Pitt Shield

Ultrasound stimulation for non-invasive visual prostheses.

Authors: Badadhe JD, Roh H, Lee BC, Kim JH, Im M

Globally, it is estimated there are more than 2.2 billion visually impaired people. Visual diseases such as retinitis pigmentosa, age-related macular degeneration, glaucoma, and optic neuritis can cause irreversible profound vision loss. Many groups have investigated different approaches such as microelectronic prostheses, optogenetics, stem cell therapy, and gene therapy to restore vision. However, these methods have some limitations such as invasive implantation surgery and unknown long-term risk of genetic manipulation. In addition to the safety of ultrasound as a medical imaging modality, ultrasound stimulation can be a viable non-invasive alternative approach for the sight restoration because of its ability to non-invasively control neuronal activities. Indeed, recent studies have demonstrated ultrasound stimulation can successfully modulate retinal/brain neuronal activities without causing any damage to the nerve cells. Superior penetration depth and high spatial resolution of focused ultrasound can open a new avenue in neuromodulation researches. This review summarizes the latest research results about neural responses to ultrasound stimulation. Also, this work provides an overview of technical viewpoints in the future design of a miniaturized ultrasound transducer for a non-invasive acoustic visual prosthesis for non-surgical and painless restoration of vision.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To review recent research on ultrasound stimulation for vision restoration and discuss future perspectives on developing non-invasive acoustic visual prostheses.
Disease model Visual impairment / vision loss (retinitis pigmentosa, age-related macular degeneration, glaucoma, optic neuritis)

Outcomes and Safety

Summary of Outcomes Ultrasound stimulation (UST) can non-invasively modulate retinal and brain neuronal activity and may partially restore or interfere with impaired visual functions without causing neuronal damage, though in vivo vision-restoration demonstrations are limited and mechanisms remain unclear. The review does not report specific focused-ultrasound parameter sets (e.g., frequencies, intensities, pulse paradigms) identified as successful.
Safety-related matter The review states ultrasound stimulation is non-invasive and has been shown in animal and human studies to modulate retinal/brain neurons without causing damage to nerve cells, suggesting no reported adverse effects; however, long-term tissue interactions, the biological transduction mechanism, and in vivo vision-restoration evidence remain incompletely understood and require further study.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics focal depth: None, focal length: None, aperture size: None

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