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Magnetic resonance imaging-guided interstitial application of laser aidedby fiber optic temperature sensing,

机译:借助磁共振成像引导的激光在光纤温度感测辅助的间隙技术中的应用,

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Abstract: In order to further understand signal variations observed on magnetic resonance imaging scans of interstitial laser heating, a commercial multichannel fluoroptic thermometer, equipped with fiber optic sensors, was employed in conjunction with the laser/MRI phototherapy system. Three calibrated fiber optic sensors of the thermometer were used to measure temperature changes in ex-vivo sheep's brain at various distances directly across from the beam of a Nd:YAG laser emitted from a bare fiber. Laser was operated at 5 W for 220 sec. Temperature was measured every 10 seconds and MR images were acquired during and after laser irradiation until temperature in all probes returned to the equilibrium level of prelaser irradiation. Image contrast analysis of the heated region showed that MRI signal variations, during heating and cooling periods, correlated well with the changes in temperature. It is concluded that direct thermometry of MRI-monitored laser application will aid in understanding the effects of high focal heating on the MRI signal. !5
机译:摘要:为了进一步了解间质性激光加热的磁共振成像扫描观察到的信号变化,将配备光纤传感器的商用多通道荧光温度计与激光/ MRI光疗系统结合使用。温度计的三个经过校准的光纤传感器用于测量裸羊发出的Nd:YAG激光束直接穿过的不同距离的离体绵羊大脑的温度变化。激光在5 W下运行220秒。每10秒测量一次温度,并在激光照射期间和之后采集MR图像,直到所有探头的温度恢复到激光照射前的平衡水平。加热区域的图像对比度分析表明,在加热和冷却期间,MRI信号的变化与温度变化密切相关。结论是,MRI监测的激光应用的直接测温将有助于理解高聚焦加热对MRI信号的影响。 !5

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