carnivora)

Fig. 4 - Distribution of Procyon cancrivorus in Paraguay. Specimen examined (yellow circle); Specimen not examined (blue triangle); Literature reference (green square); Photographic record (red hexagon); Reliable observation (purple star). / Distribuzione di Procyon cancrivorus in Paraguay. Esemplare esaminato (cerchio giallo); esemplare non esaminato (triangolo blu); riferimento bibliografico (quadrato verde); documentazione fotografica (esagono rosso); osservazione affidabile (stella viola).

opencc-by-4.0Apr 2024View details →
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Fig. 5 in Status and distribution of Paraguayan Procyonidae and Mephitidae (Mammalia: Carnivora)

Fig. 5 - Distribution of Conepatus chinga in Paraguay. Specimen examined (yellow circle); Specimen not examined (blue triangle); Literature reference (green square); Photographic record (red hexagon); Reliable observation (purple star). / Distribuzione di Conepatus chinga in Paraguay. Esemplare esaminato (cerchio giallo); esemplare non esaminato (triangolo blu); riferimento bibliografico (quadrato verde); documentazione fotografica (esagono rosso); osservazione affidabile (stella viola).

opencc-by-4.0Apr 2024View details →
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Fig. 3 in Conepatus leuconotus (Carnivora: Mephitidae)

Fig. 3.—Geographic distribution of Conepatus leuconotus. 1, C. leuconotus figginsi, 2, C. l. leuconotus, and 3, C. l. telmalestes. Modified from Dragoo et al. (2003).

opencc-by-4.0Feb 2009View details →
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Fig. 1 in Conepatus leuconotus (Carnivora: Mephitidae)

Fig. 1.—Adult male Conepatus leuconotus showing the key characters associated with the face, nose, and fore claws. Photograph by Jerry W. Dragoo.

opencc-by-4.0Feb 2009View details →
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Fig. 2 in The first recorded activity pattern for the Sunda stink-badger Mydaus javanensis (Mammalia: Carnivora: Mephitidae) using camera traps

Fig. 2. Daily activity patterns of Sunda stink-badger within Lots 5 and 7 of the Lower Kinabatangan Wildlife Sanctuary, Sabah, Borneo. The grey areas represent an extension of the activity pattern to depict its circular nature, and 'carpet' marks along the x-axis represent individual photographic events. Vertical dashed red lines indicate either the end or beginning of the diurnal phase of the diel (0700–1659 hours). Vertical blue lines indicate either the end or beginning of the nocturnal phase of the diel (1900–0459 hours). Regions between red and blue lines represent the crepuscular regions of the diel (0500–0659 hours and 1700–1859 hours).

opencc-by-4.0Jul 2017View details →
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Fig. A3 in The first recorded activity pattern for the Sunda stink-badger Mydaus javanensis (Mammalia: Carnivora: Mephitidae) using camera traps

Fig. A3. Co-occurrence of Sunda stink-badger Mydaus javanensis and Malay civet Viverra tangalunga photo-captured in the Lower Kinabatangan Wildlife Sanctuary, Sabah, Malaysian Borneo on 13 June 2013.

opencc-by-4.0Jul 2017View details →
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Fig. A2 in The first recorded activity pattern for the Sunda stink-badger Mydaus javanensis (Mammalia: Carnivora: Mephitidae) using camera traps

Fig. A2. Kernel density modelled activity patterns for the Sunda stink-badger during different periods; overlap between activity patterns is indicated by the shaded regions. Vertical dashed red lines indicate either the end or beginning of the diurnal phase of the diel (0700–1659h). Vertical blue lines indicate either the end or beginning of the nocturnal phase of the diel (1900–0459h). Regions between red and blue lines represent the crepuscular regions of the diel (0500–0659h and 1700–1859h). 'Carpet' marks along the x-axis represent individual photographic events, and are colour co-ordinated to their respective activity pattern. Top (a): Overlap in kernel density modelled activity pattern in the wet season (November–February) compared to the dry season (March–October). Middle (b): Overlap in kernel density modelled activity pattern on full moon nights compared to new moon nights. Bottom (c): Overlap in kernel density modelled activity pattern on 'bright' nights (full moon, waxing gibbous, and waning gibbous) compared to 'dim' nights (new moon, new crescent, and old crescent).

