# Effectiveness of a Single Functional Neurology Intervention on Primitive Reflex Integration Dysfunction in Children

**Authors:** Jorge Rey‐Mota, Guillermo Escribano‐Colmena, Athanasios A. Dalamitros, David Martín‐Caro Álvarez, Vicente Javier Clemente‐Suárez

PMC · DOI: 10.1002/ccr3.70797 · Clinical Case Reports · 2025-08-14

## TL;DR

A single functional neurology session helped a child integrate retained reflexes, improving motor and cognitive abilities.

## Contribution

Demonstrates functional neurology's potential in treating neurodevelopmental issues through reflex integration.

## Key findings

- A single functional neurology session integrated multiple retained primitive reflexes in a child.
- The intervention improved motor coordination and cognitive function in the child.
- This case suggests functional neurology is a promising approach for neurodevelopmental challenges.

## Abstract

A single session of functional neurology led to the integration of multiple retained primitive reflexes in a child, resulting in improved motor coordination and cognitive function. This case highlights functional neurology as a promising treatment for neurodevelopmental challenges.

## Full-text entities

- **Genes:** TAMALIN (trafficking regulator and scaffold protein tamalin) [NCBI Gene 160622] {aka GRASP}
- **Diseases:** depression (MESH:D003866), balance problems (MESH:D019973), developmental delays (MESH:D002658), poor motor coordination (MESH:D001259), psychological dysfunctions (MESH:D020018), ADHD (MESH:D001289), learning disabilities (MESH:D007859), neurological dysfunctions (MESH:D009461), PRID (MESH:D000081042), cerebral palsy (MESH:D002547), Autism Spectrum Disorder (MESH:D000067877), central nervous system dysfunction (MESH:D002493)
- **Species:** Homo sapiens (human, species) [taxon 9606]

## Full text

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## References

17 references — full list in the complete paper: https://tomesphere.com/paper/PMC12353875/full.md

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Source: https://tomesphere.com/paper/PMC12353875