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关于新型高速气涡轮手机自身抗回吸能力的体外研究。

In vitro study of anti-suck-back ability by themselves on new high-speed air turbine handpieces.

机构信息

Department of Periodontics and Endodontics, Tsurumi University School of Dental Medicine, Yokohama, Japan.

出版信息

Dent Mater J. 2010 Nov;29(6):649-54. doi: 10.4012/dmj.2010-008. Epub 2010 Nov 19.

Abstract

The anti-suck-back ability of five new high-speed air turbine handpiece models was evaluated in this study. First, suck-back pressure with water displacement within a glass tube was measured. Next, under three different conditions, how many on-off times it takes before fluorescent stains became visible on a piece of gauze at the exhaust vent was counted and the presence of fluorescent stains on the exhaust vents itself was examined. As a result, the water height for each part of one handpiece, the TWINPOWER TURBINE PAR-4HX-O, was below 0 mm. Except for under full emersion, this model, the TWINPOWER TURBINE PAR-4HX-O, did not have any visible fluorescence penetration to the exhaust vent even after 500 on-off switches under fume/mist conditions. Conversely, the other handpieces (Ti-Max X700L, T1 CONTROL, SYNEA TA-98CLED, GENTLE silence LUX 8000B) showed suck-back. In conclusion, the first mentioned new turbine handpiece, the TWINPOWER TURBINE PAR-4HX-O, had a possibility of no suck-back by itself. However, full immersion of the whole head of the handpiece which is not completely sealed must be avoided to prevent liquid intake.

摘要

本研究评估了五种新型高速气涡轮手机的抗回吸能力。首先,通过在玻璃管内进行水置换来测量回吸压力。接下来,在三种不同条件下,记录荧光染色剂在排气口的纱布上可见之前的开关次数,并检查排气口本身是否有荧光染色剂。结果,一个名为 TWINPOWER TURBINE PAR-4HX-O 的手机部件的水高低于 0 毫米。除了完全浸没之外,即使在烟雾/雾条件下进行 500 次开关操作后,该模型 TWINPOWER TURBINE PAR-4HX-O 也没有任何荧光穿透到排气口。相比之下,其他手机(Ti-Max X700L、T1 CONTROL、SYNEA TA-98CLED、GENTLE silence LUX 8000B)则出现了回吸现象。总之,新型涡轮手机 TWINPOWER TURBINE PAR-4HX-O 本身不太可能发生回吸现象。然而,为了防止液体吸入,必须避免整个手机头部完全密封的完全浸没。

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