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超声器械操作过程中灌洗液进入牙周袋的情况。

The penetration of lavage solution into the periodontal pocket during ultrasonic instrumentation.

作者信息

Nosal G, Scheidt M J, O'Neal R, Van Dyke T E

机构信息

U.S. Army, Ft. Gordon, GA.

出版信息

J Periodontol. 1991 Sep;62(9):554-7. doi: 10.1902/jop.1991.62.9.554.

Abstract

The purpose of this study was to evaluate the penetration depth of the water coolant for medicament lavage of an ultrasonic device into the periodontal pocket. Patients having teeth previously planned for extraction, and exhibiting probing depths 3 mm or greater were used in this study. A reference notch was placed on the tooth at the level of the gingival margin and the probing attachment level (PAL) was measured from the base of the notch to the base of the pocket. The ultrasonic device, with an EWPP tip and equipped with a reservoir of erythrocin dye colored coolant, was activated and moved in a vertical direction from the gingival margin to the apical extent of the pocket. The tooth was extracted and the penetration depth (PD) of the dye-colored water spray was measured from the reference notch to the apical limit of the stained subgingival plaque. The tooth was counter stained with methylene blue to determine the coronal extent of the connective tissue attachment. Pearsons' Product Moment Correlation Coefficient for the PAL and PD was calculated. Dye-stained root surface was observed along the full extent of the probe tip's penetration path. The dispersion of the dye-colored stain was localized to the area of the ultrasonic probe with very little lateral dispersion. The ultrasonic instrument may be an effective system to mechanically remove plaque and calculus at the same time as delivering a chemotherapeutic agent. The limited dispersion of the liquid dye would indicate that chemical plaque control with this delivery system is dependent upon thorough debridement with the instrument such that all affected surfaces are instrumented.

摘要

本研究的目的是评估超声设备用于药物冲洗的水冷却剂在牙周袋中的渗透深度。本研究使用了先前计划拔牙且探诊深度为3毫米或更深的患者。在牙龈边缘水平的牙齿上放置一个参考切口,并从切口底部到牙周袋底部测量探诊附着水平(PAL)。激活带有EWPP尖端并配备了红霉素染料着色冷却剂储存器的超声设备,并从牙龈边缘向牙周袋的根尖方向垂直移动。拔牙后,测量染料着色水喷雾从参考切口到染色龈下菌斑根尖界限的渗透深度(PD)。用亚甲蓝对牙齿进行复染,以确定结缔组织附着的冠方范围。计算PAL和PD的皮尔逊积矩相关系数。沿着探头尖端的整个穿透路径观察到染料染色的根面。染料着色污渍的扩散局限于超声探头区域,横向扩散非常小。超声仪器可能是一种有效的系统,可在输送化疗药物的同时机械清除菌斑和牙石。液体染料的有限扩散表明,使用这种输送系统进行化学菌斑控制取决于用器械进行彻底清创,以便对所有受影响的表面进行器械处理。

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