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Fast simulation of Digital Spiking Silicon Neuron model employing reconfigurable dataflow computing., , , , и . FPT, стр. 478-479. IEEE, (2013)Laguerre-volterra model and architecture for MIMO system identification and output prediction., , , , , и . EMBC, стр. 4539-4542. IEEE, (2014)An FPGA based scalable architecture of a stochastic state point process filter (SSPPF) to track the nonlinear dynamics underlying neural spiking., , , , , , и . Microelectron. J., 45 (6): 690-701 (2014)A hardware-based computational platform for Generalized Laguerre-Volterra MIMO model for neural activities., , , , , и . EMBC, стр. 7282-7285. IEEE, (2011)An FPGA-Based High-Performance Neural Ensemble Spiking Activity Simulator Utilizing Generalized Volterra Kernel and Complexity Analysis., , , , и . Journal of Circuits, Systems, and Computers, 25 (1): 1640004:1-1640004:21 (2016)Parallel architecture for DNA sequence inexact matching with Burrows-Wheeler Transform., , , , , , и . Microelectron. J., 44 (8): 670-682 (2013)A reconfigurable architecture for real-time prediction of neural activity., , , , и . ISCAS, стр. 1869-1872. IEEE, (2013)High-Performance and Scalable System Architecture for the Real-Time Estimation of Generalized Laguerre-Volterra MIMO Model From Neural Population Spiking Activity., , , , , и . IEEE J. Emerg. Sel. Topics Circuits Syst., 1 (4): 489-501 (2011)FPGA Architecture of Generalized Laguerre-Volterra MIMO Model for Neural Population Spiking Activities., , , , , и . FCCM, стр. 254. IEEE Computer Society, (2011)FPGA Architecture of Generalized Laguerre-Volterra MIMO Model for Neural Population Activities., , , , , , и . FPL, стр. 44-49. IEEE Computer Society, (2011)