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PET and MRI-guided focused ultrasound surgery for Neurological Applications

机译:宠物和MRI引导的聚焦超声手术用于神经系统应用

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Magnetic Resonance (MR) guided Focused Ultra-sound Surgery (MRgFUS) technology, combined with High Intensity Focused Ultrasound (HIFU) beams, has opened to new therapeutic protocols for various pathological conditions. The success of this therapy relies on the accuracy of the guidance for therapy provided by thermal mapping of sonication, which is obtained with MR imaging. In addition, in recent years, multimodality Positron Emission Tomography and Magnetic Resonance Imaging (PET/MRI) imaging has been developed. This technique is able to provide simultaneous functional and soft tissue morphological imaging and, for this reason, it is particularly engaging for brain imaging. The key concept behind this work is to assess the feasibility of a brain-dedicated PET- and MRI-guided FUS device providing real-time evaluation of the outcome of the HIFU therapy. At first, a method to improve imaging capabilities of small-ring PET scanners will be presented. It will be showed that thanks to this method it is possible to obtain high tomographic spatial resolution with an affordable, brain-dedicated, PET scanner based on monolithic scintillation crystals and able to work as an insert in a MRI system. Moreover, simulations of an anthropomorphic phantom will be made in order to evaluate the effect of different HIFU protocols and, in addition, to investigate the capability of thermal maps provided by MRI for assessing the effect of the HIFU treatment. Finally, from the comparison of the spatial resolutions provided by each imaging technique (PET, MRI and thermal MRI) and the HIFU therapy, it will be possible to assess the feasibility of the proposed multimodality device. The system suggested in this work should be composed of a MRI scanner with a PET insert and a customized MRI-compatible focused ultrasound applicator. It could be very useful for the diagnosis and therapy of brain tumors thanks to the possibility of a real-time evaluation of the effect of the HIFU treatment. The protocol for the therapy could be executed in three main steps: the diagnosis of the pathological condition by means of fused anatomical imaging from MRI and functional imaging from PET (with different radiotracers) that allow to identify the region where apply the therapy, the ablation of the tumor by means of HIFU beams and the simultaneous evaluation of the thermal response of the tissues by means MRI thermal maps and, finally, the assessment of the outcome of the therapy by means, again, of PET/MRI hybrid imaging. The results suggest that PET-and MRI-guided focused ultrasound surgery (PET/MRgFUS) could be an innovative, feasible and engaging technique for tumor ablation in the brain.
机译:磁共振(MR)引导的聚焦超声手术(MRGFUS)技术与高强度聚焦超声(HIFU)光束相结合,已经为各种病理条件开辟了新的治疗方案。这种治疗的成功依赖于通过MR成像获得的超声波的热映射的治疗指导的准确性。此外,近年来,已经开发了多模态正电子发射断层扫描和磁共振成像(PET / MRI)成像。这种技术能够提供同时功能和软组织形态学成像,因此特别接合脑成像。这项工作背后的关键概念是评估大脑专用的宠物和MRI引导的FUS设备的可行性,提供了对HIFU治疗结果的实时评估。首先,将呈现提高小环PET扫描仪的成像能力的方法。将显示,由于这种方法,可以使用基于单片闪烁晶体的经济实惠的脑专用的PET扫描仪获得高断层摄影空间分辨率,并且能够用作MRI系统中的插入物。此外,将进行拟人偶像的模拟,以评估不同HIFU方案的效果,并且还研究MRI提供的热图的能力,以评估HIFU处理的效果。最后,从每个成像技术(PET,MRI和热MRI)和HIFU治疗提供的空间分辨率的比较,可以评估所提出的多模设备的可行性。在这项工作中提出的系统应由带有PET插入件和定制的MRI兼容聚焦超声涂抹器的MRI扫描仪组成。由于对HIFU治疗效果的实时评估的可能性,脑肿瘤的诊断和治疗可能非常有用。用于治疗的协议可在三个主要步骤来执行:所述病理状况的通过从MRI和功能成像稠合解剖成像从PET的装置(具有不同的放射性示踪剂),其允许以标识应用治疗的区域中的诊断,消融通过HIFU光束的肿瘤和同时评估组织的热响应通过MRI热图,最后,通过再次对PET / MRI杂交成像进行评估。结果表明,宠物和MRI引导的聚焦超声手术(PET / MRGFU)可能是肿瘤烧蚀于大脑中的一种创新,可行和接触的技术。

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