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首页> 外文期刊>Advances in Experimental Medicine and Biology >Triarylmethyl Radical OX063d24 Oximetry: Electron Spin Relaxation at 250 MHz and RF Frequency Dependence of Relaxation and Signal-to-Noise
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Triarylmethyl Radical OX063d24 Oximetry: Electron Spin Relaxation at 250 MHz and RF Frequency Dependence of Relaxation and Signal-to-Noise

机译:三芳基甲基自由基OX063D24血氧血管:电子旋转放松在250 MHz和RF频率依赖性的放松和信号 - 噪声

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The triarylmethyl radical OX063d24 is currently used for pulsed electron paramagnetic resonance oximetry at 250 MHz. Both 1/T-1 and 1/T-2 increase with increasing oxygen concentration. The dependence of 1/T-1 on probe concentration is smaller than for 1/T-2. To inform the selection of the optimum frequency for in vivo oximetry 1/T-1, 1/T-2 and signal-to-noise were measured as a function of frequency between 400 and 1000 MHz on a variable-frequency spectrometer with an adjustable-frequency cross-loop resonator. 1/T-1 and 1/T-2 decrease with increasing frequency and signal-to-noise increases with increasing frequency, which are all favourable for imaging at higher frequencies. However, depth of penetration of the radio frequency (RF) into an animal decreases with increasing frequency. Assuming that the RF loss in the animal to be studied determines the resonator Q, our results indicate that the optimum frequency for in vivo imaging will be determined by the desired depth of penetration in the tissue.
机译:三芳基甲基自由基OX063D24目前用于250MHz的脉冲电子顺磁共振血氧血管血管血管。 1 / T-1和1 / T-2随着氧气浓度的增加而增加。 1 / T-1对探针浓度的依赖性小于1 / T-2。为了通知在Vivo血液氧化率1 / T-1,1 / T-2的最佳频率的选择,并且在可变频率光谱仪上以400和1000MHz的频率测量为1 / T-2和信号 - 噪声的函数 - 频率横循环谐振器。随着频率的增加和信号 - 噪声随着频率的增加而增加,1 / T-1和1 / T-2减小,这一切都是在较高频率下成像的。然而,射频(RF)进入动物的深度随着频率的增加而降低。假设要研究的动物中的RF损失决定了谐振器Q,我们的结果表明体内成像的最佳频率将通过组织中所需的渗透深度来确定。

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