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玻璃离子水门汀应用的进展。第1部分:实验结果及技术描述。

Advances in the use of glass-ionomeric cement. Part 1: Experimental results and portrayal of a technique.

作者信息

Weber B P, Philipps B, Strauchmann B, Lenarz T

机构信息

Department of Otorhinolaryngology, Medizinische Hochschule Hannover, Germany.

出版信息

ORL J Otorhinolaryngol Relat Spec. 1998 Mar-Apr;60(2):111-5. doi: 10.1159/000027576.

Abstract

The objective of this study was to develop a method of cement microapplication using glass-ionomeric cement. The results of an experimental study to design a microapplication method of glass-ionomeric cement (Ionocem) are presented. Typical middle ear implant materials, as well as human temporal bones and middle ear ossicles, were used to test the efficiency of this application method. Two different versions of Ionocem, low and normal viscosity, were tested under different temperatures and with several application tools. Sufficient processing time could be achieved by cooling the cement down to 4 degrees C. A subcutaneous insulin syringe with a milled-off tip proved to be cost-effective, efficient and versatile. Using this instrument, durable and secure cementation between the parts tested could be achieved. This method may be of significant importance in otologic research and microsurgical routine. In part 2, experimental animal results will follow, as the method portrayed was used to secure parts of a totally implantable middle ear hearing device.

摘要

本研究的目的是开发一种使用玻璃离子水门汀进行微应用的方法。本文展示了一项关于设计玻璃离子水门汀(Ionocem)微应用方法的实验研究结果。使用典型的中耳植入材料以及人类颞骨和中耳听小骨来测试该应用方法的效率。在不同温度下,使用几种应用工具对两种不同版本的Ionocem(低粘度和正常粘度)进行了测试。通过将水门汀冷却至4摄氏度,可以获得足够的操作时间。事实证明,一种尖端磨平的皮下胰岛素注射器既经济高效又用途广泛。使用该器械,可以在测试部件之间实现持久且稳固的粘结。这种方法在耳科学研究和显微外科常规操作中可能具有重要意义。在第二部分中,将展示实验动物的结果,因为所描述的方法被用于固定完全植入式中耳听力装置的部件。

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