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首页> 外文期刊>Aesthetic plastic surgery >New Insights into the Three-Dimensional Anatomy of the Facial Mimetic Muscles Related to the Nasolabial Fold: An Iodine Staining Technique Based on Nano-computed Tomography
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New Insights into the Three-Dimensional Anatomy of the Facial Mimetic Muscles Related to the Nasolabial Fold: An Iodine Staining Technique Based on Nano-computed Tomography

机译:新的见解与鼻尖折叠相关的面部模拟肌肉的三维解剖学:基于纳米计算机断层扫描的碘染色技术

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PurposeThis study aimed to introduce a novel approach to study the facial mimetic muscles (FMMs) in relation to the nasolabial fold (NLF) and realize the visualization of complex three-dimensional (3D) structures and spatial relationships of the FMMs.Materials and MethodsNano-computed tomography (nano-CT) and iodine staining techniques were used to obtain the two-dimensional (2D) radiographs of the FMMs. Materialise Mimics software was then used to reconstruct the 3D model of the FMMs.ResultsThe zygomaticus major muscle (ZMM) was divided into trunk fibers and branch fibers. The trunk fibers of the ZMM were subdivided into branch fibers layer-by-layer. Adipose tissue in the cheek was not a mass of unorganized fat. It was separated and fixed by branch fibers. Moreover, the trunk fibers of the ZMM were directly connected to the levator anguli oris (LAO), not the skin. On the contrary, the ZMM was connected to the skin by its subdivided branch fibers indirectly. The muscle fibers in the modiolus were organized, rather than disorganized. In other words, the terminal of the trunk fibers of the ZMM was located in the LAO. Moreover, the terminal of the trunk fibers of the LAO was located at the terminal of the trunk fibers of the musculus depressor anguli oris at the corner of the mouth. Furthermore, the levator labii superioris alaeque nasi was not directly connected to the orbicularis oris muscle. It was connected to the combination of the LLS and the rhinaeus.ConclusionsAlthough nano-CT has many disadvantages, it enabled the 3D anatomical study of the FMMs in relation to the NLF when combined with iodine staining. We imported the 2D images obtained by nano-CT scanning into the Mimics software, successfully reconstructed the FMMs, and finally obtained images of complex 3D structures of the FMMs. The shapes, positions, and 3D spatial relationships of the FMMs were clearly visualized. The novel insights into the 3D anatomy of the FMMs may help understand the formation of the NLF. Finally, the results of this study may help improve the rejuvenation surgery of the NLF soon.
机译:目的研究旨在引入一种新的方法来研究与鼻折叠(NLF)相关的面部模拟肌肉(FMMS),并实现FMMS的复杂立体(3D)结构和空间关系的可视化。使用计算的断层扫描(纳米CT)和碘染色技术用于获得FMMS的二维(2D)X光片。然后用于实现模拟软件,用于重建FMMS的3D模型。Zygomaticus主要肌肉(ZMM)分为干纤维和分支纤维。 ZMM的干燥纤维被细分为逐层分支纤维。脸颊中的脂肪组织不是无组织脂肪的质量。它被分支纤维分离并固定。此外,ZMM的干纤维直接连接到喇叭安格里奥里斯(老挝),而不是皮肤。相反,ZMM间接地通过其细分的分支纤维连接到皮肤。组织了Modiolus中的肌肉纤维,而不是杂化。换句话说,ZMM的主干纤维的终端位于老挝。此外,老挝的躯干纤维的末端位于嘴角的躯干尖端的躯干纤维的末端。此外,levator labii优势alaeque nasi没有直接连接到orbicularis oris肌肉。它与LLS和rhinaeus的组合连接。虽然纳米CT具有许多缺点,但它使FMMS与碘染色结合时的FMMS对NLF的3D解剖学研究。我们将通过纳米CT扫描获得的2D图像导入模拟软件,成功地重建了FMMS,最后获得了FMMS的复杂3D结构的图像。 FMMS的形状,位置和3D空间关系清晰可视化。对FMMS的3D解剖结构的新颖见解可能有助于了解NLF的形成。最后,本研究的结果可能有助于改善NLF的复兴手术。

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