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基于 MRI 的胃解剖结构和动力特征的可变形曲面建模。

Diffeomorphic Surface Modeling for MRI-Based Characterization of Gastric Anatomy and Motility.

出版信息

IEEE Trans Biomed Eng. 2023 Jul;70(7):2046-2057. doi: 10.1109/TBME.2023.3234509. Epub 2023 Jun 20.

Abstract

OBJECTIVE

Gastrointestinal magnetic resonance imaging (MRI) provides rich spatiotemporal data about the movement of the food inside the stomach, but does not directly report muscular activity on the stomach wall. Here we describe a novel approach to characterize the motility of the stomach wall that drives the volumetric changes of the ingesta.

METHODS

A neural ordinary differential equation was optimized to model a diffeomorphic flow that ascribed the deformation of the stomach wall to a continuous biomechanical process. Driven by this diffeomorphic flow, the surface of the stomach progressively changes its shape over time, while preserving its topology and manifoldness.

RESULTS

We tested this approach with MRI data collected from 10 rats under a lightly anesthetized condition, and demonstrated accurate characterization of gastric motor events with an error in the order of sub-millimeters. Uniquely, we characterized gastric anatomy and motility with a surface coordinate system common at both individual and group levels. Functional maps were generated to reveal the spatial, temporal, and spectral characteristics of muscle activity and its coordination across different regions. The peristalsis at the distal antrum had a dominant frequency and peak-to-peak amplitude of [Formula: see text] cycles per minute and [Formula: see text] mm, respectively. The relationship between muscle thickness and gastric motility was found to be distinct between two functional regions in the proximal and distal stomach.

CONCLUSION

These results demonstrate the efficacy of using MRI to model gastric anatomy and function.

SIGNIFICANCE

The proposed approach is expected to enable non-invasive and accurate mapping of gastric motility for preclinical and clinical studies.

摘要

目的

胃肠道磁共振成像(MRI)提供了有关胃内食物运动的丰富时空数据,但不能直接报告胃壁的肌肉活动。在这里,我们描述了一种新颖的方法来描述胃壁运动,这种运动推动了食团的容积变化。

方法

优化了一个神经常微分方程来模拟一个微分同胚流,该流将胃壁的变形归因于一个连续的生物力学过程。在这个微分同胚流的驱动下,胃的表面随着时间的推移逐渐改变其形状,同时保持其拓扑结构和流形。

结果

我们使用在轻度麻醉条件下从 10 只大鼠收集的 MRI 数据对这种方法进行了测试,并以亚毫米级的误差准确地描述了胃动力事件。独特的是,我们用一个在个体和群体水平上通用的曲面坐标系来描述胃的解剖结构和运动。生成功能图以揭示肌肉活动的空间、时间和频谱特征及其在不同区域的协调。远端胃窦的蠕动具有[公式:见文本]每分钟[公式:见文本]个周期和[公式:见文本]毫米的主导频率和峰峰值幅度。在近端和远端胃的两个功能区域之间,肌肉厚度与胃动力之间的关系是不同的。

结论

这些结果证明了使用 MRI 来模拟胃解剖和功能的有效性。

意义

所提出的方法有望实现对胃动力进行非侵入性和准确的映射,用于临床前和临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0dd/10443119/aeeca4fd2a26/nihms-1910479-f0001.jpg

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