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Assessment of visual function in blind mice and monkeys with subretinally implanted nanowire arrays as artificial photoreceptors

  • Ruyi Yang
  • , Peng Zhao
  • , Liyang Wang
  • , Chenli Feng
  • , Chen Peng
  • , Zhexuan Wang
  • , Yingying Zhang
  • , Minqian Shen
  • , Kaiwen Shi
  • , Shijun Weng
  • , Chunqiong Dong
  • , Fu Zeng
  • , Tianyun Zhang
  • , Xingdong Chen
  • , Shuiyuan Wang
  • , Yiheng Wang
  • , Yuanyuan Luo
  • , Qingyuan Chen
  • , Yuqing Chen
  • , Chengyong Jiang
  • Shanshan Jia, Zhaofei Yu, Jian Liu, Fei Wang, Su Jiang, Wendong Xu, Liang Li, Gang Wang, Xiaofen Mo, Gengfeng Zheng, Aihua Chen, Xingtao Zhou, Chunhui Jiang*, Yuanzhi Yuan*, Biao Yan*, Jiayi Zhang*
*此作品的通讯作者
  • Fudan University
  • East China Normal University
  • Peking University
  • University of Birmingham
  • Beijing Institute of Basic Medical Sciences

科研成果: 期刊稿件文章同行评审

摘要

Retinal prostheses could restore image-forming vision in conditions of photoreceptor degeneration. However, contrast sensitivity and visual acuity are often insufficient. Here we report the performance, in mice and monkeys with induced photoreceptor degeneration, of subretinally implanted gold-nanoparticle-coated titania nanowire arrays providing a spatial resolution of 77.5 μm and a temporal resolution of 3.92 Hz in ex vivo retinas (as determined by patch-clamp recording of retinal ganglion cells). In blind mice, the arrays allowed for the detection of drifting gratings and flashing objects at light-intensity thresholds of 15.70–18.09 μW mm–2, and offered visual acuities of 0.3–0.4 cycles per degree, as determined by recordings of visually evoked potentials and optomotor-response tests. In monkeys, the arrays were stable for 54 weeks, allowed for the detection of a 10-μW mm–2 beam of light (0.5° in beam angle) in visually guided saccade experiments, and induced plastic changes in the primary visual cortex, as indicated by long-term in vivo calcium imaging. Nanomaterials as artificial photoreceptors may ameliorate visual deficits in patients with photoreceptor degeneration.

源语言英语
页(从-至)1018-1039
页数22
期刊Nature Biomedical Engineering
8
8
DOI
出版状态已出版 - 8月 2024

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