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(3)
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No matching items.
Sarcoplasmic reticulum calcium content fluctuation is the key to cardiac alternans.
Mary E D�az
,
Stephen C O'Neill
, and
David A Eisner
.
Circ. Res.
94(5):650--656
(
March 2004
)
Mary E D�az
,
Stephen C O'Neill
, and
David A Eisner
.
Circ. Res.
94(5):650--656
(
March 2004
)
4 years ago
by
hake
1
15031268
Action
Adaptation,
Animals,
Arrhythmia,
Artificial,
Biochemical,
Calc,
Calcium
Calcium,
Cardiac
Cardiac,
Cardiovascular,
Channel
Channel,
Channels,
Conduction
Contraction,
Feedback,
Fluid,
Gating,
Gov't,
Heart
Heart,
Humans,
Intracellular
Ion
Models,
Muscle,
Myocardial
Myocardium,
Myocytes,
Non-U.S.
Pacing,
Physiological,
Potentials,
Pulse,
Rate,
Rats,
Receptor
Release
Release,
Research
Reticulum,
Ryanodine
Sarcolemma,
Sarcoplasmic
Signaling,
Skeletal,
Support,
System,
Ventricles,
Wistar,
ium
15031268
Action
Adaptation,
Animals,
Arrhythmia,
Artificial,
Biochemical,
Calc,
Calcium
Calcium,
Cardiac
Cardiac,
Cardiovascular,
Channel
Channel,
Channels,
Conduction
Contraction,
Feedback,
Fluid,
Gating,
Gov't,
Heart
Heart,
Humans,
Intracellular
Ion
Models,
Muscle,
Myocardial
Myocardium,
Myocytes,
Non-U.S.
Pacing,
Physiological,
Potentials,
Pulse,
Rate,
Rats,
Receptor
Release
Release,
Research
Reticulum,
Ryanodine
Sarcolemma,
Sarcoplasmic
Signaling,
Skeletal,
Support,
System,
Ventricles,
Wistar,
ium
URL
DOI
TeX
Stability and instability of regulation of intracellular calcium.
D. A. Eisner
,
M. E. Diaz
,
Y. Li
,
S. C. O'Neill
, and
A. W. Trafford
.
Exp Physiol
90(1):3--12
(
January 2005
)
D. A. Eisner
,
M. E. Diaz
,
Y. Li
,
S. C. O'Neill
, and
A. W. Trafford
.
Exp Physiol
90(1):3--12
(
January 2005
)
4 years ago
by
hake
1
15572459
Adaptation,
Animals,
Arrhythmia,
Calc,
Calcium,
Channel
Channels,
Conduction
Fluid,
Gating,
Heart
Heart,
Humans,
Intracellular
Ion
Muscle,
Physiological,
Reticulum,
Sarcoplasmic
Skeletal,
System,
ium
15572459
Adaptation,
Animals,
Arrhythmia,
Calc,
Calcium,
Channel
Channels,
Conduction
Fluid,
Gating,
Heart
Heart,
Humans,
Intracellular
Ion
Muscle,
Physiological,
Reticulum,
Sarcoplasmic
Skeletal,
System,
ium
URL
DOI
TeX
Physiological and pathological modulation of ryanodine receptor function in cardiac muscle.
D. A. Eisner
,
M. E. D�az
,
S. C. O'Neill
, and
A. W. Trafford
.
Cell Calcium
35(6):583--589
(
June 2004
)
D. A. Eisner
,
M. E. D�az
,
S. C. O'Neill
, and
A. W. Trafford
.
Cell Calcium
35(6):583--589
(
June 2004
)
4 years ago
by
hake
1
15110148
Adaptation,
Animals,
Arrhythmia,
Calc,
Calcium
Calcium,
Channel
Channel,
Channels,
Conduction
Contraction,
Fluid,
Gating,
Gov't,
Heart
Heart,
Humans,
Intracellular
Ion
Muscle,
Myocardial
Myocardium,
Non-U.S.
Physiological,
Receptor
Release
Research
Reticulum,
Ryanodine
Sarcoplasmic
Skeletal,
Support,
System,
ium
15110148
Adaptation,
Animals,
Arrhythmia,
Calc,
Calcium
Calcium,
Channel
Channel,
Channels,
Conduction
Contraction,
Fluid,
Gating,
Gov't,
Heart
Heart,
Humans,
Intracellular
Ion
Muscle,
Myocardial
Myocardium,
Non-U.S.
Physiological,
Receptor
Release
Research
Reticulum,
Ryanodine
Sarcoplasmic
Skeletal,
Support,
System,
ium
URL
DOI
TeX
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