Endogenous bioelectric signaling networks: exploiting voltage gradients for control of growth and form

M Levin, G Pezzulo… - Annual review of …, 2017 - annualreviews.org
Living systems exhibit remarkable abilities to self-assemble, regenerate, and remodel
complex shapes. How cellular networks construct and repair specific anatomical outcomes …

[HTML][HTML] Endogenous Bioelectric Signaling Networks: Exploiting Voltage Gradients for Control of Growth and Form

M Levin, G Pezzulo, JM Finkelstein - Annual review of biomedical …, 2017 - ncbi.nlm.nih.gov
Living systems exhibit remarkable abilities to self-assemble, regenerate, and remodel
complex shapes. How cellular networks construct and repair specific anatomical outcomes …

Endogenous Bioelectric Signaling Networks: Exploiting Voltage Gradients for Control of Growth and Form

M Levin, G Pezzulo, JM Finkelstein - Annual Review of Biomedical …, 2017 - cir.nii.ac.jp
抄録< jats: p> Living systems exhibit remarkable abilities to self-assemble, regenerate, and
remodel complex shapes. How cellular networks construct and repair specific anatomical …

Endogenous Bioelectric Signaling Networks: Exploiting Voltage Gradients for Control of Growth and Form.

M Levin, G Pezzulo, JM Finkelstein - Annual Review of Biomedical …, 2017 - europepmc.org
Living systems exhibit remarkable abilities to self-assemble, regenerate, and remodel
complex shapes. How cellular networks construct and repair specific anatomical outcomes …

Endogenous Bioelectric Signaling Networks: Exploiting Voltage Gradients for Control of Growth and Form

M Levin, G Pezzulo… - Annual review of …, 2017 - pubmed.ncbi.nlm.nih.gov
Living systems exhibit remarkable abilities to self-assemble, regenerate, and remodel
complex shapes. How cellular networks construct and repair specific anatomical outcomes …