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36 results for “Equus caballus”
Figure 11 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 11. Relationships of human presence, horse key summer range (KSR) use, and lion numbers in the Montgomery Pass Wild Horse Territory (MPWHT). Human presence (May– September) is presented as per cent of its highest year. Horse KSR use is presented as per cent of the total population using the KSR. Adult lion numbers are presented as the percentage of the maximum single-year lion number.
Figure 6 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 6. Montgomery Pass Wild Horse Territory (MPWHT) horse use of non-key summer range (KSR) areas. Use outside the MPWHT primarily includes areas east of Basalt and west of Adobe Valley.
Figure 5. Changes from 1987 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 5. Changes from 1987 to 2007 in patterns of the geographic distribution of wild horses in the Montgomery Pass Wild Horse Territory (MPWHT). The central, lightly shaded area is the key summer range (KSR). The black mark within it is the highest elevation in the Territory (elevation decreases 360 degrees around it throughout). Dark shaded areas indicate regular horse use and represent> 90% of the population. Many wild horse populations in the intermountain west accommodate to seasonal conditions, spending winter at lower elevations and summer at higher elevations. The pattern across years in the MPWHT changed from summer horse concentration in the KSR to decreasing return to KSR from winter range. In addition to establishment of decreased KSR use and increased year-round use of historical winter-range areas, expansion of the geographic use areas occurred in the latter, including seasonal use beyond MPWHT map boundaries.
Figure 8 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 8. The relationship of key summer range (KSR) horse use and carrying capacity in the context of the Montgomery Pass Wild Horse Territory (MPWHT) horse population. As KSR horse numbers decreased, use outside the KSR increased. Total population range use is presented as a percentage of KSR carrying capacity. As total population increased across years, it remained <80% of carrying capacity for KSR alone, suggesting that considerable population growth can continue without reaching carrying capacity.
Figure 4 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 4. Relationship of mountain lions and foal survival in the Montgomery Pass Wild Horse Territory (MPWHT). Data are based on annual assessment between May and September. The majority of predation occurred in the key summer range (KSR). Adult lion numbers and foal survival in the MPWHT: foal survival is presented as the ratio of currentyear yearlings to previous-year foals expressed as a percentage, lion numbers are for individual lions documented by telemetry, track and/or sighting. The majority of lions were recorded in the KSR.
Figure 3 in Environmental influences on movements and distribution of a wild horse (Equus caballus) population in western Nevada, USA: a 25-year study
Figure 3. Annual total number of horses in the Montgomery Pass wild horse population. Numbers represent reliable estimate for all range areas (not complete enumeration).
Text-fig. 7. Enamel ultrastructure of P3, Equus caballus (konik polski). a: enamel row, scale bar = 50 Μm; b: type I and III, scale bar = 50 Μm; c: type I, scale bar = 10 Μm; d, e: wavy enamel of TZ with decussations, scale bar = 100 and 50 Μm respectively; f: type II near OES, scale bar = 10 Μm. in The Ultrastructure Of The Tooth Enamel Of Small Equus Of The "Tarpan" Group And Their Possible Phylogenetic Connections
Text-fig. 7. Enamel ultrastructure of P3, Equus caballus (konik polski). a: enamel row, scale bar = 50 Μm; b: type I and III, scale bar = 50 Μm; c: type I, scale bar = 10 Μm; d, e: wavy enamel of TZ with decussations, scale bar = 100 and 50 Μm respectively; f: type II near OES, scale bar = 10 Μm.
Text-fig. 11. Enamel ultrastructure of first (a) and second (b, c) lower incisors, Equus caballus (konik polski), vertical sections. a: enamel row, scale bar = 100 Μm; b: arranging the prisms in the HSB structure, scale bar = 20 Μm; c: arranging the prisms in PI structure, scale bar = 20 Μm. in The Ultrastructure Of The Tooth Enamel Of Small Equus Of The "Tarpan" Group And Their Possible Phylogenetic Connections
Text-fig. 11. Enamel ultrastructure of first (a) and second (b, c) lower incisors, Equus caballus (konik polski), vertical sections. a: enamel row, scale bar = 100 Μm; b: arranging the prisms in the HSB structure, scale bar = 20 Μm; c: arranging the prisms in PI structure, scale bar = 20 Μm.
Fig. 2. a in Not playing by the rules: Unusual patterns in the epidemiology of parasites in a natural population of feral horses (Equus caballus) on Sable Island, Canada
Fig. 2. a) Dictyocaulus arnfieldi first-stage larvae showing typical granular appearance and beginning of cuticular separation b) closer view of tail showing stylet, or spear.
Fig. 1 in Not playing by the rules: Unusual patterns in the epidemiology of parasites in a natural population of feral horses (Equus caballus) on Sable Island, Canada
Fig. 1. Map of Sable Island, Canada, which is about 50 km long, 1 km wide at its widest point, and in total, 34 km2 (from Gold et al., 2019).
Fig. 3 in Not playing by the rules: Unusual patterns in the epidemiology of parasites in a natural population of feral horses (Equus caballus) on Sable Island, Canada
Fig. 3. Proportions of third-stage larvae of large and small strongyle species cultured from feces of 81 Sable Island horses in summer 2014, showing an unusual dominance of S. equinus in adult horses. Larvae with a rhabditiform pharynx were rare in young (1–3 years) and adult horses (≥3 years), but common in foals, which could represent larvae of Strongyloides westeri.
FIG. 39. Equus caballus AMNH M-204155 in Cranial Morphology And Phylogenetic Relationships Of Trigonostylops Wortmani, An Eocene South American Native Ungulate
FIG. 39. Equus caballus AMNH M-204155, left caudal cranium in A, lateral and B, ventral aspects, with C, ventral stereopair of auditory region. Key: 1, incisura carotidis; 2, incisura ovalis; 3, incisura spinosa. In A, planes corresponding to approximate location of segments illustrated in figure 40A–E are indicated on lower right. In B, white asterisks, impressions for?tributaries of basicranial plexuses and retroarticular emissary vein; black asterisk, impression for?craniooccipital vein or emissarium from ventral petrosal sinus (see fig. 6). Even though this a young animal, suture line between ectotympanic and entotympanic is already obliterated (see Maier et al., 2013).
FIG. 7 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 7. — Lion blessé d'une flèche. Crédit: M. Spruyt (d'après le relief du British Museum no 1992,0404.1).
FIG. 8 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 8. — Détail de la scène de chasse au lion montée (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 9 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 9. — Détail de la scène de chasse au lion menée à pied. (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 6 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 6. — Lionne blessée de trois flèches. Crédit: M. Spruyt (d'après le relief du British Museum no 1856,0909.15).
FIG. 4 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 4. — Relevé de la scène de chasse aux 18 lions. Crédit: Watanabe (2018: 222,fig. 238; d'après les reliefs du British Museum no 1856,0909.16 [BM 124862-124870]).
FIG. 5 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 5. — Lion libéré d'une cage. Crédit: M. Spruyt (d'après le relief du British Museum no 1856,0909.48).
FIG. 2 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 2. — Un soldat impassible muni d'un fouet et sa monture (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 3 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 3. — Le roi suivi de deux soldats dont l'un menant une monture de remplacement. Crédit: Barnett (1976: pl. lii).
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OpenNeuro
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