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| name | brain-stimulation-dynamics-state |
| description | Brain Stimulation Effects on Network Dynamics |
Source: arXiv:2002.00094v2 (February 2020) Utility: 0.90 Journal: PLoS Computational Biology, 16-9 (2020) Authors: Lia Papadopoulos et al.
This skill analyzes how focal brain stimulation effects depend on the collective dynamical state of the network. Key finding: stimulation outcomes vary significantly based on baseline oscillation strength.
Core Insight: Both stimulation site AND network dynamical regime influence network-wide responses to local perturbations.
numpy - Network simulation and matrix operationsscipy - Signal processing and spectral analysisconnectome_data - Structural/functional connectivity matricesbiophysical_model - Neural mass model for oscillatory dynamicsIdentify dynamical regime - Classify baseline oscillation strength (weak vs strong endogenous oscillations)
Predict stimulation effects based on regime:
Analyze network coherence - Compare functional vs structural connectivity predictions
Map downstream effects - Track distributed modifications to baseline oscillation frequencies
User: 我想用 TMS 治疗抑郁症,如何选择最佳刺激位点?
Agent: 使用本技能分析:
User: 刺激前额叶会产生什么样的网络级效应?
Agent: 根据动力学状态预测:
弱振荡状态:
强振荡状态:
| Regime | Baseline Oscillations | Stimulation Effects |
|---|---|---|
| Weak | Low amplitude, irregular | Strong power enhancement, phase locking |
| Strong | High amplitude, synchronized | Minor shifts, homogeneous effects |
Local perturbation causes:
| Finding | Weak Oscillations | Strong Oscillations |
|---|---|---|
| Power enhancement | Strong | Minor |
| Frequency shift | Significant | Slight |
| Phase locking | Nearby regions | Limited |
| Coherence changes | Functional-predicted | Homogeneous |
brain-network-controllability - Control theory for brain networksccep-causal-brain-network - Causal connectivity from stimulationtms-eeg-biomarkers - TMS-EEG biomarkers