Use of a wireless, inertial sensor-based system to objectively evaluate flexion tests in the horse.

J F Marshall, D G Lund, L C Voute
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引用次数: 44

Abstract

Objectives: A wireless, inertial sensor-based system has previously been validated for evaluation of equine lameness. However, threshold values have not been determined for the assessment of responses to flexion tests. The aim of this investigation was to evaluate a sensor-based system for objective assessment of the response to flexion.

Methods: Healthy adult horses (n = 17) in work were recruited prospectively. Horses were instrumented with sensors on the head (accelerometer), pelvis (accelerometer) and right forelimb (gyroscope), before trotting in a straight line (minimum 25 strides) for 2 consecutive trials. Sensors measured 1) vertical pelvic movement asymmetry (PMA) for both right and left hindlimb strides and 2) average difference in maximum and minimum pelvic height (PDMax and PDMin) between right and left hindlimb strides in millimetres. A hindlimb was randomly selected for proximal flexion (60 s), after which the horse trotted a minimum of 10 strides. Response to flexion was blindly assessed as negative or positive by an experienced observer. Changes in PMA, PDMax and PDMin between baseline and flexion examinations were calculated for each test. Statistical analysis consisted of a Pearson's product moment test and linear regression on baseline trials, Mann-Whitney rank sum test for effect of flexion and receiver operator curve (ROC) analysis of test parameters.

Results: There was a strong correlation between trials for PMA, PDMin and PDMax measurements (P < 0.001). A positive flexion test resulted in a significant increase in PMA (P = 0.021) and PDMax (P = 0.05) only. Receiver-operator curve analysis established cut-off values for change in PMA and PDMax of 0.068 and 4.47 mm, respectively (sensitivity = 0.71, specificity = 0.65) to indicate a positive response to flexion.

Conclusions: A positive response to flexion resulted in significant changes to objective measurements of pelvic symmetry.

Potential relevance: Findings support the use of inertial sensor systems to objectively assess response to flexion tests. Further investigation is warranted to establish cut-off values for objective assessment of other diagnostic procedures.

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使用无线,惯性传感器为基础的系统,客观地评估在马屈曲试验。
目的:一种基于无线惯性传感器的系统先前已被验证用于评估马的跛行。然而,尚未确定评估屈曲试验反应的阈值。本研究的目的是评估基于传感器的系统对屈曲反应的客观评估。方法:前瞻性地选取工作中的健康成年马17匹。在马的头部(加速度计)、骨盆(加速度计)和右前肢(陀螺仪)上安装传感器,然后连续进行2次直线小跑(至少25步)。传感器测量1)左右后肢跨步时骨盆垂直运动不对称性(PMA)和2)左右后肢跨步时最大和最小骨盆高度(PDMax和PDMin)的平均差值(以毫米为单位)。随机选择后肢进行近端屈曲(60秒),之后马小跑至少10步。对屈曲的反应由经验丰富的观察者盲目地评估为消极或积极。每次测试计算基线和屈曲检查之间PMA、PDMax和PDMin的变化。统计分析包括基线试验的Pearson积差检验和线性回归检验、屈曲效应的Mann-Whitney秩和检验和试验参数的受试者操作曲线(receiver operator curve, ROC)分析。结果:试验中PMA、PDMin和PDMax测量值之间有很强的相关性(P < 0.001)。阳性屈曲试验仅导致PMA (P = 0.021)和PDMax (P = 0.05)显著增加。接受者-操作者曲线分析确定PMA和PDMax变化的临界值分别为0.068和4.47 mm(敏感性= 0.71,特异性= 0.65),表明对屈曲有积极反应。结论:对屈曲的积极反应导致骨盆对称客观测量的显着变化。潜在相关性:研究结果支持使用惯性传感器系统来客观评估对弯曲试验的反应。进一步的调查是必要的,以建立客观评估其他诊断程序的临界值。
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