Enhancing prosthetic vision by upgrade of a subretinal photovoltaic implant in situ

M Mohajeet B. Bhuckory (Hansen Experimental Physics Laboratory, Stanford University) N Nicharee Monkongpitukkul A Andrew Shin A Anna Kochnev Goldstein (Department of Electrical Engineering, Stanford University) N Nathan Jensen (Department of Electrical Engineering, Stanford University) S Sarthak V. Shah D Davis Pham-Howard (Hansen Experimental Physics Laboratory, Stanford University) E Emma Butt R Roopa Dalal L Ludwig Galambos K Keith Mathieson T Theodore Kamins D Daniel Palanker (Hansen Experimental Physics Laboratory, Stanford University)

Abstract

Abstract In patients with atrophic age-related macular degeneration, subretinal photovoltaic implant (PRIMA) provided visual acuity up to 20/440, matching its 100 µm pixels size. Next-generation implants with smaller pixels should significantly improve the acuity. This study in rats evaluates removal of a subretinal implant, replacement with a newer device, and the resulting grating acuity in-vivo. Six weeks after the initial implantation with planar and 3-dimensional devices, the retina was re-detached, and the devices were successfully removed. Histology demonstrated a preserved inner nuclear layer. Re-implantation of new devices into the same location demonstrated retinal re-attachment to a new implant. New devices with 22 µm pixels increased the grating acuity from the 100 µm capability of PRIMA implants to 28 µm, reaching the limit of natural resolution in rats. Reimplanted devices exhibited the same stimulation threshold as for the first implantation of the same implants in a control group. This study demonstrates the feasibility of safely upgrading the subretinal photovoltaic implants to improve prosthetic visual acuity.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

M

Mohajeet B. Bhuckory

Hansen Experimental Physics Laboratory, Stanford University

N

Nicharee Monkongpitukkul

A

Andrew Shin

A

Anna Kochnev Goldstein

Department of Electrical Engineering, Stanford University

N

Nathan Jensen

Department of Electrical Engineering, Stanford University

S

Sarthak V. Shah

D

Davis Pham-Howard

Hansen Experimental Physics Laboratory, Stanford University

E

Emma Butt

R

Roopa Dalal

L

Ludwig Galambos

K

Keith Mathieson

T

Theodore Kamins

D

Daniel Palanker

Hansen Experimental Physics Laboratory, Stanford University