opencc-by-4.0Jul 2017View details →
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Fig. 1 in The first recorded activity pattern for the Sunda stink-badger Mydaus javanensis (Mammalia: Carnivora: Mephitidae) using camera traps

Fig. 1. Location of the camera trap stations in Lots 5 and 7 of the LKWS along the northern bank of the Kinabatangan River, Sabah, Borneo.

opencc-by-4.0Jul 2017View details →
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Figure 11 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 11. Plots of fossil and extant species showing relationship of A, M1 lengths vs. widths; and B, m1 length vs. m1 trigonid length. See text for explanations.

opencc-by-4.0Oct 2008View details →
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Figure 12 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 12. Strict consensus of six shortest trees of North American skunks found by Branch and Bound option of the PAUP program. Solid bars indicate synapomorphies and open bars indicate homoplasies and reversals. Numbers to the left of the bars are character numbers that correspond to those in Appendix 1 and Table 2, and numbers to the right of the bars are character states. Numbers at nodes are bootstrap values (> 50%, 100 replications). Tree length = 67, consistency index = 0.7, retention index = 0.82. Character 25 (loss of P2) is optimized as independently occurring in the C. leuconotus–robustus clade and in the C. semistriatus–South American clade, rather than a single occurrence at Conepatus and then reversals.

opencc-by-4.0Oct 2008View details →
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Figure 10 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 10. Conepatus sanmiguelensis sp. nov., IGM 7801, referred specimen. Pathological proximal and medial phalanges. A, medial, and B, dorsal views.

opencc-by-4.0Oct 2008View details →
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Figure 9 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 9. Conepatus sanmiguelensis sp. nov., IGM 7801, referred specimen: A, lateral view of right proximal scapula; B, anterior view of proximal humerus; C, anterior view of left ulna; D, anterior view of left radius; E, dorsal view of right hand (terminal phalanges shown in lateral view); F, anterior view of left distal fibula; G, anterior view of left distal tibia; and H, dorsal view of left foot (terminal phalanges shown in medial view).

opencc-by-4.0Oct 2008View details →
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Figure 8 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 8. Conepatus sanmiguelensis sp. nov., IGM 7802, referred specimen from JAL TECO 9: A, occlusal, and B, lingual views.

opencc-by-4.0Oct 2008View details →
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Figure 5 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 5. Conepatus sanmiguelensis sp. nov., IGM 7801, referred specimen: A, medial and B, lateral views.

opencc-by-4.0Oct 2008View details →
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Figure 7 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 7. Conepatus sanmiguelensis sp. nov., IGM 7801, referred specimen. Stereophotos of polyester casts of lower teeth. Occlusal views of A, right jaw, and B, left jaw. The p2–3 were collected as isolated teeth, and their position and imbrications on the left jaw are reconstructions based on the orientation of the p4, which is preserved in situ. This type of imbrication (clockwise rotation) is less common among Conepatus, and the more common type is an anticlockwise rotation on the left jaws.

opencc-by-4.0Oct 2008View details →
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Figure 6 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 6. Conepatus sanmiguelensis sp. nov., Stereophotos of polyester casts of upper teeth. Occlusal views of A, IGM 7801, referred specimen, and B, IGM 7800, holotype.

opencc-by-4.0Oct 2008View details →
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Figure 4 in Earliest hog-nosed skunk, Conepatus (Mephitidae, Carnivora), from the early Pliocene of Guanajuato, Mexico and origin of South American skunks

Figure 4. Conepatus sanmiguelensis sp. nov., IGM 7800, holotype: A, lateral, B, ventral and C, dorsal views of the skull.

opencc-by-4.0Oct 2008View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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Last verified 2026-04-30Open record

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.

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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record