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◆ European heart journal. Imaging methods and practice2026-08-01

Characterization of intraplaque haemorrhage in statin-treated patients with stable coronary artery disease: multi-modality imaging with non-contrast T1-weighted cardiac magnetic resonance, optical coherence tomography, and near-infrared spectroscopy.

Jun Nakata, Hayato Hosoda, Yu Kataoka, Stephen J Nicholls, Yasutoshi Ota, Yoshiaki Morita, Rishi Puri, Kentaro Mitsui, Kota Murai, Kenichiro Sawada, Takamasa Iwai, Hideo Matama, Satoshi Honda, Masashi Fujino, Kazuhiro Nakao, Kensuke Takagi, Shuichi Yoneda, Fumiyuki Otsuka, Kensaku Nishihira, Itaru Takamisawa, Yasuhide Asaumi, Kazuya Kawai, Teruo Noguchi

一句话结论 · In one sentence

Statin-treated patients still harboured PMR ≥1.0. PAV, LIA, and cholesterol crystal predicted PMR ≥1.0 at both target and non-target lesions. Clustering of these plaque characteristics may enable to better identify intraplaque haemorrhage in vivo.

原始摘要(英文原文)· Original abstract
AIMS: Plaque-to-myocardium ratio (PMR) ≥1.0 on cardiac magnetic resonance (CMR) has been histologically validated to correspond to intraplaque haemorrhage. Despite the use of statins, PMR values remained above 1.0. Detailed plaque features exhibiting residual intraplaque haemorrhage despite statin therapy remains unknown. OBJECTIVES: To characterize features of plaques exhibiting PMR ≥1.0 in statin-treated patients with CAD. METHODS AND RESULTS: Target (n = 161) and non-target (n = 142) lesions in 121 statin-treated stable CAD patients were imaged by CMR, near-infrared spectroscopy (NIRS)/intravascular ultrasound (IVUS), and optical coherence tomography (OCT) (NCT04864171). NIRS/IVUS-derived measures, OCT-derived low-intensity area without attenuation (LIA), and the arc of LIA were compared between lesions with and without PMR ≥1.0. PMR ≥1.0 was observed at 34.2% and 19.7% of target and non-target lesions, respectively. Target lesions with PMR ≥1.0 presented greater percent atheroma volume (PAV) and higher maxLCBI4mm with greater frequencies of layered plaques, cholesterol crystals, and LIA (P < 0.001 for all). Multivariable analysis demonstrated PAV [odds ratio (OR) = 1.05, 95% confidence interval (CI) = 1.01-1.09, P = 0.006], layered plaque (OR = 3.17, 95% CI = 1.03-9.78, P = 0.045), cholesterol crystal (OR = 3.79, 95% CI = 1.30-11.03, P = 0.015), and LIA arc (OR = 1.04, 95% CI = 1.01-1.06, P < 0.001) but not maxLCBI4mm (OR = 1.001, 95% CI = 0.999-1.003, P = 0.227) as predictors of PMR ≥1.0 at target lesions. Notably, the frequency of PMR ≥1.0 increased to 92.0% in target lesions exhibiting all plaque features (PAV ≥ 62.1%, layered plaque, cholesterol crystal, LIA arc ≥18.0°). In non-target lesions, PAV ≥ 53.1%, cholesterol crystal and LIA arc ≥16.5° predicted PMR ≥1.0. A clustering of these features elevated the frequency of PMR ≥1.0 (P < 0.001). CONCLUSION: Statin-treated patients still harboured PMR ≥1.0. PAV, LIA, and cholesterol crystal predicted PMR ≥1.0 at both target and non-target lesions. Clustering of these plaque characteristics may enable to better identify intraplaque haemorrhage in vivo.
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Characterization of intraplaque haemorrhage in statin-treated patients with stable coronary artery disease: multi-modality imaging with non-contrast T1-weighted cardiac magnetic resonance, optical coherence tomography, and near-infrared spectroscopy. — 科研速览 Science Skim