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多能CT时代的造影剂剂量优化

Contrast medium dose optimization in the era of multi-energy CT.

作者信息

Nagayama Yasunori, Nakaura Takeshi, Awai Kazuo, Katahira Kazuhiro, Takahashi Satoru, Oyama-Manabe Noriko, Goshima Satoshi, Kobayashi Yasuyuki, Murakami Takamichi, Hirai Toshinori, Jinzaki Masahiro

机构信息

Department of Diagnostic Radiology, Graduate School of Medical Sciences, Kumamoto University, 1-1-1, Honjo, Chuo-ku, Kumamoto, 860-8556, Japan.

Department of Diagnostic Radiology, Kumamoto Chuo Hospital, 1-5-1 Taishima, Minami-ku, Kumamoto, 862-0965, Japan.

出版信息

Jpn J Radiol. 2025 Jun 24. doi: 10.1007/s11604-025-01823-4.

Abstract

With the increasing use of contrast-enhanced CT, optimizing the iodinated contrast medium (ICM) dose while maintaining diagnostically adequate image quality is essential to mitigate potential adverse effects on patients, the environment, and public health, as well as to reduce medical costs and address potential supply shortages. Multi-energy CT technologies including dual-energy CT and photon-counting detector CT enable data acquisition at multiple energy spectra, allowing for material characterization beyond the capabilities of conventional single-energy CT. Recent technical advancements and the growing adoption of these technologies in clinical practice have enhanced patient care across various diagnostic tasks. Among the spectral-based imaging options offered by multi-energy CT, virtual monoenergetic imaging holds significant promise for substantial ICM dose reduction due to the drastic improvement in iodine contrast at lower energy levels. This article aims to provide an overview of multi-energy CT technology and its utility for ICM dose optimization across various clinical indications, while also discussing current issues and related topics.

摘要

随着增强CT的使用日益增加,在保持诊断所需图像质量的同时优化碘造影剂(ICM)剂量,对于减轻对患者、环境和公众健康的潜在不良影响、降低医疗成本以及应对潜在的供应短缺至关重要。包括双能CT和光子计数探测器CT在内的多能CT技术能够在多个能谱下进行数据采集,从而实现超越传统单能CT能力的物质特性分析。近期的技术进步以及这些技术在临床实践中的日益广泛应用,提升了各类诊断任务中的患者护理水平。在多能CT提供的基于光谱的成像选项中,虚拟单能成像因在较低能量水平下碘对比度的显著改善,在大幅降低ICM剂量方面具有巨大潜力。本文旨在概述多能CT技术及其在各种临床适应症中优化ICM剂量的效用,同时讨论当前问题及相关主题。

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