神经形态工程学
光电探测器
像素
图像传感器
材料科学
光探测
数字光处理
生物相容性材料
计算机视觉
灵敏度(控制系统)
光电子学
计算机科学
人工智能
电极阵列
探测器
发光二极管
RGB颜色模型
光学
光电二极管
电极
传感器阵列
图像处理
光强度
灰度
视网膜植入物
信号(编程语言)
彩色滤光片阵列
视网膜
感光度
时滞与积分
电荷耦合器件
点间距
作者
Ebin Joseph,Claudio Leonardi,Luca Di Nunzio,Maria Assunta Ucci,Manuela Ciocca,Paolo Mariani,Suresh Kumar Podapangi,Luigi Angelo Castriotta,Luigi Vesce,Pier Gianni Medaglia,Gian Carlo Cardarilli,Aldo Di Carlo,Hiroki Asari,Antonella Camaioni,Thomas M. Brown
标识
DOI:10.1002/admt.202501461
摘要
Abstract Inspired by animal retina architectures, a proof‐of‐concept hybrid solid–liquid biocompatible image sensor array that integrates biological and artificial photodetection mechanisms is presented. The device comprises 16‐pixel sensors combining printed organic semiconductors, laser‐patterned transparent microelectrodes, and printed platinum reference electrodes within Ames’ medium—an electrically active, water‐based biological electrolyte widely used in retinal research. Fourteen photosensors emulate rod‐like spectra, while a central 2 × 2 photodetector array reproduces the cone‐mediated dichromatic vision sensitivity of mice. Each pixel captures light and converts it into electrical signals through the electrolyte. Color images are generated on a display in real time by processing light‐evoked signals from the array, with rod‐like pixels contributing grayscale contrast proportional to irradiance. Each pixelated sensor unit, consisting of electrode/polymer/retinal‐water‐based‐medium, functions as a true biohybrid photoreceptor, merging biological/artificial and liquid/solid components. The device exhibits tens of millisecond‐scale temporal responses, typical of water‐ionic‐based biological retinas, and sensitivities comparable to solid‐state polymer semiconductor photodetectors. By replicating spectral and temporal responses of natural photoreceptors, along with their characteristic photogenerated electrical signatures, this scalable, biocompatible technology platform bridges living and electronic systems, opening new pathways for understanding the biophysics and engineering of phototransduction in biological liquid environments, artificial vision, adaptive biointerfaces, and neuromorphic sensory processing.
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