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Fat mass compared to four body condition scoring systems in the Asian elephant (Elephas maximus).

Citation
Chusyd, D. E., et al. “Fat Mass Compared To Four Body Condition Scoring Systems In The Asian Elephant (Elephas Maximus).”. Zoo Biology, pp. 424-433.
Center University of Alabama at Birmingham
Author Daniella E Chusyd, Janine L Brown, Lilian Golzarri-Arroyo, Stephanie L Dickinson, Maria S Johnson, David B Allison, Tim R Nagy
Keywords BCS, body composition, zoo
Abstract

Captive elephant populations are not self-sustaining due to health concerns possibly related to obesity. Categorizing obesity relies on qualitative analyses like body condition scores (BCS). However, elephant indices have not been validated against measured body composition. The objective was to compare BCS systems to body composition determined by deuterium dilution in 28 zoo-kept Asian elephants. Elephants were weighed and given deuterated water orally (0.05 ml/kg). Blood was collected at ~0, 24, 120, 240, 360, and 480 hr after dosing. Photographs were taken to score the elephant based on four BCS systems (BCS [0 to 11 scoring], BCS [1 to 5 scoring], BCS [0 to 10 scoring], BCS [1 to 10 scoring]). Based on regression analysis, relative fat ranged from -305 kg to 515 kg, where negative values indicate less and positive values indicate more fat than expected for the elephant's mass in this population. BCS was associated with relative fat (p = .020, R  = 0.194). Relative fat, adjusted for sex and age in the statistical model, was associated with BCS (p = .027, R  = 0.389), BCS (p = .002, R  = 0.502), and BCS (p = .011, R  = 0.426). Inclusion of zoo and familial relatedness resulted in all BCS systems associated with relative fat (p ≤ .015). Only BCS predicted relative fat, unadjusted, suggesting it is the most capable system for practical use. Compared to absolute fat, relative fat may be more biologically relevant as greater fat relative to body mass is more likely to lead to health issues.

Year of Publication
2019
Journal
Zoo biology
Volume
38
Issue
5
Number of Pages
424-433
Date Published
10/2019
ISSN Number
1098-2361
DOI
10.1002/zoo.21508
Alternate Journal
Zoo Biol.
PMID
31361060
PMCID
PMC6786925
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