Chauvette Loonan, Leprohon Eliane, Perron-Houle Louis-Philippe, Pintat Valentin, Delnavaz Aidin, Voix Jeremie, Sharp Andreanne
IEEE Trans Haptics. 2024 Oct-Dec;17(4):913-923. doi: 10.1109/TOH.2024.3475740. Epub 2024 Dec 19.
There is a growing interest in using the tactile modality as a compensation or sensory augmentation tool in various fields. The Multichannel Vibrotactile Glove was designed to meet the needs of these diverse disciplines and overcome the limitations of current sound-to-touch technologies. Using 12 independent haptic exciters on each finger's back and on the palm, the device can convey acoustic information to cutaneous vibrotactile receptors with precise control of the location, frequency, timing, and intensity. A staircase method was used to model vibration detection thresholds at six frequencies (100, 200, 250, 500, 800, 1000 Hertz) for each actuator position (All, Thumb, Index, Major, Middle, Pinky, Palm) and both hands (Right, Left). No between hand difference was observed and all finger actuators provided consistent thresholds, except for the Palm which exhibited higher thresholds. Spatial summation effects were observed when all actuators were activated simultaneously. Detection thresholds significantly increased at 100 Hertz and above 500 Hertz. These findings confirm that the system provides uniform stimulation across hands and actuators. Overall, the Multichannel Vibrotactile Glove provides the freedom to send various acoustic features to individual actuators, providing a versatile tool for research and a potential technology to substitute, compensate, or extend sensory perception.
在各个领域中,将触觉模态用作补偿或感官增强工具的兴趣与日俱增。多通道振动触觉手套的设计旨在满足这些不同学科的需求,并克服当前声触技术的局限性。该设备在每个手指背部和手掌上使用12个独立的触觉激励器,能够通过对位置、频率、时间和强度的精确控制,将声学信息传递给皮肤振动触觉感受器。采用阶梯法对每个致动器位置(全部、拇指、食指、中指、无名指、小指、手掌)和双手(右手、左手)在六个频率(100、200、250、500、800、1000赫兹)下的振动检测阈值进行建模。未观察到双手之间的差异,除手掌的阈值较高外,所有手指致动器的阈值均一致。当所有致动器同时激活时,观察到空间总和效应。在100赫兹及500赫兹以上,检测阈值显著增加。这些发现证实该系统能够在双手和致动器之间提供均匀的刺激。总体而言,多通道振动触觉手套能够灵活地向各个致动器发送各种声学特征,为研究提供了一种多功能工具,并成为一种替代、补偿或扩展感官感知的潜在技术。