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不同冲洗方法对牙本质超声器械操作过程中产热的影响。

Heat generation during ultrasonic instrumentation of dentin as affected by different irrigation methods.

作者信息

Nicoll B K, Peters R J

机构信息

Naval Dental Research Institute, Detachment Bethesda, MD, USA.

出版信息

J Periodontol. 1998 Aug;69(8):884-8. doi: 10.1902/jop.1998.69.8.884.

Abstract

Heat is produced by magnetostrictive ultrasonic scalers which may cause injury to pulpal and periodontal tissues. Water coolant flows around the instrument stack and is directed at the instrument tip to reduce the generation of heat. Sound surgical practice requires the use of a sterile coolant for ultrasonic scaling during surgery. Intermittent bulb irrigation is one way to deliver sterile coolant when using ultrasonic scalers not equipped with a dedicated sterile water reservoir. The purpose of this study was to compare the temperature rise in dentin during ultrasonic scaling using either ultrasonic handpiece irrigation or intermittent bulb irrigation. Twenty dentin/cementum root slabs were prepared for each thickness of 0.5, 1.5, and 2.5 mm. A 3.0 mm x 1.5 mm field was outlined on each slab to indicate the area of intended instrumentation. Each slab was mounted such that a thermocouple placed in contact with dentin opposite the area of instrumentation was shielded from irrigation. Twenty samples of each thickness were ultrasonically scaled during which dentin temperature was recorded every 5 seconds over a 30-second period. All 60 slabs were first treated with dental unit ultrasonic handpiece water irrigation, followed by no irrigation, and finally by bulb irrigation with sterile saline. Repeated measures analysis of variance indicated that there were differences among the three treatment groups for temperature change over the course of the study (P < 0.001). Dentin temperature increased with both decreasing slab thickness and with increasing duration of instrumentation. However, only scaling without irrigation produced a rise in dentin temperature from baseline to a level reported as deleterious to pulpal and periodontal tissues. Bulb syringe irrigation delivered as a continuous drip and ultrasonic unit water spray minimized heat generation to physiologically tolerable levels. Intermittent bulb irrigation appears to be a satisfactory alternative to use of ultrasonic scaler water spray for cooling during ultrasonic scaling at surgery.

摘要

磁致伸缩式超声洁牙机产生热量,这可能会对牙髓和牙周组织造成损伤。水冷却剂围绕器械组流动,并导向器械尖端以减少热量产生。良好的外科操作规范要求在手术期间使用无菌冷却剂进行超声洁治。当使用未配备专用无菌水箱的超声洁牙机时,间歇性球囊冲洗是输送无菌冷却剂的一种方法。本研究的目的是比较使用超声机头冲洗或间歇性球囊冲洗进行超声洁治时牙本质中的温度升高情况。制备了20个牙本质/牙骨质根片,厚度分别为0.5、1.5和2.5毫米。在每个根片上划出一个3.0毫米×1.5毫米的区域,以指示预期器械操作的区域。每个根片的安装方式是,将一个热电偶放置在与器械操作区域相对的牙本质接触处,并使其免受冲洗的影响。对每种厚度的20个样本进行超声洁治,在此期间,在30秒内每隔5秒记录一次牙本质温度。所有60个根片首先用牙科设备超声机头水冲洗处理,然后不冲洗,最后用无菌盐水进行球囊冲洗。重复测量方差分析表明,在研究过程中,三个治疗组的温度变化存在差异(P < 0.001)。牙本质温度随着根片厚度的减小和器械操作时间的增加而升高。然而,只有不冲洗的洁治会使牙本质温度从基线升高到对牙髓和牙周组织有害的水平。以连续滴注方式进行的球囊注射器冲洗和超声设备喷水可将热量产生降至生理可耐受水平。在手术中进行超声洁治时,间歇性球囊冲洗似乎是使用超声洁牙机喷水进行冷却的一种令人满意的替代方法。

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