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Acute MR-Guided High-Intensity Focused Ultrasound Lesion Assessment Using Diffusion-Weighted Imaging and Histological Analysis

机译:弥散加权成像和组织学分析的急性MR引导的高强度聚焦超声病变评估

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摘要

>Objectives: The application of magnetic resonance-guided focused ultrasound (MRgFUS) for the treatment of neurological conditions has been of increasing interest. Conventional MR imaging can provide structural information about the effect of MRgFUS, where differences in ablated tissue can be seen, but it lacks information about the status of the cellular environment or neural microstructure. We investigate in vivo acute changes in water diffusion and white matter tracts in the brain of a piglet model after MRgFUS treatment using diffusion-weighted imaging (DWI) with histological verification of treatment-related changes.>Methods: MRgFUS was used to treat the anterior body of the fornix in four piglets. T1 and diffusion-weighted images were collected before and after treatment. Mean diffusion-weighted imaging (MDWI) images were generated to measure lesion volumes via signal intensity thresholds. Histological data were collected for volume comparison and assessment of treatment effect. DWI metric maps of fractional anisotropy (FA), apparent diffusion coefficient (ADC), axial diffusivity (AD), radial diffusivity (RD), and mean diffusivity (MD) were generated for quantitative assessment. Fornix-related fiber tracts were generated before and after treatment for qualitative assessment.>Results: The volume of treated tissue measured via MDWI did not differ significantly from histological measurements, and both were significantly larger than the treatment cell volume. Diffusion metrics in the treatment region were significantly decreased following MRgFUS treatment, with the peak change seen at the lesion core and decreasing radially. Histological analysis confirmed an area of coagulative necrosis in the targeted region with sharp demarcation zone with surrounding brain. Tractography from the lesion core and the fornix revealed fiber disruptions following treatment.>Conclusions: Diffusion maps and fiber tractography are an effective method for assessing lesion volumes and microstructural changes in vivo following MRgFUS treatment. This study demonstrates that DWI has the potential to advance MRgFUS by providing convenient in vivo microstructural lesion and fiber tractography assessment after treatment.
机译:>目标:磁共振引导聚焦超声(MRgFUS)在神经疾病治疗中的应用越来越引起人们的关注。常规的MR成像可以提供有关MRgFUS效果的结构信息,在该结构中可以看到消融组织的差异,但缺少有关细胞环境或神经微结构状态的信息。我们使用扩散加权成像(DWI)并通过组织学验证治疗相关变化,研究了MRgFUS治疗后仔猪模型体内脑中水扩散和白质束的急性变化。>方法:用于治疗四只小猪的穹ni前体。在治疗前后收集T1和弥散加权图像。生成平均扩散加权成像(MDWI)图像,以通过信号强度阈值测量病变体积。收集组织学数据用于体积比较和评估治疗效果。生成分数各向异性(FA),表观扩散系数(ADC),轴向扩散率(AD),径向扩散率(RD)和平均扩散率(MD)的DWI度量图以进行定量评估。 >结果:通过MDWI测量的被治疗组织的体积与组织学测量值无显着差异,并且两者均明显大于治疗细胞的体积,从而产生了与穹ni有关的纤维束,以进行定性评估。 。 MRgFUS治疗后,治疗区域中的扩散指标显着降低,在病变中心可见峰变化,且呈放射状降低。组织学分析证实,在目标区域具有明显的分界区,周围脑组织有凝集性坏死区域。病变中心和穹ni的术式显示治疗后纤维破裂。>结论:扩散图和纤维束成像是评估MRgFUS治疗后体内病变体积和微结构变化的有效方法。这项研究表明,DWI通过在治疗后提供方便的体内微结构病变和纤维束摄影评估,可以促进MRgFUS的发展。

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