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6 results for “Nycticebus”
Triangular Mesh of the Brain of a Slow Loris (Nycticebus)
<p>Triangular Mesh of the Brain of a Slow Loris (<i>Nycticebus</i>) from http://braincatalogue.org/Slow_loris</p>
Magnetic Resonance Imaging Scan of the Brain of a Slow Loris (Nycticebus)
<p>Magnetic Resonance Imaging Scan of the Brain of a Slow Loris (<i>Nycticebus</i>) from http://braincatalogue.org/Slow_loris</p>
On following pages: 7. Red Slender Loris (Loris tardigradus); 8. Bengal Slow Loris (Nycticebus bengalensis); 9. Sunda Slow Loris (Nycticebus coucang); 10. Javan Slow Loris (Nycticebus javanicus); 11. Bornean Slow Loris (Nycticebus menagensis); 12. Pygmy Slow Loris (Nycticebus pygmaeus). in Lorisidae
On following pages: 7. Red Slender Loris (Loris tardigradus); 8. Bengal Slow Loris (Nycticebus bengalensis); 9. Sunda Slow Loris (Nycticebus coucang); 10. Javan Slow Loris (Nycticebus javanicus); 11. Bornean Slow Loris (Nycticebus menagensis); 12. Pygmy Slow Loris (Nycticebus pygmaeus).
Supplementary data from: The Holocene fossil record of the slow loris (Nycticebus sp.) in Java (Indonesia)
<p>Supplementary data from: The Holocene fossil record of the slow loris (Nycticebus sp.) in Java (Indonesia)</p> <p>Abstract:</p> <p>Fossil lorises are rare in Southeast Asia. Their taxonomic relationship with extant populations, and the extent to which their distribution and morphology are influenced by changing environmental conditions, remain poorly understood. This study provides a synthesis of <em>Nycticebus</em> occurrences in Holocene Java (Indonesia). A morphometric analysis of a sample of craniodental remains aims to improve our understanding of their taxonomic status. Morphometrics were also used to explore potential size changes during the Holocene.</p> <p>Based on the literature and a review of museum catalogs, a synthesis was compiled of fossil slow loris occurrences in Java. Morphometric data on the mandible and maxilla of 11 fossil lorises were compared with a dataset of extant specimens to assess variation in size and shape.</p> <p>Five Holocene <em>Nycticebus</em> occurrences were identified in eastern Java. All specimens fall in the range of <em>N. javanicus</em> and <em>N. coucang</em>. The specimens from Hoekgrot, Gua Jimbe and Sampung suggest a closer affinity to <em>N. javanicus</em>. The fossils from Gua Jimbe and Hoekgrot gave values close to the largest <em>N. javanicus</em> specimens, but the (presumably older) Song Terus fossil was of average size.</p> <p>The distribution of <em>Nycticebus</em> suggests that it originally occurred throughout the island. The fossils are probably best identified as <em>N. javanicus</em> or <em>N. coucang</em>, but the Neolithic finds from Hoekgrot and Gua Jimbe are presumably <em>N. javanicus</em>. Size variation in <em>Nycticebus</em> was clinal, but although some large specimens were present, no evidence was found for size diminution during the Holocene.</p>
Figure 2 in Noxious arthropods as potential prey of the venomous Javan slow loris (Nycticebus javanicus) in a West Javan volcanic agricultural system
Figure 2. Mean abundance of the most frequently captured arthropod taxa per trap type. Sample size: Malaise trap n = 21, sweep net n = 17, pitfall trap n = 9. Error bars: ± 1 SE.
Figure 1 in Noxious arthropods as potential prey of the venomous Javan slow loris (Nycticebus javanicus) in a West Javan volcanic agricultural system
Figure 1. Map of the study location Cipaganti near Garut, West Java.
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