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利用体内磁共振成像对人体食指进行解剖精确、高分辨率建模。

Anatomically Accurate, High-Resolution Modeling of the Human Index Finger Using In Vivo Magnetic Resonance Imaging.

机构信息

Faculty of Mathematics and Physics, University of Ljubljana, 1000 Ljubljana, Slovenia.

Jozef Stefan Institute, 1000 Ljubljana, Slovenia.

出版信息

Tomography. 2022 Sep 21;8(5):2347-2359. doi: 10.3390/tomography8050196.

Abstract

Anatomically accurate models of a human finger can be useful in simulating various disorders. In order to have potential clinical value, such models need to include a large number of tissue types, identified by an experienced professional, and should be versatile enough to be readily tailored to specific pathologies. Magnetic resonance images were acquired at ultrahigh magnetic field (7 T) with a radio-frequency coil specially designed for finger imaging. Segmentation was carried out under the supervision of an experienced radiologist to accurately capture various tissue types (TTs). The final segmented model of the human index finger had a spatial resolution of 0.2 mm and included 6,809,600 voxels. In total, 15 TTs were identified: subcutis, Pacinian corpuscle, nerve, vein, artery, tendon, collateral ligament, volar plate, pulley A4, bone, cartilage, synovial cavity, joint capsule, epidermis and dermis. The model was applied to the conditions of arthritic joint, ruptured tendon and variations in the geometry of a finger. High-resolution magnetic resonance images along with careful segmentation proved useful in the construction of an anatomically accurate model of the human index finger. An example illustrating the utility of the model in biomedical applications is shown. As the model includes a number of tissue types, it may present a solid foundation for future simulations of various musculoskeletal disease processes in human joints.

摘要

人体手指的解剖学精确模型在模拟各种疾病方面非常有用。为了具有潜在的临床价值,此类模型需要包括大量组织类型,并由经验丰富的专业人员进行识别,并且应该足够通用,以便能够轻松地针对特定的病理情况进行定制。使用专为手指成像设计的射频线圈,在超高磁场(7 T)下获取磁共振图像。在经验丰富的放射科医生的监督下进行分割,以准确捕获各种组织类型(TT)。人类食指的最终分割模型的空间分辨率为 0.2 毫米,包括 6809600 个体素。总共确定了 15 种 TT:皮下组织、Pacinian 小体、神经、静脉、动脉、肌腱、副韧带、掌板、A4 滑车、骨、软骨、滑膜腔、关节囊、表皮和真皮。该模型应用于关节炎关节、肌腱断裂和手指几何形状的变化等情况。高分辨率磁共振图像和仔细的分割证明对于构建人类食指的解剖学精确模型非常有用。展示了一个示例来说明模型在生物医学应用中的实用性。由于该模型包括多种组织类型,因此它可能为未来在人体关节中模拟各种肌肉骨骼疾病过程提供坚实的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/370b/9611080/95d17601d3f8/tomography-08-00196-g0A1.jpg

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