Optical Stimulation and Monitoring of the Peripheral Nervous System: Perspectives and Challenges Toward Clinical Translation

ABSTRACT Restoring sensory feedback in individuals with limb amputation requires the development of neural interfaces able to effectively control the activation of the Peripheral Nervous System (PNS). Conventional stimulation approaches based on electrodes suffer from several limitations such as limited spatial specificity, interference with nearby recordings, and fibrous tissue encapsulation. Optical neuromodulation offers a viable alternative that allows high‐resolution peripheral nerve stimulation without the need for physical contact and without requiring any genetic modification. Infrared (IR) light can directly stimulate neurons through localized transient heating, while visible to near‐IR (NIR) light can activate neurons indirectly via biointerfaces and nanotransducers that enhance selectivity and cell‐specific targeting. In addition to stimulation, optical methods are also used for real‐time and high‐resolution monitoring of neural activity. This work is an all‐around overview of optical stimulation and recording technologies developed in recent years for the PNS, highlighting their mechanisms of action and technological implementations, with a focus on their clinical translation. Overall, optical neural interfaces may expand the capabilities of neuromodulation beyond the limits of traditional electrical approaches, offering potential not only for precise sensory restoration, but also for neural rehabilitation and treatment of both neurological and cardiac disorders.

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Publication Details

Journal
Laser & Photonics Review
Published
2026-09-11
DOI
https://doi.org/10.1002/lpor.71751
Primary Topic
Photoreceptor and optogenetics research
Type
article
Field-Weighted Citation Impact
0.00
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article

Optical Stimulation and Monitoring of the Peripheral Nervous System: Perspectives and Challenges Toward Clinical Translation

Francesca Angelone, Patrizio Vaiano, Cosimo Gentile, Lucia Martini et al.
Laser & Photonics Review
Photoreceptor and optogenetics research
article

Optical Stimulation and Monitoring of the Peripheral Nervous System: Perspectives and Challenges Toward Clinical Translation

Francesca Angelone, Patrizio Vaiano, Cosimo Gentile, Lucia Martini, Alessia La Rocca, G. Prisco, Francesco Amato, Francesco De Rosa, Gianluca Giavaresi, Federica Piccirillo, Pellegrino Lippiello, Sarassunta Ucci, Andrea Cusano, Emanuele Gruppioni, Deyanira Contartese, Silvia Pascarella, Armando Ricciardi, Maria Concetta Miniaci, Milena Fini, Michela Russo, Anna Aliberti
article en

Abstract

ABSTRACT Restoring sensory feedback in individuals with limb amputation requires the development of neural interfaces able to effectively control the activation of the Peripheral Nervous System (PNS). Conventional stimulation approaches based on electrodes suffer from several limitations such as limited spatial specificity, interference with nearby recordings, and fibrous tissue encapsulation. Optical neuromodulation offers a viable alternative that allows high‐resolution peripheral nerve stimulation without the need for physical contact and without requiring any genetic modification. Infrared (IR) light can directly stimulate neurons through localized transient heating, while visible to near‐IR (NIR) light can activate neurons indirectly via biointerfaces and nanotransducers that enhance selectivity and cell‐specific targeting. In addition to stimulation, optical methods are also used for real‐time and high‐resolution monitoring of neural activity. This work is an all‐around overview of optical stimulation and recording technologies developed in recent years for the PNS, highlighting their mechanisms of action and technological implementations, with a focus on their clinical translation. Overall, optical neural interfaces may expand the capabilities of neuromodulation beyond the limits of traditional electrical approaches, offering potential not only for precise sensory restoration, but also for neural rehabilitation and treatment of both neurological and cardiac disorders.

Laser & Photonics Review
University of Molise (IT), University of Sannio (IT), Federico II University Hospital (IT), Istituto Nazionale per l'Assicurazione Contro gli Infortuni sul Lavoro (IT), Istituto Ortopedico Rizzoli (IT), University of Naples Federico II (IT)
Openalex Percentile: Top 16%
Photoreceptor and optogenetics research
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