Center for Magnetic Resonance Research (CMRR), University of Minnesota, Minneapolis, MN 55455, USA.
Magn Reson Med. 2009 Oct;62(4):888-95. doi: 10.1002/mrm.22072.
In vivo thermoregulatory temperature response to radio frequency (RF) heating at 9.4T was studied by measuring temperatures in nine anesthetized swine. Temperatures were measured in the scalp, brain, and rectum. The RF energy was deposited using a four-loop head coil tuned to 400.2 MHz. Sham RF was delivered to three swine to understand the thermal effects of anesthesia (animal weight = 54.16 kg, SD = 3.08 kg). Continuous wave (CW) RF energy was delivered to the other six animals for 2.5-3.4 h (animal weight = 74.01 +/- 26.0 kg, heating duration = 3.05 +/- 0.29 h). The whole-head specific absorption rate (SAR) varied between 2.71 W/kg and 3.20 W/kg (SAR = 2.93 +/- 0.18 W/kg). Anesthesia caused the brain and rectal temperatures to drop linearly. Altered thermoregulatory response was detected by comparing the difference in the temperature slopes before and after the RF delivery from zero. RF heating statistically significantly altered the rate of cooling down of the animal. The temperature slope changes correlated well with the RF energy per unit head weight and heating duration, and the maximum rectal temperature change during heating in heated animals. The temperature slope changes did not correlate well to the whole-head average SARs.
在 9.4T 下,通过测量 9 头麻醉猪的温度,研究了射频 (RF) 加热时体内温度的调节反应。测量了头皮、大脑和直肠的温度。使用调谐至 400.2 MHz 的四匝头线圈沉积 RF 能量。向 3 头猪施加假 RF 以了解麻醉的热效应(动物体重=54.16 千克,SD=3.08 千克)。向其他 6 只动物连续波 (CW) RF 能量 2.5-3.4 h(动物体重=74.01 +/- 26.0 千克,加热持续时间=3.05 +/- 0.29 h)。全头比吸收率 (SAR) 在 2.71 W/kg 和 3.20 W/kg 之间变化(SAR=2.93 +/- 0.18 W/kg)。麻醉导致大脑和直肠温度线性下降。通过比较 RF 输送前后温度斜率的差异,可以检测到调节反应的改变。RF 加热会显著改变动物冷却的速度。温度斜率的变化与单位头部重量的 RF 能量和加热持续时间以及加热动物在加热过程中的最大直肠温度变化相关良好。温度斜率的变化与全头平均 SAR 相关性不好。