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question:how-do-ion-channels-and-bioelectric-gradients-contributeHow Do Ion Channels And Bioelectric Gradients Contribute
Related by similarity (8)
cosine ≥ 0.65 · no typed edgeEntities in the same semantic neighborhood but without a typed relation to this one — candidates for new edges or unrecognized duplicates.
- Ion channels enable electrical communication in bacterial communities (Prindle et al. 2015)finding0.808Bacteria use similar bioelectric mechanisms to metazoans to coordinate collective behavior.
- Cellular machinery controlling resting potential and voltage dynamics; manipulable via drugs or optogenetics to modulate morphogenetic outcomes.
- Evidence that pre-neural bioelectric infrastructure predates and likely precedes neurobiology; supports continuity of intelligence across substrates.
Cross-corpus bridges (4)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbHow do ion channels and bioelectric gradients contribute to morphogenetic information beyond their role in neurophysiology?questions/how-do-ion-channels-and-bioelectric-gradients-contribute.md0.851
- aboutblank_kbBioelectric Signaling Frameworkframeworks/bioelectric-signaling-framework.md0.822
- aboutblank_kbBioelectric Codeframeworks/bioelectric-code.md0.819
- aboutblank_kbIon Channelsconcepts/biology/ion-channels.md0.806