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Three-dimensional myoarchitecture of the bovine tongue demonstrated by diffusion spectrum magnetic resonance imaging with tractography

机译:牛磺酸的三维肌体结构通过磁共振谱学与核磁共振成像证实

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The anatomy of the mammalian tongue consists of an intricate array of variably aligned and extensively interwoven muscle fibers. As a result, it is particularly difficult to resolve the relationship between the tongue's microscopic anatomy and tissue-scale mechanical function. In order to address this question, we employed a method, diffusion spectrum imaging (DSI) with tractography, for displaying the macroscopic orientational properties of the tissue's constituting myofibers. DSI measures spatially variant proton displacement for a given 3D imaging segment (voxel), reflecting the principal orientation(s) of its myofibers. Tractography uses the angular similarity displayed by the principal fiber populations of multiple adjacent voxels to generate tract-like structures. DSI with tractography thus defines a unique set of tracts based on the net orientational behavior of the myofiber populations at different positions in the tissue. By this approach, we demonstrate a novel myoarchitectural pattern for the bovine tongue, consisting of short and orthogonally aligned crossing fiber tracts in the intrinsic core region, and longer, parallel-aligned fiber tracts on the tissue margins and in the regions of extrinsic fiber insertion. The identification of locally aligned myofiber populations by DSI with tractography allows us to reconsider lingual anatomy, not in conventional microscopic terms, but as a set of heterogeneously aligned and macroscopically resolved myofiber tracts. We postulate that the properties associated with these myofiber tracts predict the mechanical behavior of the tissue and thus constitute a method to relate structure and function for anatomically complex muscular tissues.
机译:哺乳动物舌头的解剖结构由错综排列的,广泛交织的肌纤维组成的复杂阵列组成。结果,特别难于解决舌头的微观解剖结构和组织尺度的机械功能之间的关系。为了解决这个问题,我们采用了一种具有束线学的弥散光谱成像(DSI)方法,以显示组织构成的肌纤维的宏观取向特性。 DSI针对给定的3D成像段(体素)测量空间变化的质子位移,反映出其肌纤维的主要方向。牵引描记法使用多个相邻体素的主要纤维群显示的角度相似性来生成束状结构。因此,具有D线描记法的DSI基于肌纤维群体在组织中不同位置的净取向行为,定义了一组唯一的道。通过这种方法,我们证明了牛舌的一种新颖的肌构模式,该模式由固有核心区域中的短且正交排列的交叉纤维束以及组织边缘和外在纤维插入区域中的较长且平行排列的纤维束组成。 。通过DSI与束线照相术确定局部对齐的肌纤维群体,使我们可以重新考虑舌的解剖结构,而不是用常规的微观术语,而是重新定义为一组异质对齐和宏观分辨的肌纤维束。我们假设与这些肌纤维束相关的特性预测了组织的机械行为,因此构成了一种在解剖学上复杂的肌肉组织中关联结构和功能的方法。

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