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在 7 特斯拉下使用通用鸟笼头线圈考虑到使多个动脉瘤夹去耦的最小距离来对动脉瘤夹周围进行射频感应加热。

Radiofrequency induced heating around aneurysm clips using a generic birdcage head coil at 7 Tesla under consideration of the minimum distance to decouple multiple aneurysm clips.

机构信息

Erwin L. Hahn Institute for Magnetic Resonance Imaging, University Duisburg-Essen, Essen, Germany.

MR:comp GmbH, MR Safety Testing Laboratory, Gelsenkirchen, Germany.

出版信息

Magn Reson Med. 2019 Nov;82(5):1859-1875. doi: 10.1002/mrm.27835. Epub 2019 Jun 14.

Abstract

PURPOSE

To evaluate radiofrequency (RF) induced tissue heating around aneurysm clips during a 7T head MR examination and to determine the decoupling distance between multiple implanted clips.

METHODS

A total of 120 RF exposure scenarios of clinical relevance were studied using specific absorption rate and temperature simulations. Variations between scenarios included 2 clips (18.8 and 51.5 mm length), 2 MR-operating modes, 2 head models, and 3 thermoregulation models. Furthermore, a conservative approach was developed to allow for safe scans of patients with aneurysm clips even if detailed information on the implanted clip is unknown. A dedicated simulation-based approach was applied to determine the decoupling distance between multiple implanted clips.

RESULTS

For all 60 clinical scenarios with the 18.8-mm-long clip, the absolute tissue temperature remained below regulatory limits. For 15 of 60 scenarios with the 51.5-mm-long clip, limits were slightly exceeded (less than 1°C). The conservative approach led to a maximum time-averaged input power of the RF coil of 3.3W. The corresponding B is 1.32 µT. A decoupling distance of 35 mm allows the aneurysm clips to be treated as uncoupled from one other.

CONCLUSION

Safe scanning conditions with respect to RF-induced heating can be applied for single or decoupled aneurysm clips in a 7T ultra-high field MRI setting. Multiple aneurysm clips separated by less than 35 mm need further investigations.

摘要

目的

在 7T 头部磁共振检查期间评估动脉瘤夹周围射频(RF)诱导的组织加热,并确定多个植入夹之间的去耦距离。

方法

使用特定吸收率和温度模拟研究了总共 120 个具有临床相关性的 RF 暴露情况。场景之间的变化包括 2 个夹(18.8 和 51.5 毫米长)、2 个磁共振操作模式、2 个头模型和 3 个温度调节模型。此外,开发了一种保守方法,即使对植入夹的详细信息未知,也允许对患有动脉瘤夹的患者进行安全扫描。应用专门的基于模拟的方法来确定多个植入夹之间的去耦距离。

结果

对于所有 60 个具有 18.8 毫米长夹的临床情况,组织温度绝对低于监管限制。在 60 个具有 51.5 毫米长夹的情况中,有 15 个略微超过了限制(小于 1°C)。保守方法导致 RF 线圈的平均输入功率最大为 3.3W。相应的 B 为 1.32 µT。35 毫米的去耦距离允许将动脉瘤夹视为彼此去耦。

结论

在 7T 超高磁场 MRI 环境中,对于单个或去耦的动脉瘤夹,可以应用安全的扫描条件以避免 RF 诱导的加热。间距小于 35 毫米的多个动脉瘤夹需要进一步研究。

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