Udaya Bhaskar Rongala
Udaya Bhaskar Rongala
Neural Basis of Sensorimotor Control. Lund University
Verified email at med.lu.se
Cited by
Cited by
Piezoelectric energy harvesting solutions
R Caliò, UB Rongala, D Camboni, M Milazzo, C Stefanini, G De Petris, ...
Sensors 14 (3), 4755-4790, 2014
Neuromorphic artificial touch for categorization of naturalistic textures
UB Rongala, A Mazzoni, CM Oddo
IEEE transactions on neural networks and learning systems 28 (4), 819-829, 2015
Intracellular dynamics in cuneate nucleus neurons support self-stabilizing learning of generalizable tactile representations
UB Rongala, A Spanne, A Mazzoni, F Bengtsson, CM Oddo, H Jörntell
Frontiers in cellular neuroscience 12, 210, 2018
Neuromorphic artificial sense of touch: bridging robotics and neuroscience
UB Rongala, A Mazzoni, D Camboni, MC Carrozza, CM Oddo
Robotics Research, 617-630, 2018
Tactile decoding of edge orientation with artificial cuneate neurons in dynamic conditions
UB Rongala, A Mazzoni, M Chiurazzi, D Camboni, M Milazzo, L Massari, ...
Frontiers in neurorobotics 13, 44, 2019
Identification of slippage on naturalistic surfaces via wavelet transform of tactile signals
RA Romeo, UB Rongala, A Mazzoni, D Camboni, MC Carrozza, ...
IEEE Sensors Journal 19 (4), 1260-1268, 2018
Decoding of naturalistic textures from spike patterns of neuromorphic artificial mechanoreceptors
A Mazzoni, UB Rongala, CM Oddo
BMC neuroscience 16 (1), 1-2, 2015
Cuneate spiking neural network learning to classify naturalistic texture stimuli under varying sensing conditions
UB Rongala, A Mazzoni, A Spanne, H Jörntell, CM Oddo
Neural Networks 123, 273-287, 2020
26th annual computational neuroscience meeting (CNS* 2017): Part 3
AJH Newton, AH Seidenstein, RA McDougal, A Pérez-Cervera, G Huguet, ...
BMC neuroscience 18 (1), 1-82, 2017
A non-spiking neuron model with dynamic leak to avoid instability in recurrent networks
UB Rongala, JMD Enander, M Kohler, GE Loeb, H Jörntell
bioRxiv, 2020
Neurocomputational Modelling of Tactile Perception for the Development of Artificial Sense of Touch.
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