Gonzalez-Rodriguez Erick A, Cepeda-Zapata Luis Kevin, Rivas-Silva Angel Antonio, Martinez-Gonzalez Vania G, Alonso-Valerdi Luz Maria, Ibarra-Zarate David Isaac
Autonomous University of Nuevo Leon, Pedro de Alba S/N, Niños Héroes, Ciudad Universitaria, 66455 San Nicolás de los Garza, N.L., Mexico.
Instituto Tecnológico de Estudios Superiores de Monterrey, Av. Eugenio Garza Sada 2501 Sur, Tecnológico, 64849 Monterrey, N.L., Mexico.
HardwareX. 2024 Apr 18;18:e00529. doi: 10.1016/j.ohx.2024.e00529. eCollection 2024 Jun.
Understanding the somatosensory system and its abnormalities requires the development of devices that can accurately stimulate the human skin. New methods for assessing the somatosensory system can enhance the diagnosis, treatments, and prognosis for individuals with somatosensory impairments. Therefore, the design of NeuroSense, a tactile stimulator that evokes three types of daily life sensations (touch, air and vibration) is described in this work. The prototype aims to evoke quantitative assessments to evaluate the functionality of the somatosensory system and its abnormal conditions that affect the quality of life. In addition, the device has proven to have varying intensities and onset latencies that produces somatosensory evoked potentials and energy desynchronization on somatosensory cortex.
了解体感系统及其异常情况需要开发能够精确刺激人体皮肤的设备。评估体感系统的新方法可以改善体感障碍患者的诊断、治疗和预后。因此,本文描述了一种名为NeuroSense的触觉刺激器的设计,它能引发三种日常生活中的感觉(触摸、空气和振动)。该原型旨在进行定量评估,以评估体感系统的功能及其影响生活质量的异常状况。此外,该设备已被证明具有不同的强度和起始潜伏期,能在体感皮层产生体感诱发电位和能量去同步化。