Development of Cardiac Computed Tomography for Evaluation of Aortic Valve Stenosis.

IF 2.2 4区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Hiroyuki Takaoka, Haruka Sasaki, Joji Ota, Yoshitada Noguchi, Moe Matsumoto, Kazuki Yoshida, Katsuya Suzuki, Shuhei Aoki, Satomi Yashima, Makiko Kinoshita, Noriko Suzuki-Eguchi, Yoshio Kobayashi
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引用次数: 0

Abstract

Aortic valve stenosis (AS) is a valvular heart disease that imposes a high afterload on the left ventricle (LV) due to restricted opening of the aortic valve, resulting in LV hypertrophy. Severe AS can lead to syncope, angina pectoris, and heart failure. The number of patients with AS has been increasing due to aging populations, the growing prevalence of lifestyle-related diseases, and advances in diagnostic technologies. Therefore, accurate diagnosis and appropriate treatment of AS are essential. In recent years, transcatheter aortic valve implantation (TAVI) has become feasible, and the number of procedures has rapidly increased, particularly among elderly patients. As treatment options for AS expand and diversify, detailed pre-procedural evaluation has become increasingly important. In particular, diagnostic imaging modalities such as computed tomography (CT) have advanced significantly, with notable improvements in image quality. With recent advancements in CT technology-such as increased detector rows, faster gantry rotation speeds, new image reconstruction methods, and the introduction of dual-energy imaging-the scope of cardiac assessment has expanded beyond the coronary arteries to include valves, myocardium, and the entire heart. This includes evaluating restricted AV opening and cardiac function using four-dimensional imaging, assessing AV annulus diameter and AS severity via calcium scoring with a novel motion correction algorithm, and detecting myocardial damage through late-phase contrast imaging using new reconstruction techniques. In cases of pre-TAVI evaluation or congenital bicuspid valves, CT is also valuable for assessing extracardiac structures, such as access routes and associated congenital heart anomalies. In addition, recent advancements in CT technology have made it possible to significantly reduce radiation exposure during cardiac imaging. CT has become an extremely useful tool for comprehensive cardiac evaluation in patients with aortic stenosis, especially those being considered for surgical treatment.

心脏计算机断层扫描评估主动脉瓣狭窄的进展。
主动脉瓣狭窄(Aortic valve stenosis, AS)是一种瓣膜性心脏病,由于主动脉瓣开放受限,左心室(LV)承受较高的后负荷,导致左心室肥厚。严重的AS可导致晕厥、心绞痛和心力衰竭。由于人口老龄化、生活方式相关疾病的日益流行以及诊断技术的进步,AS患者的数量一直在增加。因此,准确的诊断和适当的治疗是至关重要的。近年来,经导管主动脉瓣植入术(TAVI)变得可行,手术数量迅速增加,特别是在老年患者中。随着As治疗方案的扩大和多样化,详细的术前评估变得越来越重要。特别是,诊断成像方式,如计算机断层扫描(CT)有了显著的进步,图像质量显著提高。随着近年来CT技术的进步,如增加的检测器行数、更快的龙门旋转速度、新的图像重建方法和双能成像的引入,心脏评估的范围已经从冠状动脉扩展到包括瓣膜、心肌和整个心脏。这包括使用四维成像评估受限房室开放和心功能,使用新的运动校正算法通过钙评分评估房室环直径和AS严重程度,以及使用新的重建技术通过后期对比成像检测心肌损伤。在tavi前评估或先天性双尖瓣的情况下,CT对于评估心外结构(如通路和相关的先天性心脏异常)也很有价值。此外,最近CT技术的进步使得在心脏成像过程中显著减少辐射暴露成为可能。对于主动脉瓣狭窄患者,尤其是考虑手术治疗的患者,CT已经成为一种非常有用的心脏综合评估工具。
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来源期刊
Tomography
Tomography Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.70
自引率
10.50%
发文量
222
期刊介绍: TomographyTM publishes basic (technical and pre-clinical) and clinical scientific articles which involve the advancement of imaging technologies. Tomography encompasses studies that use single or multiple imaging modalities including for example CT, US, PET, SPECT, MR and hyperpolarization technologies, as well as optical modalities (i.e. bioluminescence, photoacoustic, endomicroscopy, fiber optic imaging and optical computed tomography) in basic sciences, engineering, preclinical and clinical medicine. Tomography also welcomes studies involving exploration and refinement of contrast mechanisms and image-derived metrics within and across modalities toward the development of novel imaging probes for image-based feedback and intervention. The use of imaging in biology and medicine provides unparalleled opportunities to noninvasively interrogate tissues to obtain real-time dynamic and quantitative information required for diagnosis and response to interventions and to follow evolving pathological conditions. As multi-modal studies and the complexities of imaging technologies themselves are ever increasing to provide advanced information to scientists and clinicians. Tomography provides a unique publication venue allowing investigators the opportunity to more precisely communicate integrated findings related to the diverse and heterogeneous features associated with underlying anatomical, physiological, functional, metabolic and molecular genetic activities of normal and diseased tissue. Thus Tomography publishes peer-reviewed articles which involve the broad use of imaging of any tissue and disease type including both preclinical and clinical investigations. In addition, hardware/software along with chemical and molecular probe advances are welcome as they are deemed to significantly contribute towards the long-term goal of improving the overall impact of imaging on scientific and clinical discovery.
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