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用于高时空分辨率视觉恢复的非侵入性超声视网膜刺激

Noninvasive Ultrasound Retinal Stimulation for Vision Restoration at High Spatiotemporal Resolution.

作者信息

Qian Xuejun, Lu Gengxi, Thomas Biju B, Li Runze, Chen Xiaoyang, Shung K Kirk, Humayun Mark, Zhou Qifa

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089, USA.

Department of Ophthalmology, University of Southern California, Los Angeles, CA 90033, USA.

出版信息

BME Front. 2022 Feb 21;2022:9829316. doi: 10.34133/2022/9829316. eCollection 2022.

Abstract

. Retinal degeneration involving progressive deterioration and loss of function of photoreceptors is a major cause of permanent vision loss worldwide. Strategies to treat these incurable conditions incorporate retinal prostheses via electrically stimulating surviving retinal neurons with implanted devices in the eye, optogenetic therapy, and sonogenetic therapy. Existing challenges of these strategies include invasive manner, complex implantation surgeries, and risky gene therapy. . Here, we show that direct ultrasound stimulation on the retina can evoke neuron activities from the visual centers including the superior colliculus and the primary visual cortex (V1), in either normal-sighted or retinal degenerated blind rats . The neuron activities induced by the customized spherically focused 3.1 MHz ultrasound transducer have shown both good spatial resolution of 250 m and temporal resolution of 5 Hz in the rat visual centers. An additional customized 4.4 MHz helical transducer was further implemented to generate a static stimulation pattern of letter forms. . Our findings demonstrate that ultrasound stimulation of the retina is a safe and effective approach with high spatiotemporal resolution, indicating a promising future of ultrasound stimulation as a novel and noninvasive visual prosthesis for translational applications in blind patients.

摘要

视网膜变性涉及光感受器功能的进行性恶化和丧失,是全球永久性视力丧失的主要原因。治疗这些无法治愈疾病的策略包括通过植入眼内的装置对存活的视网膜神经元进行电刺激的视网膜假体、光遗传学疗法和声遗传学疗法。这些策略目前面临的挑战包括侵入性方式、复杂的植入手术以及有风险的基因治疗。在这里,我们表明,直接对视网膜进行超声刺激可以在视力正常或视网膜退化的盲鼠中,从包括上丘和初级视觉皮层(V1)在内的视觉中枢诱发神经元活动。定制的球形聚焦3.1兆赫超声换能器诱导的神经元活动在大鼠视觉中枢显示出250微米的良好空间分辨率和5赫兹的时间分辨率。另外还采用了定制的4.4兆赫螺旋换能器来生成字母形式的静态刺激模式。我们的研究结果表明,视网膜超声刺激是一种具有高时空分辨率的安全有效方法,这表明超声刺激作为一种新型无创视觉假体在盲人患者中进行转化应用有着广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8202/10521738/4d52b57c0740/9829316.fig.001.jpg

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