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优化电刺激参数以增强视网膜变性大鼠的视觉皮层激活

Optimizing electrical stimulation parameters to enhance visual cortex activation in retina degeneration rats.

作者信息

Xie Hui, Ye Zixin, Chan Leanne Lai Hang

机构信息

Department of Electrical Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong SAR, China.

Department of Clinical Research and Development, Antengene Corporation Limited, Shanghai, China.

出版信息

Sci Rep. 2025 Jul 17;15(1):25918. doi: 10.1038/s41598-025-08657-0.

Abstract

In patients with degenerative retinal diseases such as retinitis pigmentosa and age-related macular degeneration, retinal prostheses offer a promising approach to restoring partial vision. Among these, epiretinal prostheses have shown encouraging preliminary clinical efficacy; however, optimizing stimulation parameters remains essential for improving efficiency and reducing power consumption. In this study, we investigated the effects of key electrical stimulation parameters- phase duration, frequency, and interphase interval (IPI) -on visual cortical electrically evoked potentials (EEPs) in both healthy Long-Evans (LE) rats and retinal degenerated (F1) rats. Our in vivo experiments on both LE and F1 rats revealed that shorter phase durations (500 µs) elicited activation in the primary visual cortex (V1) at lower charge thresholds. Our results also showed that responses to repetitive stimulation were significantly attenuated at high frequencies (10 and 20 Hz) compared to low frequency stimulation (1 Hz). Furthermore, we observed that longer phase durations (1000 and 1500 µs), as well as the inclusion of an IPI, resulted in a more confined spread of cortical activation. These findings suggest that adjusting phase duration can effectively reduce activation thresholds and spatially constrain cortical responses, and application of IPI can limit the extension of cortical responses, offering a potential strategy for enhancing the performance of epiretinal prostheses.

摘要

在患有视网膜色素变性和年龄相关性黄斑变性等退行性视网膜疾病的患者中,视网膜假体为恢复部分视力提供了一种有前景的方法。其中,视网膜外假体已显示出令人鼓舞的初步临床疗效;然而,优化刺激参数对于提高效率和降低功耗仍然至关重要。在本研究中,我们调查了关键电刺激参数——相位持续时间、频率和相间间隔(IPI)——对健康的长 Evans(LE)大鼠和视网膜退化(F1)大鼠视觉皮层电诱发电位(EEP)的影响。我们对 LE 和 F1 大鼠进行的体内实验表明,较短的相位持续时间(500 微秒)在较低的电荷阈值下能引起初级视觉皮层(V1)的激活。我们的结果还表明,与低频刺激(1 赫兹)相比,高频(10 和 20 赫兹)重复刺激的反应明显减弱。此外,我们观察到较长的相位持续时间(1000 和 1500 微秒)以及加入 IPI 会导致皮层激活的扩散更局限。这些发现表明,调整相位持续时间可以有效降低激活阈值并在空间上限制皮层反应,而应用 IPI 可以限制皮层反应的扩展,为提高视网膜外假体的性能提供了一种潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/186c/12271465/604cd07c7ff1/41598_2025_8657_Fig1_HTML.jpg

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