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Multimodality registration without a dedicated multimodality scanner

机译:无需专用多模态扫描仪的多模态注册

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摘要

Multimodality scanners that allow the acquisition of both functional and structural image sets on a single system have recently become available for animal research use. Although the resultant registered functional/structural image sets can greatly enhance the interpretability of the functional data, the cost of multimodality systems can be prohibitive, and they are often limited to two modalities, which generally do not include magnetic resonance imaging. Using a thin plastic wrap to immobilize and fix a mouse or other small animal atop a removable bed, we are able to calculate registrations between all combinations of four different small animal imaging scanners (positron emission tomography, single-photon emission computed tomography, magnetic resonance, and computed tomography CT) at our disposal, effectively equivalent to a quadruple-modality scanner. A comparison of serially acquired CT images, with intervening acquisitions on other scanners, demonstrates the ability of the proposed procedures to maintain the rigidity of an anesthetized mouse during transport between scanners. Movement of the bony structures of the mouse was estimated to be 0.62 mm. Soft tissue movement was predominantly the result of the filling (or emptying) of the urinary bladder and thus largely constrained to this region. Phantom studies estimate the registration errors for all registration types to be less than 0.5 mm. Functional images using tracers targeted to known structures verify the accuracy of the functional to structural registrations. The procedures are easy to perform and produce robust and accurate results that rival those of dedicated multimodality scanners, but with more flexible registration combinations and while avoiding the expense and redundancy of multimodality systems. © 2007 BC Decker Inc.
机译:允许在单个系统上同时获取功能和结构图像集的多模态扫描仪最近已可用于动物研究。尽管所得配准的功能/结构图像集可以极大地增强功能数据的可解释性,但是多模态系统的成本可能令人望而却步,并且它们通常限于两种模态,通常不包括磁共振成像。使用薄塑料保鲜膜将鼠标或其他小动物固定并固定在可移动床上,我们能够计算四种不同小动物成像扫描仪的所有组合之间的配准(正电子发射断层扫描,单光子发射计算机断层扫描,磁共振) ,以及计算机断层扫描CT),实际上相当于四通道扫描仪。连续采集的CT图像的比较,以及在其他扫描仪上的中间采集,证明了所提出的程序在扫描仪之间运输期间保持麻醉鼠标的刚度的能力。小鼠的骨结构的运动估计为0.62mm。软组织运动主要是膀胱填充(或排空)的结果,因此在很大程度上限制了该区域。幻影研究估计所有配准类型的配准误差均小于0.5 mm。使用针对已知结构的示踪剂的功能图像验证了功能对结构配准的准确性。该程序易于执行,并产生可靠,准确的结果,可与专用多模态扫描仪相媲美,但具有更灵活的套准组合,同时避免了多模态系统的费用和冗余。 ©2007 BC Decker Inc.版权所有。

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