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鼓膜内的激光诱导组织重塑。

Laser-induced tissue remodeling within the tympanic membrane.

机构信息

University of Saarland, Department of Otorhinolaryngology, Homburg, Germany.

出版信息

J Biomed Opt. 2018 Nov;23(12):1-8. doi: 10.1117/1.JBO.23.12.121614.

Abstract

The tympanic membrane (TM) separates the outer ear from the tympanic cavity. Repeated pathologies can permanently decrease its tension, inducing conductive hearing loss and adhesive processes up to cholesteatoma. The current main therapy is its surgical reconstruction. Even though lasers have been proposed to tighten atrophic TMs, details of this effect, specifically histological analyses, are missing. We therefore used laser pulses to induce TM collagen remodeling in an animal model to compare the histological and electrophysiological effects of different applied laser intensities before entering clinical studies. We irradiated Fuchsin-stained areas of the TM in anesthetized mice with 532-nm laser-pulses of 10 mW for 30 s (0.3 J), 25 mW for 30 s (0.75 J) or 50 mW for 30 s (1.5 J) monitoring hearing with auditory brainstem responses (ABRs). The mice were sacrificed after 2 to 8 weeks and histologically analyzed. An increase in the TM thickness within the defined, stained, and irradiated areas could be observed after 4 weeks. Polarized light microscopy and transmission electron microscopy demonstrated the tissue volume increase majorly due to new collagen-fibrils. Directly after irradiation, ABR thresholds did not increase. We herein demonstrate a controlled laser-induced collagen remodeling within defined areas of the TM. This method might be the prophylactic solution for chronic inflammatory ear pathologies related to decreased TM tension.

摘要

鼓膜(TM)将外耳与鼓室分隔开。反复的病理变化可能会永久降低其张力,导致传导性听力损失和粘连过程,直至胆脂瘤形成。目前的主要治疗方法是手术重建。尽管已经提出激光来收紧萎缩的 TM,但这种效果的细节,特别是组织学分析,仍然缺失。因此,我们在动物模型中使用激光脉冲来诱导 TM 胶原重塑,以比较不同应用激光强度的组织学和电生理学效果,然后再进入临床研究。我们用 532nm 激光脉冲在麻醉小鼠的鼓室内 Fuchsin 染色区域照射 30 秒(0.3J),25mW 照射 30 秒(0.75J)或 50mW 照射 30 秒(1.5J),并用听觉脑干反应(ABR)监测听力。在 2 到 8 周后,将小鼠处死并进行组织学分析。在 4 周后可以观察到在定义的、染色的和照射的区域内 TM 厚度增加。偏光显微镜和透射电子显微镜显示,组织体积的增加主要是由于新的胶原纤维。直接照射后,ABR 阈值没有增加。我们在此证明了在 TM 的定义区域内进行了受控的激光诱导胶原重塑。这种方法可能是预防与 TM 张力降低相关的慢性炎症性耳部疾病的解决方案。

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