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1.
APL Bioeng ; 7(4): 046105, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37886014

RESUMO

Organic semiconductors are being explored as retinal prosthetics with the prime attributes of bio-compatibility and conformability for seamless integration with the retina. These polymer-based artificial photoreceptor films are self-powered with light-induced signal strength sufficient to elicit neuronal firing events. The molecular aspect of these semiconductors provides wide spectral tunability. Here, we present results from a bulk heterostructure semiconductor blend with a wide spectral response range. This combination elicits clear spiking activity from a developing blind-chick embryonic retina in the subretinal configuration in response to white light. The response is largely triggered by the blue-green spectral regime rather than the red-NIR regime for the present polymer semiconductor layer attributes.

2.
J Neural Eng ; 19(3)2022 05 27.
Artigo em Inglês | MEDLINE | ID: mdl-35561667

RESUMO

Optoelectronic semiconducting polymer material interfaced with a blind-developing chick-retina (E13-E18) in subretinal configuration reveals a response to full-field flash stimulus that resembles an elicited response from natural photoreceptors in a neonatal chick retina. The response manifests as evoked-firing of action potentials and was recorded using a multi-electrode array in contact with the retinal ganglion layer. Characteristics of increasing features in the signal unfold during different retina-development stages and highlight the emerging network mediated pathways typically present in the vision process of the artificial photoreceptor interfaced retina.


Assuntos
Polímeros , Retina , Potenciais de Ação , Humanos , Recém-Nascido , Células Fotorreceptoras , Retina/fisiologia , Células Ganglionares da Retina/fisiologia
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