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7T: Physics, safety, and potential clinical applications

机译:7T:物理,安全和潜在的临床应用

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With more than 60 installed magnetic resonance imaging (MRI) systems worldwide operating at a magnetic field strength of 7T or higher, ultrahigh‐field (UHF) MRI has been established as a platform for clinically oriented research in recent years. Profound technical and methodological developments have helped overcome the inherent physical challenges of UHF radiofrequency (RF) signal homogenization in the human body. The ongoing development of dedicated RF coil arrays was pivotal in realizing UHF body MRI, beyond mere brain imaging applications. Another precondition to clinical application of 7T MRI is the safety testing of implants and the establishment of safety concepts. Against this backdrop, 7T MRI and MR spectroscopy (MRS) recently have demonstrated capabilities and potentials for clinical diagnostics in a variety of studies. This article provides an overview of the immanent physical challenges of 7T UHF MRI and discusses recent technical solutions and safety concepts. Furthermore, recent clinically oriented studies are highlighted that span a broad application spectrum from 7T UHF brain to body MRI. Level of Evidence: 4 Technical Efficacy: Stage 1 J. Magn. Reson. Imaging 2017;46:1573–1589.
机译:通过超过60个安装的磁共振成像(MRI)系统,以磁场强度为7T或更高的磁场强度,近年来已经成为临床导向研究的平台。深刻的技术和方法的发展有助于克服UHF射频(RF)信号均质化在人体中的固有身体挑战。专用RF线圈阵列的持续发展在实现UHF体MRI之外,超越脑成像应用。临床应用于7T MRI的另一个先决条件是植入物的安全测试和安全概念的建立。在这种背景下,7T MRI和MR Spectroscopy(MRS)最近已经证明了各种研究中的临床诊断的能力和潜力。本文概述了7T UHF MRI的内在物理挑战,并讨论了最近的技术解决方案和安全概念。此外,最近突出的临床导向的研究突出了从7T UHF大脑到身体MRI的广泛应用谱。证据水平:4技术疗效:第1阶段J. MANG。恢复。 2017年成像; 46:1573-1589。

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