> Quantitative mapping of oxygen tension (pO 2 ), noninvasively, could potentially be beneficial in cancer and strok'/> A faster PISTOL for <sup >11 H MR‐based quantitative tissue oximetry
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A faster PISTOL for 11 H MR‐based quantitative tissue oximetry

机译:用于 1 1小时的定量组织血氧血管速率更快的手枪

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> Quantitative mapping of oxygen tension (pO 2 ), noninvasively, could potentially be beneficial in cancer and stroke therapy for monitoring therapy and predicting response to certain therapies. Intracellular pO 2 measurements may also prove useful in tracking the health of labeled cells and understanding the dynamics of cell therapy in vivo. Proton Imaging of Siloxanes to map Tissue Oxygenation Levels (PISTOL) is a relatively new oximetry technique that measures the T 1 of administered siloxanes such as hexamethyldisiloxane (HMDSO), to map the tissue pO 2 at various locations with a temporal resolution of 3.5?minutes. We have now developed a siloxane‐selective Look‐Locker imaging sequence equipped with an echo planar imaging (EPI) readout to accelerate PISTOL acquisitions. The new tissue oximetry sequence, referred to as PISTOL‐LL, enables the mapping of HMDSO T 1 , and hence tissue pO 2 in under one minute. PISTOL‐LL was tested and compared with PISTOL in vitro and in vivo. Both sequences were used to record dynamic changes in pO 2 of the rat thigh muscle (healthy Fischer rats, n ?=?6), and showed similar results ( P ?>?0.05) as the other, with each sequence reporting a significant increase in pO 2 ( P ?2 changes and accelerating quantitative 1 H MR tissue oximetry by approximately 4‐fold. The faster PISTOL‐LL technique could enable dynamic 1 H oximetry with hig
机译: >氧气张力的定量映射(PO 2 ),无血迹可能是有益的癌症和中风疗法,用于监测治疗和预测对某些疗法的反应。细胞内Po 2 测量还可以证明在跟踪标记细胞的健康并理解体内细胞疗法的动态。硅氧烷的质子成像来映射组织氧合水平(Pistol)是一种相对较新的血氧基础氧化技术,其测量施用的硅氧烷如六甲基二硅氧烷(HMDSO)的T 1 ,以映射组织Po 2 < /亚>在各个位置,时间分辨率为3.5?分钟。我们现在开发了一种配备有回声平面成像(EPI)读数的硅氧烷选择性外观成像序列以加速手枪采集。新的组织血氧基序列称为PISTOL-L1,使HMDSO T 1 的映射,并且因此在一分钟内的组织PO 2 。用体外和体内测试并与施用剂进行测试并与施用剂进行测试。两种序列用于记录大鼠大腿肌肉的PO 2 中的动态变化(健康的费城大鼠, n ?=Δ6),并显示出类似的结果(与稳定相比,每种序列报告每种序列,每种序列报告的每种序列的每种序列都会显着增加PO 2 ( p β<β05),与稳定相比国家常规氧化。该研究表明了新序列在快速,准确地映射PO 2 的能力,并将定量 1 H先生组织血氧血管加速约4倍。使用HIG的PISTOL-LL技术更快地实现动态 1 H血氧ic

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