neuropsych-battery-selector

Select neuropsychological test batteries matched to cognitive deficit profiles and referral questions.

269|20|Updated Jun 13, 2026
One-click install
npx skills add https://github.com/NeuroAIHub/BrainPilot --skill neuropsych-battery-selector
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: neuropsych-battery-selector
Source: https://github.com/NeuroAIHub/BrainPilot/tree/main/packages/skills/skills/10_Clinical_Neuropsychology/neuropsych-battery-selector
Command: npx skills add https://github.com/NeuroAIHub/BrainPilot --skill neuropsych-battery-selector

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill requires research-literacy, and includes references (resource) components.

What problem does it solve?

This skill addresses the clinical complexity of selecting appropriate neuropsychological test batteries, preventing errors caused by improper test matching, redundant testing, or failure to account for specific referral questions and patient demographics.

Core Features & Use Cases

  • Evidence-Based Battery Assembly: Generates tailored test batteries based on referral types like dementia differential, TBI evaluation, or pre-surgical workups.
  • Domain-Specific Logic: Ensures coverage of essential cognitive domains while managing fatigue and practice effects.
  • Use Case: A researcher needs to design a 3-hour battery for a suspected Alzheimer's patient; this skill provides a validated selection of memory, executive, and language tests while advising on appropriate normative data.

Quick Start

Use the neuropsych-battery-selector skill to assemble a core battery for a suspected dementia differential diagnosis referral.

Frequently Asked Questions about neuropsych-battery-selector

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

FAQPage Schema
How do I select a neuropsychological test battery for a dementia differential diagnosis referral?

Selecting a neuropsychological test battery requires matching the referral type to domain-specific tests, ensuring coverage of cognitive deficits while managing patient fatigue and practice effects. This approach provides evidence-based battery assembly validated for clinical neuroscience research.

What cognitive domains should a neuropsychological test battery cover for TBI evaluation?

A neuropsychological test battery for TBI evaluation should cover essential cognitive domains mapped to the referral question, utilizing domain-specific logic to manage fatigue and practice effects. This ensures comprehensive cognitive assessment while maintaining test validity.

Can I use this approach to design a neuropsychological battery for pre-surgical workups?

Yes, you can design a neuropsychological battery for pre-surgical workups by using domain-validated decision logic to map referral types to standardized test batteries. This ensures appropriate test matching tailored to specific patient demographics and clinical methodology planning requirements.

Do I need research literacy to plan a clinical neuroscience cognitive assessment battery?

Yes, research literacy is required to plan a clinical neuroscience cognitive assessment battery, serving as a prerequisite dependency. It provides the foundational domain knowledge needed to interpret referral questions and apply domain-validated decision logic for test selection.

What is the best way to verify domain coverage and symptom validity in neuropsychological test selection?

The best way to verify domain coverage and symptom validity in neuropsychological test selection is to apply domain-validated decision logic that maps referral types to standardized batteries. This satisfies clinical methodology planning requirements while accounting for normative data and patient-specific variables.

How does normative data factor into neuropsychological test battery selection for specific patient demographics?

Normative data factors into neuropsychological test battery selection by providing domain-validated baselines matched to patient-specific variables. This ensures standardized test batteries accurately reflect cognitive deficit profiles across different demographic groups, preventing errors caused by improper test matching.