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用于手术的乳房图像配准:材料力学建模见解

Breast image registration for surgery: Insights on material mechanics modeling.

作者信息

Ringel Morgan J, Richey Winona L, Heiselman Jon, Luo Ma, Meszoely Ingrid M, Miga Michael I

机构信息

Vanderbilt University, Department of Biomedical Engineering, Nashville, TN USA.

Vanderbilt Institute for Surgery and Engineering, Nashville, TN USA.

出版信息

Proc SPIE Int Soc Opt Eng. 2022 Feb-Mar;12034. doi: 10.1117/12.2611787. Epub 2022 Apr 4.

Abstract

Breast conserving surgery (BCS) is a common procedure for early-stage breast cancer patients. Supine preoperative magnetic resonance (MR) breast imaging for visualizing tumor location and extent, while not standard for procedural guidance, more closely represents the surgical presentation compared to conventional diagnostic pendant positioning. Optimal utilization for surgical guidance, however, requires a fast and accurate image-to-physical registration from preoperative imaging to intraoperative surgical presentation. In this study, three registration methods were investigated on healthy volunteers' breasts (n=11) with the arm-down position simulating preoperative imaging and arm-up position simulating intraoperative data. The registration methods included: (1) point-based rigid registration using synthetic fiducials, (2) non-rigid biomechanical model-based registration using sparse data, and (3) a data-dense 3D diffeomorphic image-based registration from the Advanced Normalization Tools (ANTs) repository. The average target registration errors (TRE) were 10.4 ± 2.3, 6.4 ± 1.5, and 2.8 ± 1.3 mm (mean ± standard deviation) and the average fiducial registration errors (FRE) were 7.8 ± 1.7, 2.5 ± 1.1, and 3.1 ± 1.1 mm (mean ± standard deviation) for the point-based rigid, nonrigid biomechanical, and ANTs registrations, respectively. Additionally, common mechanics-based deformation metrics (volume change and anisotropy) were calculated from the ANTs deformation field. The average metrics revealed anisotropic tissue behavior and a statistical difference in volume change between glandular and adipose tissue, suggesting that nonrigid modeling methods may be improved by incorporating material heterogeneity and anisotropy. Overall, registration accuracy significantly improved with increasingly flexible registration methods, which may inform future development of image guidance systems for lumpectomy procedures.

摘要

保乳手术(BCS)是早期乳腺癌患者的常见手术。术前仰卧位磁共振(MR)乳腺成像用于显示肿瘤位置和范围,虽然它并非手术引导的标准方式,但与传统诊断垂饰定位相比,更接近手术时的情况。然而,要将其最佳用于手术引导,需要从术前成像到术中手术情况进行快速且准确的图像到物理配准。在本研究中,对11名健康志愿者的乳房进行了三种配准方法的研究,手臂下垂位置模拟术前成像,手臂上举位置模拟术中数据。配准方法包括:(1)使用合成基准点的基于点的刚性配准,(2)使用稀疏数据的基于非刚性生物力学模型的配准,以及(3)来自高级归一化工具(ANTs)库的基于数据密集型3D微分同胚图像的配准。基于点的刚性配准、非刚性生物力学配准和ANTs配准的平均目标配准误差(TRE)分别为10.4±2.3、6.4±1.5和2.8±1.3毫米(均值±标准差),平均基准点配准误差(FRE)分别为7.8±1.7、2.5±1.1和3.1±1.1毫米(均值±标准差)。此外,从ANTs变形场计算了常见的基于力学的变形指标(体积变化和各向异性)。平均指标显示了各向异性的组织行为以及腺体组织和脂肪组织之间体积变化的统计学差异,这表明非刚性建模方法可能通过纳入材料的非均质性和各向异性而得到改进。总体而言,配准精度随着配准方法越来越灵活而显著提高,这可能为未来乳房肿瘤切除术图像引导系统的发展提供参考。

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本文引用的文献

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Impact of deformation on a supine-positioned image-guided breast surgery approach.仰卧位图像引导下的乳腺癌手术入路中变形的影响。
Int J Comput Assist Radiol Surg. 2021 Nov;16(11):2055-2066. doi: 10.1007/s11548-021-02452-8. Epub 2021 Aug 12.
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Breast Biomechanics: What Do We Really Know?乳房生物力学:我们究竟知道多少?
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Deformable Registration for Longitudinal Breast MRI Screening.纵向乳腺 MRI 筛查的可变形配准。
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