首页> 外文会议>2012 ICME International Conference on Complex Medical Engineering >Pre-clinical experiment of pH-weighted magnetic resonance imaging in human brain tumor at 1.5 tesla
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Pre-clinical experiment of pH-weighted magnetic resonance imaging in human brain tumor at 1.5 tesla

机译:1.5特斯拉下人脑肿瘤pH加权磁共振成像的临床前实验

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Acid-base balance is the very important part of human homeostasis. Alteration in tissue pH can be an indicator of many diseases, such as tumor. Amide proton transfer imaging, a novel technique based on magnetization transfer and chemical exchange, was proved to be relying on pH to a great extent, in which proton transfer between endogenous proteins and peptides and tissue water. To the present APT imaging technology, a steady state of chemical exchange is needed, hence the specific absorption rate limit precludes its use. In order to minimize the SAR and extend the pH-weighted imaging in clinical practice, we establish a new algorithm in the unsteady state. Our earlier experiments with pH phantom prove that we can detect the pH value at 1.5 Tesla. And now we are carrying out pioneering work at 1.5 Tesla. We use a new sequence with 3.5 ppm. and −3.5 ppm. radiofrequency offset to obtain pH-weighted magnetic resonance imaging of volunteers with brain tumor at 1.5 Tesla. We find that this imaging technology can delineate the heterogeneous areas of brain tumor at 1.5 Tesla, such as separating the mass of solid tumor and infiltration from the surrounding edema without gadolinium enhanced. Artifact caused by field inhomogeneity is the weakness of this technology, which need to be optimized in post processing. This finding may provide metabolic imaging marker as a complement for conventional imaging, and has its potential advantages in predicting the nature of tumor.
机译:酸碱平衡是人类体内平衡的重要组成部分。组织pH值的变化可以指示许多疾病,例如肿瘤。酰胺质子转移成像是一种基于磁化转移和化学交换的新技术,已被证明在很大程度上依赖于pH值,其中内源蛋白与多肽和组织水之间的质子转移。对于当前的APT成像技术,需要稳定的化学交换状态,因此特定的吸收速率限制使其无法使用。为了使SAR最小化并在临床实践中扩展pH加权成像,我们建立了非稳态状态下的新算法。我们之前用pH幻像进行的实验证明,我们可以在1.5 Tesla下检测pH值。现在,我们正在1.5特斯拉进行开拓性工作。我们使用3.5 ppm的新序列。和-3.5ppm。射频偏移以获得1.5特斯拉脑肿瘤志愿者的pH加权磁共振成像。我们发现,这种成像技术可以在1.5特斯拉处描绘出脑肿瘤的异质区域,例如将实体瘤团块和浸润从周围的水肿中分离出来而无需增强enhanced。由场不均匀性引起的伪像是该技术的弱点,需要在后处理中进行优化。该发现可以提供代谢成像标志物作为常规成像的补充,并在预测肿瘤性质方面具有潜在的优势。

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