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Biomedical subjects

C Malmejac

Publications and source records attributed to C Malmejac.

At least 37 records · Page 2Linked to original sources

[Unstable angina and single vessel stenosis of the anterior interventricular artery. Evaluation of the threatened myocardium. Therapeutic implications].

The authors report a special cases of precise evaluation of threatened myocardium during coronaro-ventriculography. Two elements provided this evaluation: 1) spasm in the tight stenosis of the middle part of the anterior interventricular artery with immediate left ventricular dyskinesia (EF: 37%, EDP/EVD: 1.74; EDV: 98 cc/m2). 2) Complete instantaneous recovery after injection of 2 mg of trinitrine into the left ventricle (EF: 69%, EDP/EVD: 4.33; EDV: 28 cc/m2). This loss, in the order of 50%, in the left ventricular function led us to perform an angioplasty (ACT) with success. A further clinical and angiographic stenosis, three months later, in this 72 years old patient with arteritis, led us to perform an aorto-coronary graft, rather than another ACT.

Aged↗

[Hemopericardium after coronary recanalization with streptokinase in the acute phase of myocardial infarction. Drainage and early aortocoronary bypass on the 4th day].

A case of hemopericardium after coronary recanalisation with streptokinase during the acute phase of myocardial infarction is reported, emphasising the value of routine daily echocardiography in all cases of intracoronary thrombolysis. The patient was a 48 year old man with a primary antero-lateral infarct in whom coronary angiography was performed at the 4th hour, showing total proximal obstruction of the left anterior descending artery. The streptokinase protocol of intracoronary thrombolysis was performed, resulting in recanalisation of the left anterior descending artery at the 30th minute. Improved left ventricular function and persistance of coronary patency were confirmed 14 hours after recanalisation. In the following days the patient showed signs of right ventricular failure with successive echocardiogrammes demonstrating an increasing pericardial effusion. On the 4th day, 600 ml of blood were drained surgically and aorto-coronary bypass carried out on the left anterior descending artery. This procedure maintained coronary patency and the improvement in left ventricular function. Several studies have shown that the hemorrhage of reperfusion only occurs in the zones of necrosis, and thrombolytics, especially streptokinase, may aggravate this condition.

Coronary Artery Bypass↗

[Relations between the site of significant monotruncular coronary stenosis and left ventricular function. Therapeutic implications].

The indications of coronary bypass surgery in single vessel disease remain controversial. Therefore, we carried out a retrospective study of the coronary angiogrammes and left ventriculography of 93 patients with single vessel disease (greater than 70 p. 100 stenosis) involving the left anterior descending (LAD) or dominant right coronary arteries (RCA) to evaluate the quantity of myocardium at risk. Five angio-hemodynamic parameters were compared: the ejection fraction (EF), the ratio of end systolic left ventricular pressure to volume (LVESP/LVESV), the velocity of circumferential fibre shortening (VCF), end diastolic volume (EDV) and end systolic volume (ESV). Six subgroups were defined: 28 proximal LAD stenosis (16 without and 12 with myocardial infarction (MI], 37 mid LAD stenosis (20 without and 17 with MI), and 28 RCA stenosis (8 without and 20 with MI). In all, there were 44 single vessel stenoses without MI and 49 with previous necrosis. Left ventricular function was normal in the absence of MI but deteriorated progressively in cases with MI and LAD disease. In cases of proximal LAD stenosis without and with MI, the hemodynamics showed: EF (p. 100) = 67,12 +/- 2,07 leads to 43,83 +/- 4,7 (p less than 0,001); LVESP/LVESV = 3,24 +/- 0,34 leads to 1,92 +/- 0,50 (p less than 0,05); VCF (s-1) = 1,28 +/- 0,05 leads to 0,74 +/- 0,06 (p less than 0,001); in cases of mid LAD stenosis without and with MI: EF = 69,1 +/- 2,08 leads to 45,11 +/- 3,42 (p less than 0,001); LVESP/LVESV = 3,64 +/- 0,39 leads to 1,46 +/- 0,12 (p less than 0,001); VCF = 1,32 +/- 0,008 leads to 0,74 +/- 0,06 (p less than 0,001). In contrast the change in LV function was minimal in patients with necrosis and RCA stenosis: EF = 70,37 +/- 3,85 leads to 56,4 +/- 3,19 (p less than 0,05); LVESP/LVESV = 5,20 +/- 1,83 leads to 2,56 +/- 0,36 (p less than 0,05); VCF less than 1,42 +/- 0,17 leads to 1,03 +/- 0,08 (p less than 0,05).(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