Phantoms for Quantitative Body MRI: a review and discussion of the phantom value.

IF 2 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Kathryn E Keenan, Kalina V Jordanova, Stephen E Ogier, Daiki Tamada, Natalie Bruhwiler, Jitka Starekova, Jon Riek, Paul J McCracken, Diego Hernando
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引用次数: 0

Abstract

In this paper, we review the value of phantoms for body MRI in the context of their uses for quantitative MRI methods research, clinical trials, and clinical imaging. Certain uses of phantoms are common throughout the body MRI community, including measuring bias, assessing reproducibility, and training. In addition to these uses, phantoms in body MRI methods research are used for novel methods development and the design of motion compensation and mitigation techniques. For clinical trials, phantoms are an essential part of quality management strategies, facilitating the conduct of ethically sound, reliable, and regulatorily compliant clinical research of both novel MRI methods and therapeutic agents. In the clinic, phantoms are used for development of protocols, mitigation of cost, quality control, and radiotherapy. We briefly review phantoms developed for quantitative body MRI, and finally, we review open questions regarding the most effective use of a phantom for body MRI.

Abstract Image

人体磁共振成像定量模型:回顾与讨论模型价值。
在本文中,我们结合人体磁共振成像模型在磁共振成像定量方法研究、临床试验和临床成像中的应用,回顾了人体磁共振成像模型的价值。人体磁共振成像界普遍使用某些模型,包括测量偏差、评估再现性和培训。除这些用途外,人体磁共振成像方法研究中的模型还用于新方法的开发以及运动补偿和缓解技术的设计。对于临床试验,模型是质量管理策略的重要组成部分,有助于对新型磁共振成像方法和治疗药物进行符合道德规范、可靠且符合监管要求的临床研究。在临床中,模型用于制定方案、降低成本、质量控制和放射治疗。我们简要回顾了为定量人体磁共振成像开发的模型,最后就人体磁共振成像模型的最有效使用提出了一些开放性问题。
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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
58
审稿时长
>12 weeks
期刊介绍: MAGMA is a multidisciplinary international journal devoted to the publication of articles on all aspects of magnetic resonance techniques and their applications in medicine and biology. MAGMA currently publishes research papers, reviews, letters to the editor, and commentaries, six times a year. The subject areas covered by MAGMA include: advances in materials, hardware and software in magnetic resonance technology, new developments and results in research and practical applications of magnetic resonance imaging and spectroscopy related to biology and medicine, study of animal models and intact cells using magnetic resonance, reports of clinical trials on humans and clinical validation of magnetic resonance protocols.
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