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A computational framework to simulate the endolymph flow due to vestibular rehabilitation maneuvers assessed from accelerometer data

机译:一个计算框架,用于模拟根据加速度计数据评估的前庭康复操作引起的内淋巴流量

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Vertiginous symptoms are one of the most common symptoms in the world, therefore investing in new ways and therapies to avoid the sense of insecurity during the vertigo episodes is of great interest. The classical maneuvers used during vestibular rehabilitation consist in moving the head in specific ways, but it is not fully understood why those steps solve the problem. To better understand this mechanism, a three-dimensional computational model of the semicircular ducts of the inner ear was built using the finite element method, with the simulation of the fluid flow being obtained using particle methods. To simulate the exact movements performed during rehabilitation, data from an accelerometer were used as input for the boundary conditions in the model. It is shown that the developed model responds to the input data as expected, and the results successfully show the fluid flow of the endolymph behaving coherently as a function of accelerometer data. Numerical results at specific time steps are compared with the corresponding head movement, and both particle velocity and position follow the pattern that would be expected, confirming that the model is working as expected. The vestibular model built is an important starting point to simulate the classical maneuvers of the vestibular rehabilitation allowing to understand what happens in the endolymph during the rehabilitation process, which ultimately may be used to improve the maneuvers and the quality of life of patients suffering from vertigo.
机译:眩晕症状是世界上最常见的症状之一,因此,以新的方式和疗法进行投资以避免眩晕发作期间的不安全感引起极大兴趣。前庭康复过程中使用的经典动作包括以特定方式移动头部,但尚不能完全理解为什么这些步骤可以解决问题。为了更好地理解该机制,使用有限元方法建立了内耳半圆形导管的三维计算模型,并使用粒子方法获得了流体流动的模拟。为了模拟康复期间执行的精确运动,将来自加速度计的数据用作模型中边界条件的输入。结果表明,所开发的模型对输入数据做出了预期的响应,并且结果成功地显示了作为加速计数据的函数,内淋巴的流体流动具有连贯性。将特定时间步长的数值结果与相应的头部运动进行比较,粒子速度和位置都遵循预期的模式,从而确认模型正在按预期工作。建立的前庭模型是模拟前庭康复经典操作的重要起点,可以了解康复过程中内淋巴的情况,最终可用于改善眩晕患者的操作和生活质量。

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