Neuroimaging Power Guide

Plan neuroimaging study power and sample sizes for fMRI/EEG designs.

34|5|Updated Feb 28, 2026
One-click install
npx skills add https://github.com/HaoxuanLiTHUAI/awesome_cognitive_and_neuroscience_skills --skill neuroimaging-power-guide
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Skill: Neuroimaging Power Guide
Source: https://github.com/HaoxuanLiTHUAI/awesome_cognitive_and_neuroscience_skills/tree/main/skills/neuroimaging-power-guide
Command: npx skills add https://github.com/HaoxuanLiTHUAI/awesome_cognitive_and_neuroscience_skills --skill neuroimaging-power-guide

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes references (resource) components.

What problem does it solve?

Planning and powering neuroimaging studies is complex due to multiple comparisons, variable reliability, and design-dependent effect sizes. This guide provides domain-specific benchmarks and a structured workflow to plan study power for fMRI and EEG.

Core Features & Use Cases

  • Power benchmarks for common designs including within-subject fMRI activation, between-group comparisons, ROI analyses, and ERP studies.
  • Simulation-based and literature-based approaches (e.g., fMRIpower, NeuroPowerTools) to estimate required N under various correction methods.
  • Practical workflows: from pilot data and literature estimates to transparent reporting in grants and manuscripts.

Quick Start

Provide a sample-size estimate for a whole-brain fMRI study given pilot activation maps and the desired power.

Frequently Asked Questions about Neuroimaging Power Guide

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I calculate sample size for an fMRI study with pilot data?▼

To calculate sample size for an fMRI study, apply simulation-based or literature-based approaches using pilot activation maps and domain-specific benchmarks to estimate the required N for your desired power.

What is power analysis for EEG ERP studies and when is it needed?▼

Power analysis for EEG ERP studies estimates the required sample size to detect event-related potential effects reliably, and is needed during study design to ensure sufficient statistical power before data collection.

How do multiple comparison corrections affect neuroimaging power calculations?▼

Multiple comparison corrections affect neuroimaging power calculations by reducing statistical sensitivity, requiring you to estimate required N under various correction methods to maintain adequate power for whole-brain voxelwise analyses.

Can I use this workflow for both whole-brain voxelwise and ROI-based fMRI designs?▼

Yes, you can use this workflow for both whole-brain voxelwise and ROI-based fMRI designs, as it provides power benchmarks and sample size planning tailored to each specific neuroimaging design type.

What is the best way to report neuroimaging power analysis in a grant proposal?▼

The best way to report neuroimaging power analysis in a grant proposal is to follow a structured workflow that transparently documents effect-size selections, reliability considerations, and multiple comparison corrections.

Why does my fMRI sample size estimate vary across different study designs?▼

Your fMRI sample size estimate varies across study designs because effect sizes are design-dependent, meaning within-subject activation, between-group comparisons, and ROI analyses each require distinct domain-specific power benchmarks.