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Quantifying Post- Laser Ablation Prostate Therapy Changes on MRI via a Domain-Specific Biomechanical Model: Preliminary Findings

机译:通过特定领域的生物力学模型对MRI上激光消融后前列腺治疗的变化进行量化:初步发现

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摘要

Focal laser ablation destroys cancerous cells via thermal destruction of tissue by a laser. Heat is absorbed, causing thermal necrosis of the target region. It combines the aggressive benefits of radiation treatment (destroying cancer cells) without the harmful side effects (due to its precise localization). MRI is typically used pre-treatment to determine the targeted area, and post-treatment to determine efficacy by detecting necrotic tissue, or tumor recurrence. However, no system exists to quantitatively evaluate the post-treatment effects on the morphology and structure via MRI. To quantify these changes, the pre- and post-treatment MR images must first be spatially aligned. The goal is to quantify (a) laser-induced shape-based changes, and (b) changes in MRI parameters post-treatment. The shape-based changes may be correlated with treatment efficacy, and the quantitative effects of laser treatment over time is currently poorly understood. This work attempts to model changes in gland morphology following laser treatment due to (1) patient alignment, (2) changes due to surrounding organs such as the bladder and rectum, and (3) changes due to the treatment itself. To isolate the treatment-induced shape-based changes, the changes from (1) and (2) are first modeled and removed using a finite element model (FEM). A FEM models the physical properties of tissue. The use of a physical biomechanical model is important since a stated goal of this work is to determine the physical shape-based changes to the prostate from the treatment, and therefore only physical real deformations are to be allowed. A second FEM is then used to isolate the physical, shape-based, treatment-induced changes. We applied and evaluated our model in capturing the laser induced changes to the prostate morphology on eight patients with 3.0 Tesla, T2-weighted MRI, acquired approximately six months following treatment. Our results suggest the laser treatment causes a decrease in prostate volume, which appears to manifest predominantly at the site of ablation. After spatially aligning the images, changes to MRI intensity values are clearly visible at the site of ablation. Our results suggest that our new methodology is able to capture and quantify the degree of laser-induced changes to the prostate. The quantitative measurements reflecting of the deformation changes can be used to track treatment response over time.
机译:聚焦激光烧蚀通过激光对组织的热破坏而破坏癌细胞。热量被吸收,引起目标区域的热坏死。它结合了放射治疗(摧毁癌细胞)的积极优势而没有有害副作用(由于其精确的定位)。 MRI通常用于治疗前确定目标区域,治疗后通过检测坏死组织或肿瘤复发来确定疗效。但是,没有系统可以通过MRI定量评估后处理对形态和结构的影响。为了量化这些变化,治疗前和治疗后的MR图像必须首先在空间上对齐。目的是量化(a)激光诱导的基于形状的变化,以及(b)治疗后MRI参数的变化。基于形状的变化可能与治疗效果相关,目前对激光治疗随时间的量化效果了解甚少。这项工作试图模拟由于(1)患者对准,(2)由于周围器官如膀胱和直肠的变化以及(3)由于治疗本身而引起的激光治疗后腺体形态的变化。为了隔离治疗引起的基于形状的变化,首先使用有限元模型(FEM)对(1)和(2)的变化建模并删除。有限元模型模拟了组织的物理特性。物理生物力学模型的使用很重要,因为这项工作的既定目标是确定治疗后前列腺基于物理形状的变化,因此仅允许物理上的真实变形。然后使用第二个FEM来隔离物理的,基于形状的,治疗引起的变化。我们应用并评估了我们的模型,以捕获八名3.0特斯拉,T2加权MRI的患者在治疗后大约六个月获得的激光诱导的前列腺形态变化。我们的结果表明,激光治疗会导致前列腺体积减少,这似乎主要表现在消融部位。在空间上对齐图像后,在消融部位清晰可见MRI强度值的变化。我们的结果表明,我们的新方法能够捕获和量化激光诱导的前列腺改变的程度。反映变形变化的定量测量可用于跟踪随时间变化的处理响应。

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