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使用偏振光显微镜观察人类和恒河猴声带内的胶原网络。

Visualizing collagen network within human and rhesus monkey vocal folds using polarized light microscopy.

作者信息

Julias Margaret, Riede Tobias, Cook Douglas

机构信息

Division of Engineering, New York University, Abu Dhabi, United Arab Emirates.

出版信息

Ann Otol Rhinol Laryngol. 2013 Feb;122(2):135-44. doi: 10.1177/000348941312200210.

Abstract

OBJECTIVES

Collagen fiber content and orientation affect the viscoelastic properties of the vocal folds, determining oscillation characteristics during speech and other vocalization. The investigation and reconstruction of the collagen network in vocal folds remains a challenge, because the collagen network requires at least micron-scale resolution. In this study, we used polarized light microscopy to investigate the distribution and alignment of collagen fibers within the vocal folds.

METHODS

Data were collected in sections of human and rhesus monkey (Macaca mulatta) vocal folds cut at 3 different angles and stained with picrosirius red.

RESULTS

Statistically significant differences were found between different section angles, implying that more than one section angle is required to capture the network's complexity. In the human vocal folds, the collagen fiber distribution continuously varied across the lamina propria (medial to lateral). Distinct differences in birefringence distribution were observed between the species. For the human vocal folds, high birefringence was observed near the thyroarytenoid muscle and near the epithelium. However, in the rhesus monkey vocal folds, high birefringence was observed near the epithelium, and lower birefringence was seen near the thyroarytenoid muscle.

CONCLUSIONS

The differences between the collagen networks in human and rhesus monkey vocal folds provide a morphological basis for differences in viscoelastic properties between species.

摘要

目的

胶原纤维的含量和取向会影响声带的粘弹性,决定言语及其他发声过程中的振动特性。声带中胶原网络的研究与重建仍是一项挑战,因为胶原网络至少需要微米级分辨率。在本研究中,我们使用偏光显微镜来研究声带内胶原纤维的分布和排列。

方法

收集人类和恒河猴(猕猴)声带以3种不同角度切割的切片数据,并用天狼星红染色。

结果

在不同切片角度之间发现了具有统计学意义的差异,这意味着需要不止一个切片角度来捕捉网络的复杂性。在人类声带中,胶原纤维分布在固有层(内侧至外侧)上持续变化。在不同物种之间观察到双折射分布存在明显差异。对于人类声带,在甲杓肌附近和上皮附近观察到高双折射。然而,在恒河猴声带中,在上皮附近观察到高双折射,而在甲杓肌附近观察到较低的双折射。

结论

人类和恒河猴声带中胶原网络的差异为物种间粘弹性特性的差异提供了形态学基础。

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本文引用的文献

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Adapted to roar: functional morphology of tiger and lion vocal folds.适应咆哮:虎和狮的声带的功能形态。
PLoS One. 2011;6(11):e27029. doi: 10.1371/journal.pone.0027029. Epub 2011 Nov 2.
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Disarrangement of collagen fibers in Reinke's edema.任克氏水肿中胶原纤维排列紊乱。
Laryngoscope. 2008 Aug;118(8):1500-3. doi: 10.1097/MLG.0b013e3181770955.

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