(Body surface, map or mapping) and (BSM-STUDY Retrospective Studies MI-DIAGNOSTIC)

J Electrocardiol 1984 Jan;17(1):47-54.
Relation between the location of the infarcted area in body surface isopotential mapping and the location of myocardial infarction in vectorcardiography.
Suzuki K, Toyama S, Yoshino K, Fudemoto Y,
NIL

J Electrocardiol 1984 Jan;17(1):7-13.
A comparative study of body surface isopotential mapping and the electrocardiogram in diagnosing of myocardial infarction.
Toyama S, Suzuki K, Yoshino K, Fujimoto K,
NIL

Am J Cardiol 1987 Dec 1;60(16):1230-8.
Qualitative and quantitative analysis of characteristic body surface potential map features in anterior and inferior myocardial infarction.
Kornreich F, Montague TJ, Kavadias M, Segers J, Rautaharju PM, Horacek MB, Taccardi B,
Unit for Cardiovascular Research and Engineering, Free University of Brussels, Belgium.

J Electrocardiol 1992;25 Suppl:15-9.
Location and magnitude of ST changes in acute myocardial infarction by analysis of body surface potential maps.
Kornreich F, Montague TJ, Rautaharju PM,
Unit for Cardiovascular Research and Engineering, Free University Brussels (VUB), Belgium.

Circulation 1993 Mar;87(3):773-82.
Body surface potential mapping of ST segment changes in acute myocardial infarction. Implications for ECG enrollment criteria for thrombolytic therapy.
Kornreich F, Montague TJ, Rautaharju PM,
Unit for Cardiovascular Research and Engineering, Free University Brussels, Belgium.

J Electrocardiol 1999 Apr;32(2):123-36.
QRST integral analysis of body surface electrocardiographic mapping for assessing exercise-induced changes in the spatial distribution of local repolarization properties in patients with coronary artery disease and in patients with previous anterior infarction.
Miyakoda H, Kinugawa T, Ogino K, Mori M, Endo A, Kato M, Kato T, Osaki S, Hisatome I, Shigemasa C,
First Department of Internal Medicine, Faculty of Medicine, Tottori University, Yonago, Japan.

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