Pacemaking in cardiac tissue. From IK2 to a coupled‐clock system

E Carmeliet - Physiological Reports, 2019 - Wiley Online Library
Initially, diastolic depolarization in Purkinje fibers was explained by deactivation of gK2 in
the presence of inward current. Weakness of the hypothesis was a too negative reversal …

Pacemaking in cardiac tissue. From IK2 to a coupled-clock system

E Carmeliet - Physiological reports, 2019 - pubmed.ncbi.nlm.nih.gov
Initially, diastolic depolarization in Purkinje fibers was explained by deactivation of gK2 in
the presence of inward current. Weakness of the hypothesis was a too negative reversal …

Pacemaking in cardiac tissue. From IK2 to a coupled‐clock system

E Carmeliet - Physiological Reports, 2019 - search.proquest.com
Initially, diastolic depolarization in Purkinje fibers was explained by deactivation of gK2 in
the presence of inward current. Weakness of the hypothesis was a too negative reversal …

[引用][C] Pacemaking in cardiac tissue. From IK2 to a coupled-clock system

E Carmeliet - Physiological Reports, 2019 - cir.nii.ac.jp

[HTML][HTML] Pacemaking in cardiac tissue. From IK2 to a coupled‐clock system

E Carmeliet - Physiological Reports, 2019 - ncbi.nlm.nih.gov
Initially, diastolic depolarization in Purkinje fibers was explained by deactivation of gK2 in
the presence of inward current. Weakness of the hypothesis was a too negative reversal …

Pacemaking in cardiac tissue. From IK2 to a coupled-clock system.

E Carmeliet - Physiological Reports, 2019 - europepmc.org
Initially, diastolic depolarization in Purkinje fibers was explained by deactivation of gK2 in
the presence of inward current. Weakness of the hypothesis was a too negative reversal …