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A polymer optoelectronic interface restores light sensitivity in blind rat retinas

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TLDR
It is demonstrated that this bio-organic interface restored light sensitivity in explants of rat retinas with light-induced photoreceptor degeneration, suggesting that all-organic devices may play an important future role in sub-retinal prosthetic implants.
Abstract
Interfacing organic electronics with biological substrates offers new possibilities for biotechnology by taking advantage of the beneficial properties exhibited by organic conducting polymers. These polymers have been used for cellular interfaces in several applications, including cellular scaffolds, neural probes, biosensors and actuators for drug release. Recently, an organic photovoltaic blend has been used for neuronal stimulation via a photo-excitation process. Here, we document the use of a single-component organic film of poly(3-hexylthiophene) (P3HT) to trigger neuronal firing upon illumination. Moreover, we demonstrate that this bio–organic interface restores light sensitivity in explants of rat retinas with lightinduced photoreceptor degeneration. These findings suggest that all-organic devices may play an important future role in subretinal prosthetic implants.

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Electronic Skin: Recent Progress and Future Prospects for Skin‐Attachable Devices for Health Monitoring, Robotics, and Prosthetics

TL;DR: Recent progress in electronic skin or e‐skin research is broadly reviewed, focusing on technologies needed in three main applications: skin‐attachable electronics, robotics, and prosthetics.
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Organic Photodiodes: The Future of Full Color Detection and Image Sensing

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Organic Bioelectronics: Bridging the Signaling Gap between Biology and Technology.

TL;DR: The field of organic bioelectronics is introduced, from its early breakthroughs to its current results and future challenges, and is maturing toward applications ranging from life sciences to the clinic.
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Next-generation probes, particles, and proteins for neural interfacing

TL;DR: This Review describes how the understanding of neural signaling and material-tissue interactions has fueled the expansion of the available tool set and will support new neurotherapies and prostheses and provide neuroscientists and neurologists with unprecedented access to the brain.
References
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Journal ArticleDOI

Restoration of vision after transplantation of photoreceptors

TL;DR: Evidence of functional rod-mediated vision after photoreceptor transplantation in adult Gnat1−/− mice is provided and it is demonstrated that visual signals generated by transplanted rods are projected to higher visual areas, including V1.
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Restoration of grasp following paralysis through brain-controlled stimulation of muscles

TL;DR: This work has developed an FES system in primates that is controlled by recordings made from microelectrodes permanently implanted in the brain, and expects that in human patients, this neuroprosthesis would allow much more flexible and dexterous use of the hand than is possible with existing FES systems.
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Maximum permissible exposures for ocular safety (ANSI 2000), with emphasis on ophthalmic devices.

TL;DR: In this paper, the authors present a concise formulation of the exposure limits expressed as maximum permissible radiant exposure (in J/cm2) for light overfilling the pupil of the human eye.
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Treatment of motor and non-motor features of Parkinson's disease with deep brain stimulation.

TL;DR: Some non-motor symptoms improve after DBS, partly because of motor benefit or reduction of drug treatment, and partly as a direct effect of stimulation.
Journal ArticleDOI

Photovoltaic retinal prosthesis with high pixel density

TL;DR: A photovoltaic subretinal prosthesis is presented, in which silicon photodiodes in each pixel receive power and data directly through pulsed near-infrared illumination and electrically stimulate neurons.
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