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Preliminary Evaluation of a Combined MicroPET?-MR System

机译:结合在一起的MicroPET?-MR系统的初步评估

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There are many motivations for adding simultaneously acquired MR images to PET scanning. The most straight forward are, superior registration of MR and PET images, the addition of morphological detail when there is non-rigid motion and for pre-clinical studies simultaneous imaging could lead to a significant reduction in the time that animals are required to be anesthetised. In addition simultaneous MR has the potential to provide accurate motion correction for PET image reconstruction. For functional imaging simultaneous acquisition is required to assess the subject in the same physiological state, such as acute stroke studies. The elimination of the additional radiation associated with combining CT with PET, by providing anatomic detail with MR, would be a crucial advantage for cancer screening. Combining the two instruments necessitates some engineering tradeoffs, especially associated with the use of the highly developed photomultiplier tube (PMT) used for light amplification, because of its incompatibility with strong magnetic fields. Our approach is to provide a split in the magnet and gradients to locate the magnetic sensitive components, the PMTs, in regions of low magnetic field, leaving only the essential PET components, the scintillator blocks, in the strong magnetic field region. The crystals are coupled to the PMTs by extending the optical fibres. A further advantage accrues by moving the PET electronics out of the region seen by the MR radio-frequency (RF) and gradient coils as electromagnetic interference effects between the PET and MR systems, which could cause artefacts in either modality, are eliminated. Here we describe a preliminary evaluation of the system, which is essentially a microPET Focus-120 located in a 1T split magnet, and compare its performance to previous microPET instruments.
机译:将同时获取的MR图像添加到PET扫描的动机很多。最直接的是,MR和PET图像具有出色的配准,在非刚性运动时增加了形态学细节,并且对于临床前研究,同时成像可以显着减少需要麻醉动物的时间。此外,同步MR有潜力为PET图像重建提供准确的运动校正。对于功能成像,需要同时采集以评估处于相同生理状态的受试者,例如急性中风研究。通过为MR提供解剖学细节,消除将CT与PET结合所带来的额外辐射,对于癌症筛查将是至关重要的优势。两种仪器的组合需要一些工程上的权衡,特别是与高度开发的光电倍增管(PMT)用于光放大有关,因为它与强磁场不兼容。我们的方法是在磁体和梯度中进行拆分,以将磁敏感组件PMT定位在低磁场区域中,而仅将基本的PET组件闪烁器块保留在强磁场区域中。通过延伸光纤将晶体耦合到PMT。通过将PET电子设备移出MR射频(RF)和梯度线圈所看到的区域,可以获得进一步的优势,因为消除了PET和MR系统之间的电磁干扰效应,该电磁干扰效应可能会导致两种方式中的伪影。在这里,我们描述了对该系统的初步评估,该系统本质上是位于1T分裂磁体中的microPET Focus-120,并将其性能与以前的microPET仪器进行了比较。

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