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Real-time object tracking based on scale-invariant features employing bio-inspired hardware.

, , , and . Neural Networks, (2016)

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Real-time object tracking based on scale-invariant features employing bio-inspired hardware., , , and . Neural Networks, (2016)Real-time robot vision for collision avoidance inspired by neuronal circuits of insects., and . IROS, page 1302-1307. IEEE, (2007)A Robot Vision System for Collision Avoidance Using a Bio-inspired Algorithm., and . ICONIP (2), volume 4985 of Lecture Notes in Computer Science, page 107-116. Springer, (2007)A hardware system for emulating the early vision utilizing a silicon retina and SpiNNaker chips., , , and . BioCAS, page 552-555. IEEE, (2014)A mixed analog-digital vision sensor for detecting objects approaching on a collision course., and . Robotics Auton. Syst., 57 (5): 508-516 (2009)A Visual Feature Detection Algorithm Inspired by Spatio-Temporal Properties of Visual Neurons., and . ICONIP (4), volume 13111 of Lecture Notes in Computer Science, page 634-643. Springer, (2021)A Retino-Morphic Hardware System Simulating the Graded and Action Potentials in Retinal Neuronal Layers., , , , and . ICONIP (2), volume 9948 of Lecture Notes in Computer Science, page 326-333. (2016)FPGA implementation of an algorithm that enables color constancy., and . SII, page 991-995. IEEE, (2020)Real-Time Emulator for Reproducing Graded Potentials in Vertebrate Retina., , , and . IEEE Trans. Biomed. Circuits Syst., 9 (2): 284-295 (2015)Live demonstration: A hardware system for emulating the early vision utilizing a silicon retina and SpiNNaker chips., , , and . BioCAS, page 188. IEEE, (2014)