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首页> 外文期刊>Japanese circulation journal >A reverse flow-metabolism mismatch pattern: a new marker of viable myocardium with greater contractility during dobutamine stress than myocardium with a flow-metabolism mismatch pattern.
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A reverse flow-metabolism mismatch pattern: a new marker of viable myocardium with greater contractility during dobutamine stress than myocardium with a flow-metabolism mismatch pattern.

机译:逆向血流代谢失配模式:一种新的存活心肌标志物,在多巴酚丁胺应激期间比具有血流代谢失配模式的心肌具有更大的收缩性。

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摘要

Few studies have investigated the contractility of myocardium with a reverse flow-metabolism pattern; that is, greater uptake of nitrogen- 13-ammonia (NH3) than fluorine- 18-fluorodeoxyglucose (FDG) on positron emission tomography (PET). This study examined the contraction thickening represented by count increase in ECG-gated FDG-PET of myocardium with a reverse flow-metabolism pattern during low-dose dobutamine stress. Fifty-four patients with myocardial infarction were studied. Relative NH3 and FDG uptake (%NH3, %FDG) and %count increase were measured in 216 apical and 216 lateral segments on ECG-gated FDG-PET. The %count increase during low-dose dobutamine stress was greater in myocardium with a reverse flow-metabolism mismatch pattern than in myocardium with a flow-metabolism mismatch pattern (35.9+/-25.7% vs 24.6+/-15.9%, p=0.0221 in apical segments, and 38.4+/-22.6% vs 27.6+/-18.4%, p=0.0040 in lateral segments) despite smaller %FDG. A reverse flow-metabolism mismatch pattern should be noted as a new marker of viable myocardium with greater contractility during dobutamine stress than myocardium with a flow-metabolism mismatch pattern.
机译:很少有研究以逆流代谢模式研究心肌的收缩性。也就是说,在正电子发射断层显像(PET)上,氮13氨(NH3)的吸收量比氟18氟脱氧葡萄糖(FDG)高。这项研究检查了在低剂量多巴酚丁胺应激期间,心肌ECG门控FDG-PET计数增加所代表的收缩增厚,具有逆向流动代谢模式。研究了54例心肌梗死患者。在ECG门控的FDG-PET的216个心尖和216个外侧段中测量了相对的NH3和FDG摄取(%NH3,%FDG)和%计数增加。在低剂量多巴酚丁胺应激期间,具有反向血流代谢失配模式的心肌的百分数增加比具有血流代谢失配模式的心肌的大(35.9 +/- 25.7%vs 24.6 +/- 15.9%,p = 0.0221)尽管%FDG较小,但在心尖段中的比例为38.4 +/- 22.6%,而在侧段中为27.6 +/- 18.4%,p = 0.0040)。逆流代谢失配模式应被视为多巴酚丁胺应激期间比具有流代谢失配模式的心肌具有更大收缩力的存活心肌的新标志。

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