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1.
J Cardiol Cases ; 25(6): 404-407, 2022 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-35685265

RESUMEN

A 78-year-old man suffering from epigastric discomfort presented with an initial electrocardiogram showing complete right bundle branch block (RBBB) and ST-segment depression continuing to positive symmetrical T waves in leads V2 to V4, suggestive of de Winter's pattern. Emergent coronary angiography demonstrated 2-vessel disease with 90% stenosis in the proximal segment of the left anterior descending artery (LAD) with Thrombolysis in Myocardial Infarction (TIMI) grade 3 flow, and 75% in the mid portion and 90% in the distal portion of the right coronary artery, without collateral flow to LAD. A drug-eluting stent was deployed at the proximal LAD, and the flow of the diagonal branch deteriorated to TIMI grade 1 flow on the final angiogram. De Winter's pattern temporarily disappeared, and the procedure was finished. However, when the patient was admitted to the coronary care unit, de Winter's pattern emerged again with less severe epigastric discomfort. Subsequently, chest X-ray showed pulmonary edema in both lungs. Repeat angiography revealed acute stent thrombosis of LAD with TIMI grade 1 flow. De Winter's pattern with the combination of RBBB can be observed not only on admission but also at the time of occurrence of stent thrombosis. .

2.
J Cardiol Cases ; 17(3): 92-95, 2018 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-30279864

RESUMEN

Management of in-stent restenosis (ISR) remains challenging even in the drug-eluting stent era. We report the case of a Japanese female with repeated ISR after primary percutaneous coronary intervention (PCI) for acute coronary syndrome. We observed ISR tissue with "black hole" on intravascular ultrasound, which appeared to be heterogeneous tissue on optical frequency-domain imaging (OFDI). Paclitaxel-coated balloon dilatation of the ISR lesion with "black hole" was ineffective. The morphological assessment of ISR tissue using OFDI might be important to treat ISR lesions by PCI. OFDI is a novel tool to observe the difference in the in-stent tissue characteristics. .

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