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Calibration of estimated biting forces in domestic canids: comparison of post-mortem and in vivo measurements

机译:校准估计的家庭犬咬力:验尸和体内测量结果的比较

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摘要

Estimates of biting forces are widely used in paleontological and comparative studies of feeding mechanics and performance, and are usually derived from lever models based on measurements made on the skull that are relevant to the mechanics of the masticatory system. Owing to assumptions and unmeasurable errors in their estimation, such values are used comparatively rather than as absolute estimates. The purpose of this paper was to provide calibration of post-mortem calculated bite force estimates by comparing them to in vivo forces derived from a sample of 20 domestic dogs (Canis familiaris) during muscle stimulation under general anaesthesia. Two lever models previously described in the literature were used to estimate post-mortem values, and regression analysis was also performed to derive best-fit equations against a number of morphometric measurements on the skull. The ranges of observed forces in vivo were 147–946 N at the canine, and 524–3417 N at the second molar. The lever models substantially underestimated these forces, giving mean values between 39% and 61% of the observed means. Predictability was considerably improved by removing the linear bias and deviation of the regression slope from unity with an adjustment equation. Best-fit statistical models developed on these animals performed considerably better (calculated means within 0.54% of observed means) and included easily measureable variables such as bodyweight, dimensions of the temporalis fossa and out-lever from the jaw joint to the biting tooth. These data should lead to more accurate absolute, rather than relative, estimates of biting forces for other extant and fossil canids, and other carnivorans by extrapolation.
机译:咬合力的估计已广泛用于进食力学和性能的古生物学和比较研究中,并且通常是基于对头骨进行的与咀嚼系统的力学相关的测量结果,根据杠杆模型得出的。由于假设和估计中存在无法测量的误差,因此将这些值用于比较而不是绝对估计。本文的目的是通过将尸体计算出的咬合力估计值与在全身麻醉下肌肉刺激过程中从20只家犬(犬种)的样本中获得的体内力进行比较,来提供事后计算的咬合力估计值的校准。先前在文献中描述的两个杠杆模型用于估计验尸值,并且还进行了回归分析以针对颅骨上的许多形态测量结果得出最佳拟合方程。犬体内观察到的力范围为147–946 N,第二磨牙为524–3417N。杠杆模型大大低估了这些力,其平均值介于所观察平均值的39%和61%之间。通过使用调整方程消除线性偏差和回归斜率与1的偏差,可以大大改善可预测性。对这些动物开发的最佳拟合统计模型的性能要好得多(计算的均值在所观察均值的0.54%之内),并且包括易于测量的变量,例如体重,颞窝的大小以及从颌关节到咬合牙齿的杠杆。这些数据应通过推算得出对其他现存和化石犬科动物以及其他食肉动物的咬力的更准确的绝对而非绝对估计。

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