# Magnetoelectric Nanoparticle
**Entity class:** Technology, method, or technical system
**Domain:** Neurotechnology / Materials science
**Doc Type:** Developed Technical Node
**Maturity:** Research-stage
**Collection:** [[collections/Neurotech|Neurotech]]
## Definition
A **magnetoelectric nanoparticle** is a nanoscale material engineered to couple magnetic and electric behavior, allowing an external magnetic field to produce a local electrical effect. Neurotechnology research explores whether such particles can support wireless neural sensing or stimulation.
## Significance
The particles are a candidate interface mechanism, not proof of mature brain-wide communication. Their relevance to the home-court article is the frontier where a strategic environment may extend from external sensors and networks toward neural state, intensifying requirements for consent, specificity, safety, provenance, and cognitive liberty.
## Routes
[[wiki/BrainSTORMS|BrainSTORMS]] · [[wiki/Brain-Computer Interfaces|Brain-Computer Interfaces]] · [[wiki/DARPA N3|DARPA N3]] · [[wiki/Multi-Realm Continuum|Multi-Realm Continuum]]
## Source
- [[articles/gamification/America Loves Games and the Home Court Advantage|America Loves Games and the Home Court Advantage]]
## Relationships
<!-- BEGIN HUMANIZED RELATIONSHIPS 2026-09-11 -->
This entry is routed through [[collections/Neurotech|Neurotech]]. Its source context is developed in [[articles/2026 Annual Report on Brain-Computer Interfaces|2026 Annual Report on Brain-Computer Interfaces]], [[articles/Technologies for Consciousness Mapping and Transfer|Technologies for Consciousness Mapping and Transfer]], [[articles/The Next Interface Layer|The Next Interface Layer]], and [[articles/The Architecture of Continuity and Emerging Neuroinformatics Standards|The Architecture of Continuity and Emerging Neuroinformatics Standards]]. Status-qualified source edges are preserved in the terminal Research Edges section.
### Additional Documented Relationships
- [[wiki/Subsense BCI|Subsense BCI]] is associated with **Magnetoelectric Nanoparticle**. Targeted neuromodulation by conversion of applied magnetic fields to local electric effects.
- Computational proposal tied to Parkinson’s stimulation and BBB-scale particles.
<!-- END HUMANIZED RELATIONSHIPS 2026-09-11 -->
## Research Edges
<!-- BEGIN NEUROTECH RELATIONSHIP GRAPH 2026-09-10 -->
#### Master relationship graph patch — 2026-09-10
**Resolved aliases:** `magnetoelectric nanoparticles (MENPs)`
**Collection:** [[collections/Neurotech|Neurotech]]
**Relationship source:** [[research/Neurotechnology Ecosystem Relationship Graph - 2026-09-10|Neurotechnology Ecosystem Relationship Graph — 2026-09-10]]
**Related source articles:** [[articles/The Architecture of Continuity and Emerging Neuroinformatics Standards|The Architecture of Continuity and Emerging Neuroinformatics Standards]] · [[articles/2026 Annual Report on Brain-Computer Interfaces|2026 Annual Report on Brain-Computer Interfaces]] · [[articles/The Organic-Synthetic Brain Atlas|The Organic-Synthetic Brain Atlas]]
#### Outgoing typed edges
- **Edge 58 — `early_BCI_proposal` → [[wiki/Magneto-Electric Nano-Particles for Non-Invasive Brain Stimulation|2012 PLOS ONE magneto-electric nanoparticle brain stimulation study]]** — **VERIFIED**; evidence `MENP_2012`. Computational proposal tied to Parkinson’s stimulation and BBB-scale particles.
#### Incoming typed edges
- **Edge 15 — [[wiki/Subsense BCI|Subsense]] `platform_contains` → this entry** — **VERIFIED**; evidence `SUB_TECH`. Targeted neuromodulation by conversion of applied magnetic fields to local electric effects.
- **Edge 20 — [[wiki/Subsense BCI|Subsense]] `uses_write_modality` → this entry** — **VERIFIED**; evidence `SUB_TECH`. MENP stimulation.
<!-- END NEUROTECH RELATIONSHIP GRAPH 2026-09-10 -->