Department ofMechanical Engineering, University of Michigan, Ann Arbor, MI 48109, USA.
IEEE Trans Biomed Eng. 2010 Apr;57(4):944-52. doi: 10.1109/TBME.2009.2036833. Epub 2009 Nov 20.
This study uses frequency-domain techniques and stabilogram diffusion analysis (SDA) to investigate the effect of vibrotactile feedback during continuous multidirectional perturbations of a support platform. Eight subjects with vestibular deficits were subjected to two-axis pseudorandom surface platform motion while donning a multiaxis vibrotactile feedback device that mapped body tilt estimates onto their torsos via a 3-row by 16-column array of tactile vibrators (tactors). Four tactor display configurations with spatial resolutions ranging between 22.5 degrees and 90 degrees, in addition to the tactors off configuration, were evaluated. Power spectral density functions of body sway in the anterior-posterior (A/P) and medial-lateral (M/L) directions, and transfer functions between platform motion and body sway, were computed at frequencies ranging from 0.0178 to 3.56 Hz. Cross-spectral analysis revealed that the A/P responses were not significantly driven by M/L inputs, and vice versa, thus supporting the notion of independent A/P and M/L postural control. Vibrotactile feedback significantly decreased A/P and M/L spectral power, decreased transfer function gains up to a frequency of 1.8 and 0.6 Hz in the A/P and M/L directions, respectively, and increased phase leads above 0.3 Hz. SDA showed significantly decreased transition time for both A/P and M/L tilts, and decreased transition displacement and short-term diffusion coefficients for A/P tilt. However, the spatial resolution of the tactor displays did not affect subjects' performance, thereby supporting the use of a lower spatial resolution display in future device designs.
本研究采用频域技术和稳定图扩散分析(SDA)来研究在支撑平台的连续多方向扰动过程中振动触觉反馈的影响。8 名前庭功能障碍患者在佩戴多轴振动触觉反馈设备的情况下接受二维伪随机表面平台运动,该设备通过 3 行 16 列的触觉振动器(tactors)将身体倾斜估计映射到他们的躯干上。评估了四个具有 22.5 度至 90 度之间空间分辨率的触觉器显示配置,以及触觉器关闭配置。在 0.0178 至 3.56 Hz 的频率范围内计算了身体在前后(A/P)和内外(M/L)方向上的摆动的功率谱密度函数以及平台运动与身体摆动之间的传递函数。互谱分析表明,A/P 响应不受 M/L 输入的显著驱动,反之亦然,因此支持 A/P 和 M/L 姿势控制的独立性的概念。振动触觉反馈显著降低了 A/P 和 M/L 的频谱功率,分别在 A/P 和 M/L 方向上降低了高达 1.8 和 0.6 Hz 的传递函数增益,并在 0.3 Hz 以上增加了相位超前。SDA 显示 A/P 和 M/L 倾斜的过渡时间明显缩短,A/P 倾斜的过渡位移和短期扩散系数降低。然而,触觉器显示的空间分辨率并未影响受试者的表现,因此支持在未来的设备设计中使用较低的空间分辨率显示。