神经形态工程学
计算机科学
人工智能
视皮层
视觉感受
稳健性(进化)
感知
计算机体系结构
人工神经网络
神经科学
生物
生物化学
基因
作者
Shirui Zhu,Tao Xie,Ziyu Lv,Yan‐Bing Leng,Yuqi Zhang,Runze Xu,Jingrun Qin,Ye Zhou,Vellaisamy A. L. Roy,Su‐Ting Han
标识
DOI:10.1002/adma.202301986
摘要
Abstract The development of artificial intelligence has posed a challenge to machine vision based on conventional complementary metal‐oxide semiconductor (CMOS) circuits owing to its high latency and inefficient power consumption originating from the data shuffling between memory and computation units. Gaining more insights into the function of every part of the visual pathway for visual perception can bring the capabilities of machine vision in terms of robustness and generality. Hardware acceleration of more energy‐efficient and biorealistic artificial vision highly necessitates neuromorphic devices and circuits that are able to mimic the function of each part of the visual pathway. In this paper, we review the structure and function of the entire class of visual neurons from the retina to the primate visual cortex within reach (Chapter 2) are reviewed. Based on the extraction of biological principles, the recent hardware‐implemented visual neurons located in different parts of the visual pathway are discussed in detail in Chapters 3 and 4. Furthermore, valuable applications of inspired artificial vision in different scenarios (Chapter 5) are provided. The functional description of the visual pathway and its inspired neuromorphic devices/circuits are expected to provide valuable insights for the design of next‐generation artificial visual perception systems.
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