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Essential tremor measurement and analysis

机译:基本震颤测量和分析

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A computer sensor network is developed to monitor hand position of those with essential tremor, a nervous system disorder that causes uncontrollable shaking of the hands and upper body [1]. The sensor network collects three-dimensional positional data using two ZX Distance and Gesture Sensors, an Arduino Uno board, and a Raspberry Pi. The ZX Distance and Gesture Sensors, which use two infrared (IR) light-emitting diodes (LEDs) and a receiver to collect positional data, are connected to the Arduino. From there, the data are transmitted serially to the Raspberry Pi via an I2C multiplexer. Data from a series of carefully selected hand movements performed by a subject without essential tremor are collected and analyzed using Python to assess network accuracy. Graphs are produced to represent different data features. Theoretical plots are also generated for comparison to experimental results. Average deviation from a theoretical path of motion is calculated for each task performed and found to be no higher than 0.24 inches (0.61 cm). These values quantify the shakiness of the “normal” hand relative to theoretical paths of motion. With data collected from real tremor patients, this computer sensor network could improve the way essential tremor is monitored and classified for the millions of patients who struggle to find treatment.
机译:开发了一种计算机传感器网络,以监测那些具有必要震颤的人的位置,这是一种神经系统紊乱,导致手和上半身无法控制摇动[1]。传感器网络使用两个ZX距离和手势传感器,Arduino Uno板和覆盆子PI收集三维位置数据。使用两个红外(IR)发光二极管(LED)和接收器收集位置数据的ZX距离和手势传感器连接到Arduino。从那里,数据通过I2C多路复用器串行发送到覆盆子PI。使用Python收集并分析由受试者执行的一系列仔细选定的手动移动,并使用Python进行分析,以评估网络精度。制作图形以表示不同的数据特​​征。还产生了与实验结果相比的理论图。从执行的每个任务计算的来自理论的运动路径的平均偏差,发现不高于0.24英寸(0.61厘米)。这些值量化了相对于运动的理论路径的“正常”手的动力。随着从真正的震颤患者收集的数据,这台计算机传感器网络可以改善所需震颤的方式,为数百万难以找到治疗的患者进行分类。

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