published-canonicalconceptmaha-epistemic/1.0

Micro ECoG arrays

Micro ECoG arrays is represented as one reviewable unit in the Neurotechnology and BCI graph. Its source, locator, scope, uncertainty, and prohibited inference remain attached to the claim rather than being generalized across the domain.

Bounded definition

A source-bounded concept record for micro ecog arrays within neurotechnology and bci.

What the cited work establishes

The study reports a flexible high-density cortical electrode array and animal-model recordings.

Limited to Array architecture, conformal placement, multiplexing, in-vivo mapping, and Methods. in “Flexible, foldable, actively multiplexed, high-density electrode array for mapping brain activity in vivo”; this candidate records the concept boundary and does not pool results from uncited systems or studies.

Claims: urn:maha:claim:neurotechnology-bci-micro-ecog-arrays

What remains a separate question

Micro ECoG arrays does not by itself establish system-level performance, safety, manufacturability, scalability, economic advantage, clinical benefit, or deployment readiness.

An acute or model-system demonstration does not establish long-term human safety or clinical efficacy.

Connected domain graph

Typed dependencies preserve publication state.

Only independently canonical records receive public links and relation statements. Draft graph topology remains private.

mechanistic dependencycanonical

Spike sorting boundaries

outbound connection · comparison

Micro ECoG arrays is positioned after Spike sorting boundaries in this bounded dependency sequence; the edge is navigational and does not assert equivalence or causation beyond the cited source scope.

strategic dependencycanonical

Neuropixels CMOS probe

outbound connection · concept

Micro ECoG arrays is connected to the cohort root so source, measurement, and readiness boundaries can be traversed without collapsing them.

Claim ledger

Every proposition keeps its own evidence state.

theoretical-modelsingle-study

The cited source supports treating micro ecog arrays as a distinct concept within the stated neurotechnology and bci scope.

Scope
Limited to Array architecture, conformal placement, multiplexing, in-vivo mapping, and Methods. in “Flexible, foldable, actively multiplexed, high-density electrode array for mapping brain activity in vivo”; this candidate records the concept boundary and does not pool results from uncited systems or studies.
Boundary
Micro ECoG arrays does not by itself establish system-level performance, safety, manufacturability, scalability, economic advantage, clinical benefit, or deployment readiness.
Uncertainty
No cross-source quantitative interval is asserted. Definitions, operating conditions, samples, instruments, and outcome measures must be checked against the exact cited locator during review.
Replication
Independent replication and cross-platform transfer have not been compiled for this candidate; the evidence maturity refers only to the bounded source contract.

Primary sources

Citation, locator, rights, and boundary travel together.

  1. Source 1 · Nature Neuroscience

    Flexible, foldable, actively multiplexed, high-density electrode array for mapping brain activity in vivo

    Jonathan Viventi, Dae-Hyeong Kim, Jon D. Moss, et al.

    Exact locator
    Array architecture, conformal placement, multiplexing, in-vivo mapping, and Methods.
    Establishes
    The study reports a flexible high-density cortical electrode array and animal-model recordings.
    Boundary
    An acute or model-system demonstration does not establish long-term human safety or clinical efficacy.
    Rights basis
    citation with paraphrase · The candidate uses original boundary language and a short paraphrase linked to the cited source. No source passage, figure, or table is reproduced.