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Best practice for collar deployment of tri-axial accelerometers on a terrestrial quadruped to provide accurate measurement of body acceleration

机译:领轴加速度计在地面上曲线上的领子部署的最佳实践提供了精确的身体加速度测量

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Tri-axial accelerometers are frequently deployed on terrestrial quadrupedal mammals using collars, because they are easy to fit and are thought to have minimal impact on the subject. Collar-attached devices are not fixed to the body and can move independently of the body. This may result in inaccurate measures of acceleration, reducing the accuracy of measured body movement. We determined the effect of collar size and collar weight on acceleration measured by a collar-mounted accelerometer on a quadruped mammal. The aim was to suggest best practice for sizes and weights of collars on which to deploy tri-axial accelerometers. Using pygmy goats, Capra aegagrus hircus, which were trained to walk at different speeds (0.8–3.0?km/h) on a treadmill, we measured body acceleration using a collar-mounted tri-axial accelerometer, with different collar sizes (individual neck circumference ?1?cm to ?9?cm) and collar weight (0.4% to 1.2% of individual weight). There was a significant effect of collar size, collar weight and walking speed on measured acceleration. Measured acceleration was less accurate and more variable when collars were looser and heavier. To measure body acceleration more accurately, we found that collar size should be within 5?cm or 16% of an individual’s neck circumference when it was heavy (up to 1.2% of animal’s body weight) or within 7?cm (33%) of neck circumference if the collar was light (up to 0.6% of animal body weight). We suggest that not only reporting collar size and weight for welfare purposes, but it is also important to consider these aspects for scientific rigour, to ensure data are collected as accurately as possible. We provide guidelines for researchers fitting collar-attached devices to ensure a higher degree of accuracy of recorded body acceleration.
机译:使用套环经常在地面Quadrupedal哺乳动物上部署三轴加速度计,因为它们易于装配,并且被认为对该主题产生最小的影响。套环连接的装置不固定在主体上,并且可以独立于主体移动。这可能导致加速度不准确,降低测量体运动的准确性。我们确定了套环尺寸和套环重量对通过套环安装的加速度计测量的套环上的哺乳动物上的加速度。目的是为部署三轴加速度计的套环的大小和重量建议最佳实践。使用Pygmy Goats,Capra Aegagrus Hircus,在跑步机上以不同的速度(0.8-3.0 km / h)培训,我们使用套环安装的三轴加速度计测量了身体加速度,具有不同的套环尺寸(单独的颈部圆周?1?cm至9?cm)和套环重量(单个重量的0.4%至1.2%)。套环尺寸,套环重量和步行速度的测量加速度有显着影响。当套环宽松和更重时,测量的加速度较低,更具变量更具变量。为了更准确地测量身体加速度,我们发现,当它重沉重(占动物体重的1.2%)或7?cm(33%)内时,套环尺寸应在5?cm或16%的单个颈部周长内如果套环是光(高达7%的动物体重的0.6%)。我们建议不仅报告领域和重量,福利目的也很重要,需要考虑科学严谨的这些方面,以确保尽可能准确地收集数据。我们为研究人员提供了拟合领域的设计指南,以确保记录的身体加速度更高的准确度。

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