(Body surface, map or mapping) and (BSM-STUDY INVASIVE-CONTROL SCINTIGRAPHY)

Jpn Circ J 1980 Mar;44(3):197-208.
Diagnostic value of body surface map in myocardial infarction: assessment of location, size and ejection fraction as compared with coronary cineangiography and 201Tl myocardial scintigraphy.
Hayashi H, Watanabe Y, Ishikawa T, Wada M, Uematsu H, Inagaki H,
NIL

Jpn Circ J 1981 Oct;45(10):1203-7.
Exercise stress body surface isopotential map in patients with coronary artery disease: comparison with coronary angiographic and stress myocardial perfusion scintigraphic findings.
Wada M, Kaneko K, Teshigawara H, Kondo T, Ohashi S, Miyagi Y, Nomura M, Okajima S, Hishida H, Takeuchi A, Mizuno Y,
NIL

Clin Invest Med 1985;8(1):68-77.
Myocardial infarction diagnosis with body surface potential mapping, electrocardiography, vectorcardiography and thallium-201 scintigraphy: a correlative study with left ventriculography.
Ackaoui A, Nadeau R, Sestier F, Savard P, Primeau R, Lemieux R, Descary MC,
NIL

Chest 1985 Dec;88(6):841-8.
Indirect measurement of infarct size. Correlative variability of enzyme, radionuclear angiographic, and body-surface-map variables in 34 patients during the acute phase of first myocardial infarction.
McPherson DD, Horacek BM, Spencer CA, Johnstone DE, Lalonde LD, Cousins CL, Montague TJ,
NIL

Am J Cardiol 1986 Dec 1;58(13):1173-80.
Non-Q-wave acute myocardial infarction: body surface potential map and ventriculographic patterns.
Montague TJ, Johnstone DE, Spencer CA, Lalonde LD, Gardner MJ, O'Reilly MG, Horacek BM,
NIL

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