NeuroEng@Usach
NeuroEng@Usach
Home
Research
Team
Projects
Publications
Talks
Posts
Popular Topics
Contact
Light
Dark
Automatic
Latest
Protective Mechanisms in Retinal Aging: The Role of XBP1s in Alzheimer's Disease Mouse Models
The Impact of High-Frequency-Based Stability on the Onset of Action Potentials in Neuron Models
La retina como ventana al cerebro: Aplicación de algoritmos de complejidad para la detección de enfermedades neurodegenerativas
ANID Fondecyt Regular 1241202: Analysis of electrophysiological retinal signals using biological complexity in Alzheimer's disease patients
La retina como ventana al cerebro: Aplicación de algoritmos de complejidad para la detección de enfermedades neurodegenerativas
Towards a more accurate quasi-static approximation of the electric potential for neurostimulation with kilohertz-frequency sources*
La retina como ventana al cerebro: Aplicación de algoritmos de complejidad para la detección de enfermedades neurodegenerativas
Análisis de complejidad de señales biológicas: Aplicación a la detección de enfermedades neurodegenerativas a través del ojo
Complexity analyses of biological signals for detection of Alzheimer’s disease through the eye
Complexity analyses of biological signals: application to neurodegenerative disease detection through the eye
A partially averaged system to model neuron responses to interferential current stimulation
An automatic method for detection of evoked events in the brain during spinal cord stimulation
Approximation and stability results for the parabolic FitzHugh-Nagumo system with combined rapidly oscillating sources
ANID Exploración 13220082: Looking through the window: A novel complexity-based electroretinogram analysis for neurodegenerative disease diagnosis
ANID Fomento a la Vinculación Internacional
Slow Inactivation of Fast Sodium Channels Mediates Accommodation of Nerve Fiber Activity During Kilohertz-Frequency Spinal Cord Stimulation
An automatic method for detection of evoked events in the brain during spinal cord stimulation
Multiscale Entropy Analysis of Biomedical Signals
Trabajo de complejidad para identificación de Alzheimer destacado en CNN-Chile, Chilevisión y otros
Multiscale Entropy Analysis of Retinal Signals Reveals Reduced Complexity in a Mouse Model of Alzheimer's Disease
Pasantía EPFL
Multi-Scale Entropy Analysis of Retinal Signals in an Animal Model of Alzheimer’s Disease
Teoría de la complejidad en sistemas biológicos
Neuroingeniería en la Usach
Complexity analysis in electrophysiological signals
Medicina Bioeléctrica Computacional
Design of a Low Cost Neuromuscular Blockade Monitoring Device
Design of a low-cost neuromuscular blockade monitoring device
Millennium Nucleus for Applied Control and Inverse Problems (NCN19_161)
Invasive brain-machine interfaces
Nerve fiber modeling
Noninvasive Electrical Stimulation of the Spinal Cord for Pain Management
Fondecyt 11190822: Model-based analysis of a novel modality of spinal cord stimulation for the treatment of chronic pain
Creating a neuroprosthesis for active tactile exploration of textures
A DSGC-SAC Network Model of Direction Selectivity in the Mammalian Retina
CINV Postdoctoral Fellowship: An integrated biophysical network model of motion direction selectivity in the mammalian retina
Nerve excitation using an amplitude-modulated signal with kilohertz-frequency carrier and non-zero offset
Quantification of Dorsal Column Fiber Responses in a Model of Kilohertz-Frequency Spinal Cord Stimulation
Quantitative Analysis of Kilohertz-Frequency Neurostimulation
Effects of frequency-dependent membrane capacitance on neural excitability
Mammalian Motor Nerve Fibers, Models of
Phantom Model of Transcutaneous Electrical Stimulation with Kilohertz Signals
Volume conductor model of transcutaneous electrical stimulation with kilohertz signals.
Duke University/Stryker Corp. Model-based Analysis and Desing of Therapy
Circuit and volume conductor models of transcutaneous electrical stimulation
Stochastic Facilitation of Artificial Tactile Sensation in Primates
A critical experimental study of the classical tactile threshold theory.
Coincidence-enhanced stochastic resonance: Experimental evidence challenges the psychophysical theory behind stochastic resonance
Linear versus nonlinear neural modeling for 2-D pattern recognition
Cite
×