首页> 外文期刊>Revista Brasileira de Medicina do Esporte >Influência da resolu??o e da distancia da camera nas medidas feitas pelo software de avalia??o postural (sapo)
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Influência da resolu??o e da distancia da camera nas medidas feitas pelo software de avalia??o postural (sapo)

机译:分辨率和距相机的距离对姿势评估软件(青蛙)进行的测量的影响

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Error in measurement of a posture evaluation system is related to the digitalization, camera resolution and distance in relation to the volunteer studied, among others. These errors are summed up during the process and many of them are not possible to be avoided; however, they must be known and quantified. OBJECTIVE: to quantify the error of the positions measured by SAPO (Software para avalia??o postural) in different experimental situations. METHODS: 16 photos of a 1.40m tall articulated mannequin were taken at the anterior, posterior, right lateral and left lateral planes with 3.2 and 12.0 megapixels resolution cameras, at 3.0m and 5.0m from the model. To quantify the error, the differences between the measurements obtained by SAPO and the ones made directed on the mannequin were calculated. RESULTS: the mean values of the horizontal, vertical, angular and distance measurements are close to zero; however, some angles were larger for the left and right measurements. The 3.2 megapixel digital camera located 3 m away showed the lowest error. The digitalization position is not influenced by the experience of the evaluators. CONCLUSION: SAPO is an accurate method for clinical use. Further studies are necessary to verify the effect of the position plane of the volunteer in relation to the camera, the effect of the relocation and the measurement palpation provided by the software.
机译:姿势评估系统的测量误差与数字化,相机分辨率和相对于研究志愿者的距离有关。这些错误是在过程中总结出来的,其中许多是无法避免的。但是,它们必须已知并量化。目的:量化在不同实验情况下由SAPO(视力障碍软件)测量的位置的误差。方法:用3.2和12.0百万像素分辨率的相机分别在模型的3.0m和5.0m处在前,后,右,左侧和左平面拍摄16张1.40m高的铰接式人体模型的照片。为了量化误差,计算了SAPO获得的测量值与针对人体模型的测量值之间的差异。结果:水平,垂直,角度和距离测量的平均值接近零;但是,左右测量有些角度较大。位于3 m外的3.2百万像素数码相机显示出最低的误差。数字化位置不受评估人员经验的影响。结论:SAPO是一种准确的临床使用方法。需要进一步的研究来验证志愿者相对于相机的位置平面的影响,重新定位的影响以及软件提供的测量触诊。

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