磁共振成像的介入应用。

Magnetic resonance quarterly Pub Date : 1994-06-01
F A Jolesz, S M Blumenfeld
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引用次数: 0

摘要

在目前可用的成像技术中,磁共振成像(MRI)在指导、监测和控制诊断和治疗干预方面具有特殊的优势,对大多数微创、最小通路方法具有特别的吸引力。MRI最明显的作用是监测和控制各种间质消融过程,利用的方法包括热治疗(间质激光治疗、冷冻手术、聚焦超声手术)。磁共振监测的基本要求是脉冲序列具有适当的空间和时间分辨率以及适合动态成像任务的整体图像质量。此外,还需要一种更容易接近的磁铁配置,以便执行各种介入程序。因此,需要解决仪器和设备的磁共振兼容性问题,以及必须将治疗递送方式与磁共振系统整合起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interventional use of magnetic resonance imaging.

Among the currently available imaging techniques, magnetic resonance imaging (MRI) offers particular advantages for guiding, monitoring, and controlling diagnostic and therapeutic interventions, with particular appeal for most of the minimally invasive, minimal access approaches. The most obvious role of MRI is in monitoring and controlling a variety of interstitial ablative procedures, utilizing methods including thermal therapy (interstitial laser therapy, cryosurgery, focused ultrasound surgery). A fundamental requirement of MR monitoring is the implementation of pulse sequences with appropriate spatial and temporal resolution as well as overall image quality suitable for the dynamic imaging task. In addition, there is a need for a more accessible magnet configuration to enable execution of various interventional procedures. MR compatibility of instruments and devices, therefore, needs to be addressed, as must the integration of therapy delivery modalities with the MR system.

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