Department of Bioengineering, University of Pittsburgh Swanson School of Engineering, Pittsburgh, PA, USA.
Department of Physical Therapy, University of Pittsburgh School of Health and Rehabilitation Sciences, Pittsburgh, PA, USA.
J Vestib Res. 2023;33(6):367-376. doi: 10.3233/VES-230010.
The video head impulse test (vHIT) is a common assessment of semicircular canal function during high-speed impulses. Reliability of the vHIT for assessing vertical semicircular canals is uncertain. Vertical head impulses require a complex head movement, making it difficult to isolate a single semicircular canal and interpret resulting eye rotations.
The purpose of this study was to provide descriptive head kinematics and vestibular stimuli during vertical plane impulses to ultimately improve impulse delivery and interpretation of vHIT results for vertical semicircular canals.
Six participants received right anterior (RA) and left posterior (LP) semicircular canal impulses. Linear displacements, rotational displacements, and rotational velocities of the head were measured. Peak velocities in semicircular canal planes and peak-to-peak gravitoinertial accelerations at the otolith organs were derived from head kinematics.
The largest rotational velocities occurred in the target semicircular canal plane, with non-negligible velocities occurring in non-target planes. Larger vertical displacements and accelerations occurred on the right side of the head compared to the left for RA and LP impulses.
These results provide a foundation for designing protocols to optimize stimulation applied to a singular vertical semicircular canal and for interpreting results from the vHIT for vertical semicircular canals.
视频头脉冲测试(vHIT)是一种评估高速脉冲时半规管功能的常用方法。垂直半规管 vHIT 的可靠性尚不确定。垂直头部脉冲需要复杂的头部运动,因此很难隔离单个半规管并解释由此产生的眼球运动。
本研究的目的是提供垂直平面脉冲期间的描述性头部运动学和前庭刺激,最终改善垂直半规管 vHIT 结果的脉冲传递和解释。
六名参与者接受了右前(RA)和左后(LP)半规管脉冲。测量头部的线性位移、旋转位移和旋转速度。从头部运动学中得出半规管平面中的峰值速度和耳石器官处的峰值到峰值重直惯性加速度。
最大的旋转速度发生在目标半规管平面,在非目标平面中也存在不可忽略的速度。与 LP 脉冲相比,RA 脉冲中右侧头部的垂直位移和加速度大于左侧。
这些结果为设计优化刺激施加到单个垂直半规管的方案以及解释垂直半规管 vHIT 结果提供了基础。