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Assimilation of virtual legs and perception of floor texture by complete paraplegic patients receiving artificial tactile feedback

机译:完全的截瘫患者接受人工触觉反馈吸收虚拟腿部并感知地板纹理

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摘要

Spinal cord injuries disrupt bidirectional communication between the patient’s brain and body. Here, we demonstrate a new approach for reproducing lower limb somatosensory feedback in paraplegics by remapping missing leg/foot tactile sensations onto the skin of patients’ forearms. A portable haptic display was tested in eight patients in a setup where the lower limbs were simulated using immersive virtual reality (VR). For six out of eight patients, the haptic display induced the realistic illusion of walking on three different types of floor surfaces: beach sand, a paved street or grass. Additionally, patients experienced the movements of the virtual legs during the swing phase or the sensation of the foot rolling on the floor while walking. Relying solely on this tactile feedback, patients reported the position of the avatar leg during virtual walking. Crossmodal interference between vision of the virtual legs and tactile feedback revealed that patients assimilated the virtual lower limbs as if they were their own legs. We propose that the addition of tactile feedback to neuroprosthetic devices is essential to restore a full lower limb perceptual experience in spinal cord injury (SCI) patients, and will ultimately, lead to a higher rate of prosthetic acceptance/use and a better level of motor proficiency.
机译:脊髓损伤破坏了患者大脑与身体之间的双向通讯。在这里,我们通过将缺失的腿/脚触觉重新映射到患者前臂的皮肤上,展示了一种在截瘫患者中再现下肢体感反馈的新方法。在使用沉浸式虚拟现实(VR)模拟下肢的设置中,对八名患者的便携式触觉显示器进行了测试。在八分之六的患者中,触觉显示引起了在三种不同类型的地面上行走的真实幻觉:沙滩,铺砌的街道或草地。此外,患者在摆动阶段会经历虚拟腿的运动,或者在步行时会感到脚在地板上滚动的感觉。仅依靠这种触觉反馈,患者报告了虚拟行走过程中化身腿的位置。虚拟腿的视觉与触觉反馈之间的交叉模态干扰表明,患者吸收了虚拟的下肢,就像他们自己的腿一样。我们建议在神经修复设备中增加触觉反馈对于恢复脊髓损伤(SCI)患者的下肢完全知觉体验至关重要,并且最终将导致更高的修复接受率/使用率和更好的运动水平熟练程度。

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