利用三维激光测量分析网纹长颈鹿、霍加狓和黑犀牛的体形

N. Kido, Sohei Tanaka, Yuko Wada, Atsushi Oura, Emi Ochiai, Natsumi Morita, Yoshiya Kawaguchi, Masanori Itabashi, Takanori Munakata
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引用次数: 0

摘要

圈养动物的健康管理非常困难,原因不明,可能与生理机能、疾病和饮食有关。一般来说,异常情况是根据体重来诊断的,但动物园缺乏适合巨型动物的体重秤。体形评估通常用于评估繁殖动物的营养状况;然而,由于观察者之间的差异,这对动物园动物来说并不准确,尤其是巨型动物。以前曾使用三维激光测量法来分析网纹长颈鹿的体形,但还需要进一步的研究来检验其在更多个体和其他物种中的有效性。在此,我们对 7 只网纹长颈鹿(Giraffa reticulata)、5 只霍加狓(Okapia johnstoni)和 3 只黑犀牛(Diceros bicornis)个体应用了这种方法,并测定了横截面积、宽度和高度。每个变量与腋窝测量值的相对变化率揭示了每个个体体形的变化。此外,散点图和相应的拟合曲线及相关系数显示了体长与近似体积之间的相关性。三维激光测量的准确性在三种动物身上都得到了验证,因此我们建议将其用作评估巨型动物体形的另一种方法,而无需考虑观察者之间的差异。此外,这种手持设备还可用于各种动物园,而无需为巨型动物配备秤盘。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Body Shape Analysis in Reticulated Giraffe, Okapi, and Black Rhinoceros Using Three-Dimensional Laser Measurements
Health management in captive animals is difficult for various unknown reasons presumably related to physiological functions, disease, and diet. Generally, abnormal conditions are diagnosed based on body weight; however, zoos lack appropriate scales for megafauna. Body shape evaluation is often used to evaluate the nutritional status of breeding animals; however, this is inaccurate for zoo animals because of inter-observer variability, especially in megafauna. Previously, three-dimensional laser measurements were used to analyse body shape of reticulated giraffe, but further studies are required to examine its effectiveness in more individuals, and other species. Here, we applied this method to seven reticulated giraffe (Giraffa reticulata), five okapi (Okapia johnstoni), and three black rhinoceros (Diceros bicornis) individuals for which cross-sectional area, width, and height in transverse section were determined. Relative change rates of each variable in relation to measurements at the axillary region revealed changes in body shape for each individual. Further, scatter plots and corresponding fitted curves and correlation coefficients showed a correlation between body length and approximate volume. The accuracy of three-dimensional laser measurements was demonstrated in three animal species, whereby we propose its use as an alternative method to evaluate body shape in megafauna without the inter-observer variability. In addition, this handheld device may be applied for various zoos without the scale for megafauna.
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