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对导线进行简单的设计更改,可大幅降低1.5T磁场下MRI诱导的发热:对植入式导线的影响

Simple design changes to wires to substantially reduce MRI-induced heating at 1.5 T: implications for implanted leads.

作者信息

Gray Robert W, Bibens W Timothy, Shellock Frank G

机构信息

Biophan Technologies, Inc., West Henrietta, NY 14586, USA.

出版信息

Magn Reson Imaging. 2005 Oct;23(8):887-91. doi: 10.1016/j.mri.2005.07.005. Epub 2005 Oct 13.

Abstract

Reductions in MRI-induced heating at 1.5 T resulting from a simple design change to coiled wires were investigated. MRI-induced heating was assessed for two different coiled wire forms (length, 26 cm): (1) multi-filar coiled wire form and (2) multi-filar coiled wire form having a different coiled pitch, providing an air gap spacing between adjacent five-filar coil loops. Each wire had an electrode and was insulated to create a lead, similar to that which would be used for a medical implant. The wire forms were placed in a gelled-saline-filled head/torso phantom and imaged at 1.5 T [whole-body average specific absorption rate (SAR), 1.79 W/kg]. Fluoroptic thermometry probes were used to measure temperatures at the distal ends of the wires. The experiments demonstrated a substantial reduction in MRI-induced heating for the modified wire compared to the unmodified wire (i.e., 10.5 degrees C difference observed in one experiment and 26 degrees C difference in another). These findings have important implications for MRI-induced heating of leads used for medical implants.

摘要

研究了通过对螺旋线进行简单设计更改来降低1.5T磁共振成像(MRI)诱导的发热情况。针对两种不同的螺旋线形式(长度为26厘米)评估了MRI诱导的发热:(1)多股螺旋线形式;(2)具有不同螺旋节距的多股螺旋线形式,在相邻的五股线圈环之间提供气隙间距。每根导线都有一个电极,并进行绝缘处理以制成一根引线,类似于用于医疗植入物的引线。将这些导线形式放置在填充有凝胶盐水的头部/躯干模型中,并在1.5T下成像[全身平均比吸收率(SAR),1.79W/kg]。使用荧光温度测量探头测量导线远端的温度。实验表明,与未修改的导线相比,修改后的导线在MRI诱导的发热方面有显著降低(即,在一个实验中观察到10.5摄氏度的差异,在另一个实验中观察到26摄氏度的差异)。这些发现对于MRI诱导的医疗植入物引线发热具有重要意义。

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