An Analog VLSI System for Stereoscopic Vision

An Analog VLSI System for Stereoscopic Vision
复制标题

用于立体视觉的模拟 VLSI 系统

DOI:
10.1007/978-1-4615-2724-4
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发表时间:
1994
期刊:
影响因子:
3
通讯作者:
M. Mahowald
M. Mahowald
中科院分区:
医学4区
文献类型:
--
作者:
M. Mahowald

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前言。序言。1:合成。2、硅视网膜2.1.解剖模型。2.2.硅视网膜的结构。2.3.光感受器。2.4.水平细胞。2.5.双极细胞。2.6.信息处理的物理限制。2.7.紧急财产。3、硅视神经3.1.现有技术的总结。3.2.地址-事件表示。3.3.数据传输定时效率模型。3.4.一维数据传输。3.5.二维视网膜接收系统。3.6.地址事件的优势。4:立体视觉。4.1.立体对应。4.2.神经生理学。4.3.立体对应算法。4.4.立体对应芯片4.5.实验4.6.立体对应作为皮质功能的模型。5.系统。A:简单的电路。A.1.晶体管。A.2.目前的镜子。A.3.差分对。A.4.跨导放大器。A.5.低通滤波器A.6.电阻。参考书目。指数.
Foreword. Preface. 1: Synthesis. 2: The Silicon Retina. 2.1. Anatomical Models. 2.2. Architecture of the Silicon Retina. 2.3. Photoreceptors. 2.4. Horizontal Cells. 2.5. Bipolar Cells. 2.6. Physical Constraints on Information Processing. 2.7. Emergent Properties. 3: The Silicon Optic Nerve. 3.1. Summary of Existing Techniques. 3.2. Address-Event Representation. 3.3. Model of Data-Transfer Timing Efficiency. 3.4. Data Transfer in One Dimension. 3.5. Two-Dimensional Retina--Receiver System. 3.6. Advantages of Address Events. 4: Stereopsis. 4.1. Stereocorrespondence. 4.2. Neurophysiology. 4.3. Stereocorrespondence Algorithms. 4.4. Stereocorrespondence Chip. 4.5. Experiments. 4.6. Stereocorrespondence as a Model of Cortical Function. 5: System. A: Simple Circuits. A.1. Transistors. A.2. Current Mirrors. A.3. Differential Pairs. A.4. Transconductance Amplifiers. A.5. Low-Pass Filter. A.6. Resistor. Bibliography. Index.