Retinal degenerative diseases of photoreceptors are a leading cause of blindness with no effective treatment. Retinal prostheses aim to restore sight by stimulating residual retinal cells. Here, we present a photoacoustic retinal stimulation technology. We designed a polydimethylsiloxane and carbon-based flexible film that converts near-infrared laser pulses into a localized acoustic field with 56-μm lateral resolution, allowing precise stimulation of mechanosensitive retinal cells. This photoacoustic stimulation robustly and locally modulated retinal ganglion cell activity in both wild-type and degenerated ex vivo rat retinae. In animals subretinally implanted with a millimeter-sized photoacoustic film , pulsed laser stimulation generated neural modulation along the visual pathway to the superior colliculus, as measured by functional ultrasound imaging. The biosafety of the film was confirmed by the absence of short-term adverse effects , while local thermal increases were measured below 1 °C. These findings demonstrate the potential of photoacoustic stimulation for high-acuity visual restoration in blind patients.
A flexible photoacoustic retinal prosthesis.
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作者:Leong Audrey, Li Yueming, Ruikes Thijs R, Voillot Julien, Yuan Yuhao, Chen Guo, Bradic Clémence, Facon Arnaud, Chhuon Chakrya-Anna, Joffrois Corentin, Tessier Gilles, Cornebois Marion, Dégardin Julie, Louise Jean-Damien, Cheng Ji-Xin, Yang Chen, Moulet Hélène, Picaud Serge
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Aug 14 |
| doi: | 10.1101/2024.09.03.611068 | ||
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