Biomedical Engineering Reference
In-Depth Information
18. DiFrancesco D (1995) The pacemaker current (I(f)) plays an important role in regulating
SA node pacemaker activity. Cardiovasc Res 30(2):307-308
19. Echt DS, Liebson PR, Mitchell LB et al (1991) Mortality and morbidity in patients
receiving encainide, flecainide, or placebo. The cardiac arrhythmia suppression trial. N
Engl J Med 324(12):781-788
20. Falk RH (2001) Atrial fibrillation. N Engl J Med 344(14):1067-1078
21. Gerecht-Nir S, Itskovitz-Eldor J (2004) Cell therapy using human embryonic stem cells.
Transpl Immunol 12(3-4):203- 209
22. Gibson AJ, Karasinski J, Relvas J et al (1995) Dermal fibroblasts convert to a myogenic
lineage in mdx mouse muscle. J Cell Sci 108(Pt 1):207-214
23. Gussoni E, Bennett RR, Muskiewicz KR et al (2002) Long-term persistence of donor
nuclei in a Duchenne muscular dystrophy patient receiving bone marrow transplantation. J
Clin Invest 110(6):807-814
24. He JQ, Ma Y, Lee Y, Thomson JA, Kamp TJ (2003) Human embryonic stem cells develop into
multiple types of cardiac myocytes: action potential characterization. Circ Res 93(1):32-39
25. Heginbotham L, Lu Z, Abramson T, MacKinnon R (1994) Mutations in the K+ channel
signature sequence. Biophys J 66(4):1061-1067
26. Herskowitz I (1987) Functional inactivation of genes by dominant negative mutations.
Nature 329(6136):219-222
27. Hirano Y, Hiraoka M (1988) Barium-induced automatic activity in isolated ventricular
myocytes from guinea-pig hearts. J Physiol 395:455-472
28. Hoffman LM, Carpenter MK (2005) Characterization and culture of human embryonic
stem cells. Nat Biotechnol 23(6):699-708
29. Hoppe UC, Jansen E, Sudkamp M, Beuckelmann DJ (1998) Hyperpolarization-activated
inward current in ventricular myocytes from normal, failing human hearts. Circulation
97(1):55-65
30. Hoppe UC, Johns DC, Marban E, O'Rourke B (1999) Manipulation of cellular excitability
by cell fusion: effects of rapid introduction of transient outward K+ current on the guinea
pig action potential. Circ Res 84(8):964-972
31. Imoto Y, Ehara T, Matsuura H (1987) Voltage-and time-dependent block of iK1
underlying Ba2+-induced ventricular automaticity. Am J Physiol 252(2 Pt 2):H325-H333
32. Irisawa H, Brown HF, Giles W (1993) Cardiac pacemaking in the sinoatrial node. Physiol
Rev 73(1):197-227
33. Jalife J, Sicouri S, Delmar M, Michaels DC (1989) Electrical uncoupling and impulse
propagation in isolated sheep Purkinje fibers. Am J Physiol 257(1 Pt 2):H179-H189
34. Kashiwakura Y, Cho HC, Azene E, Marban E (2005) Creation of a synthetic pacemaker
channel. Circulation 114(16):1682-1686
35. Kehat I, Kenyagin-Karsenti D, Snir M et al (2001) Human embryonic stem cells can
differentiate into myocytes with structural and functional properties of cardiomyocytes. J
Clin Invest 108(3):407-414
36. Kehat I, Khimovich L, Caspi O et al (2004) Electromechanical integration of cardiomyocytes
derived from human embryonic stem cells. Nat Biotechnol 22(10):1282-1289
37. Kohl P (2003) Heterogeneous cell coupling in the heart: an electrophysiological role for
fibroblasts. Circ Res 93(5):381-383
38. KuboY, Baldwin TJ, Jan YN, Jan LY (1993) Primary structure and functional expression
of a mouse inward rectifier potassium channel. Nature 362(6416):127-133
39. Kusumoto FM, Goldschlager N (1996) Cardiac pacing. N Engl J Med 334(2):89-97
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