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Design and validation of the Grip-ball for measurement of hand grip strength

机译:握力球的设计和验证,用于测量握力

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摘要

The Grip-ball is a new dynamometer used to evaluate grip strength, as well as for use in home-based rehabilitation of the hand and forearm. The Grip-ball consists of pressure and temperature sensors and an electronic wireless communication system contained in an airtight ball. That can be inflated to different pressures. The device has advantages over standard dynamometers in that it looks like a simple ball, and can wirelessly communicate via Bluetooth to any compatible receiver, thus have potential to be used for clinical assessment and rehabilitation in a remote setting. The reliability and reproducibility of the device were assessed for the pressure sensor itself, as well as the relationship between the force applied and the pressure measured by the Grip-ball. The initial validation was performed using the pressure sensor without the ball in order to confirm the accuracy of the sensor used. A second validation study was conducted using the Grip-ball rather than just its sensor to examine the relationship between the pressure measured inside the ball and force applied. The results showed that there is a very good correlation (r=0.997, p0.05) between the pressure measured by the Grip-ball sensor and that measured by a Vigorimeter, thus confirming the reliability of the sensor used in the Grip-ball. A quadratic regression equation was calculated in order to predict the force applied based on the pressure measured inside the ball, and the initial pressure to which the ball was inflated (R 2=0.97, standard error 10.9N). Such a finding compares favourably with the variability inherent in Jamar recordings, thus indicating that the Grip-ball could be used to assess grip force. An industrial version of the Grip-ball, which is currently under development, will be able to be used for the entire range of grip force in the population.
机译:握力球是一种新型测力计,用于评估握力,以及用于家庭手部和前臂的康复。握球由压力和温度传感器以及包含在气密球中的电子无线通信系统组成。这可以被夸大到不同的压力。该设备优于标准测功机,因为它看起来像一个简单的球,并且可以通过蓝牙与任何兼容的接收器进行无线通信,因此具有在远程环境中用于临床评估和康复的潜力。评估了压力传感器本身的设备可靠性和可重复性,以及所施加的力与握球所测压力之间的关系。使用没有球的压力传感器进行初始验证,以确认所用传感器的准确性。使用握力球而不是仅仅使用传感器来进行第二次验证研究,以检查在球内部测得的压力与施加的力之间的关系。结果表明,由握球传感器测得的压力与由活力计测得的压力之间具有很好的相关性(r = 0.997,p <0.05),从而证实了在握球中使用的传感器的可靠性。计算二次回归方程,以便根据在球内部测得的压力和球充气的初始压力来预测施加的力(R 2 = 0.97,标准误差为10.9N)。这一发现与Jamar录音固有的可变性相比具有优势,因此表明“握球”可用于评估握力。目前正在开发的工业版握力球将能够用于整个人群的握力范围。

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