University of Wisconsin-Madison, USA.
Hum Factors. 2024 Feb;66(2):470-489. doi: 10.1177/00187208221093829. Epub 2022 May 12.
The effect of camera viewpoint was studied when performing visually obstructed psychomotor targeting tasks.
Previous research in laparoscopy and robotic teleoperation found that complex perceptual-motor adaptations associated with misaligned viewpoints corresponded to degraded performance in manipulation. Because optimal camera positioning is often unavailable in restricted environments, alternative viewpoints that might mitigate performance effects are not obvious.
A virtual keyboard-controlled targeting task was remotely distributed to workers of Amazon Mechanical Turk. The experiment was performed by 192 subjects for a static viewpoint with independent parameters of target direction, Fitts' law index of difficulty, viewpoint azimuthal angle (AA), and viewpoint polar angle (PA). A dynamic viewpoint experiment was also performed by 112 subjects in which the viewpoint AA changed after every trial.
AA and target direction had significant effects on performance for the static viewpoint experiment. Movement time and travel distance increased while AA increased until there was a discrete improvement in performance for 180°. Increasing AA from 225° to 315° linearly decreased movement time and distance. There were significant main effects of current AA and magnitude of transition for the dynamic viewpoint experiment. Orthogonal direction and no-change viewpoint transitions least affected performance.
Viewpoint selection should aim to minimize associated rotations within the manipulation plane when performing targeting tasks whether implementing a static or dynamic viewing solution. Because PA rotations had negligible performance effects, PA adjustments may extend the space of viable viewpoints.
These results can inform viewpoint selection for visual feedback during psychomotor tasks.
研究在进行视觉受阻心理运动目标定位任务时,摄像机视角的影响。
先前在腹腔镜和机器人遥操作中的研究发现,与视轴不对准相关的复杂感知运动适应对应于操作性能的降低。由于在受限环境中通常无法获得最佳的摄像机定位,因此不明显的替代视角可能会减轻性能影响。
通过亚马逊 Mechanical Turk 的远程工人远程分配虚拟键盘控制的目标定位任务。该实验由 192 名受试者完成,具有独立的目标方向、Fitts 定律难度指数、视角方位角(AA)和视角极角(PA)参数的静态视角。还通过 112 名受试者进行了动态视角实验,其中每个试验后 AA 会改变。
AA 和目标方向对静态视角实验的性能有显著影响。随着 AA 的增加,运动时间和行程增加,直到 180°时性能有明显提高。将 AA 从 225°增加到 315°会线性降低运动时间和距离。对于动态视角实验,当前 AA 和过渡幅度有显著的主要影响。正交方向和不变视点过渡对性能的影响最小。
在进行目标定位任务时,无论采用静态还是动态视图解决方案,视点选择都应旨在最小化操作平面内的相关旋转。由于 PA 旋转对性能的影响可以忽略不计,因此 PA 调整可能会扩展可行视点的空间。
这些结果可以为心理运动任务中的视觉反馈提供视点选择的信息。