Real-time analysis of intracranial neurophysiology recordings.
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Updated
Feb 4, 2026 - Python
Real-time analysis of intracranial neurophysiology recordings.
Transcranial Temporal Interference Stimulation (tTIS) simulation and optimization software.
Python port of the PARRM algorithm for removing periodic artefacts from signals.
Python library for real-time neural data classification with Deep Learning
Deep brain stimulation outcome prediction using radiomics on quantitative susceptibility maps
System for wireless deep brain stimulation
Model of Motor Network during Parkinson's Disease and Deep Brain Stimulation. The model simulates LFP, EMG and associated force signals from the motor system. A multivariable adaptive control strategy is implemented in the model to control two biomarkers of Parkinsonian tremor and motor impairment symptoms.
Periodic artifact removal algorithms that can remove periodic artifacts in the presence of unknown phase shifts and with applications to deep brain stimulation.
Spectral vision transformer for efficient tokenization with limited data
Network Model of the Cortical Basal Ganglia during Parkinson's Disease and Deep Brain Stimulation
ML-STIM: Machine Learning for SubThalamic nucleus Intraoperative Mapping
Um copiloto de IA para a família e o médico cuidarem melhor de quem você ama (Parkinson + DBS). Template open-source, sem dados de paciente.
Replication of published adaptive DBS RL papers on one shared Kumaravelu parkinsonian plant: Gymnasium environment, per-paper controllers (DDPG, DSQN, SEA-DBS), benchmarking, cross-controller comparison, fusion, and modularity.
Gerster et al. 2025. "Beyond beta rhythms: Subthalamic aperiodic broadband power reflects Parkinson’s disease severity–a multicenter study."
NeuroLens is a personal research website documenting her journey into neuroscience and neurotechnology. Driven by two deeply personal diagnoses, her maternal grandfather's Parkinson's disease and her paternal grandfather's Alzheimer's, she explores the science, technology, and unanswered questions at the frontier of brain research.
Stimulation reshapes the pain-symptom architecture in Parkinson disease: a target-trial-emulation matched longitudinal PPMI cohort. Pacheco-Barrios & Rolston, 2026.
Automated Subthalamic Nucleus (STN) segmentation pipeline for Deep Brain Stimulation planning. Right STN DSC = 0.808 — surpassing nnU-Net.
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