IEEE Trans Biomed Circuits Syst. 2007 Jun;1(2):116-27. doi: 10.1109/TBCAS.2007.909023.
Minimally invasive image-guided interventions (IGIs) are time and cost efficient, minimize unintended damage to healthy tissue, and lead to faster patient recovery. With the advent of multislice computed tomography (CT), many IGIs are now being performed under volumetric CT guidance. Registering pre-and intraprocedural images for improved intraprocedural target delineation is a fundamental need in the IGI workflow. Earlier approaches to meet this need primarily employed rigid body approximation, which may not be valid because of nonrigid tissue misalignment between these images. Intensity-based automatic deformable registration is a promising option to correct for this misalignment; however, the long execution times of these algorithms have prevented their use in clinical workflow. This article presents a field-programmable gate array-based architecture for accelerated implementation of mutual information (Ml)-based deformable registration. The reported implementation reduces the execution time of MI-based deformable registration from hours to a few minutes. This work also demonstrates successful registration of abdominal intraprocedural noncontrast CT (iCT) images with preprocedural contrast-enhanced CT (preCT) and positron emission tomography (PET) images using the reported solution. The registration accuracy for this application was evaluated using 5 iCT-preCT and 5 iCT-PET image pairs. The registration accuracy of the hardware implementation is comparable with that achieved using a software implementation and is on the order of a few millimeters. This registration accuracy, coupled with the execution speed and compact implementation of the reported solution, makes it suitable for integration in the IGI-workflow.
微创影像引导介入(IGI)具有省时、省钱的优势,可最大限度地减少对健康组织的意外损伤,并促进患者更快康复。随着多层计算机断层扫描(CT)的出现,许多 IGI 现在都在容积 CT 引导下进行。在 IGI 工作流程中,为了提高术中目标勾画的准确性,需要对术前和术中图像进行配准。早期满足这一需求的方法主要采用刚体近似,但是由于这些图像之间的组织非刚性错位,这种方法可能不适用。基于强度的自动可变形配准是纠正这种错位的一种很有前途的选择;然而,这些算法的执行时间较长,这使得它们无法在临床工作流程中使用。本文提出了一种基于现场可编程门阵列的架构,用于加速实现基于互信息(MI)的可变形配准。报告的实现将基于 MI 的可变形配准的执行时间从数小时缩短到几分钟。该工作还展示了使用报告的解决方案成功地对腹部术中非增强 CT(iCT)图像与术前增强 CT(preCT)和正电子发射断层扫描(PET)图像进行配准。使用 5 对 iCT-preCT 和 5 对 iCT-PET 图像对该应用的配准精度进行了评估。硬件实现的配准精度与软件实现的精度相当,精度在几毫米的量级。这种配准精度,加上报告的解决方案的执行速度和紧凑的实现,使其适合集成到 IGI 工作流程中。