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1 regulating SERCA activity in fast-twitch and atrial muscle.
2 f the SAN periphery to drive the surrounding atrial muscle.
3  a specialized interface between the SAN and atrial muscle.
4 otential from the SA node to the surrounding atrial muscle.
5 nomic effects of elevated thyroid hormone on atrial muscle.
6 s) is a major electrical coupling protein in atrial muscle.
7  matrix can remodel beta(2)-AR signalling in atrial muscle.
8 ermediate between that of the SAN center and atrial muscle.
9  SAN is significantly different from that of atrial muscle.
10  of cMLCK expression in both ventricular and atrial muscles.
11  the transcripts studied between the SAN and atrial muscle, and cluster analysis showed that the tran
12 phery is adapted to protect center and drive atrial muscle as well as pacemaking) and the aim was to
13  expressed in the SAN periphery (as it is in atrial muscle), but not in the SAN center, and this is p
14 rast, a similar reduction in Cx43 content in atrial muscle has no effect on atrial conduction, sugges
15 d thereby Ca(2+) influx and release in human atrial muscle, hence limiting the susceptibility to arrh
16 e present throughout the sinoatrial node and atrial muscle, however, at one month Cx43 protein was no
17 ion mapping revealed evidence of a sleeve of atrial muscle in the vein.
18 hat Purkinje fibers up-regulate skeletal and atrial muscle myosin heavy chains, connexin-42, and neur
19          Thermocouples were implanted in the atrial muscle of the PV orifice.
20 I/R (from 35% of control to 75.8% in treated atrial muscle; P < 0.01).
21     For the SAN to show pacemaking and drive atrial muscle, theoretically, there should be a gradient
22 are apparent isoform switches on moving from atrial muscle to the SAN center: RYR2 to RYR3, Na(v)1.5

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