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犬牙超声洁备后牙龈组织的微循环变化。

Microcirculation changes in gingival tissue after ultrasonic tooth preparation in beagle dogs.

机构信息

Kanagawa Dental University, Graduate School of Dentistry, Department of Oral Science, Kanagawa, Japan.

Kanagawa Dental University, Graduate School of Dentistry, Department of Critical Care Medicine and Dentistry, Kanagawa, Japan.

出版信息

J Appl Oral Sci. 2020 Feb 7;28:e20190145. doi: 10.1590/1678-7757-2019-0145. eCollection 2020.

Abstract

OBJECTIVE

Ultrasonic wave technology is widely used during dental treatments. We previously demonstrated that this method protects the gingival tissue. However, the physiological change on the gingival microvasculature caused by this method remains unclear. The aim of this study was to investigate the relationship between the morphological and physiological effects on gingival microcirculation when preparing teeth, using the conventional dental turbine or ultrasonic method.

METHODOLOGY

The lower premolar teeth of beagle dogs were prepared along the gingival margin by using a dental turbine or ultrasonic wave instrument. Gingival vasculature changes were investigated using scanning electron microscopy for corrosion resin casts. Gingival blood flow at the preparation site was determined simultaneously by laser Doppler flowmetry. These assessments were performed immediately (Day 0), at 7 days and 30 days after tooth preparation.

RESULTS

At day 0, in the turbine group, blood vessels were destroyed and some resin leaked. Furthermore, gingival blood flow at the site was significantly increased. In contrast, the ultrasonic group demonstrated nearly normal vasculature and gingival blood flow similar to the non-prepared group for 30 days after preparation. No significant alterations occurred in gingival circulation 30 days after either preparation; however, the turbine group revealed obvious morphological changes.

CONCLUSIONS

Based on multiple approach analyses, this study demonstrated that ultrasonic waves are useful for microvascular protection in tooth preparation. Compared with a dental turbine, ultrasonic wave instruments caused minimal damage to gingival microcirculation. Tooth preparation using ultrasonic wave instruments could be valuable for protecting periodontal tissue.

摘要

目的

超声波技术在牙科治疗中被广泛应用。我们之前的研究表明,该方法可以保护牙龈组织。然而,这种方法对牙龈微血管的生理变化尚不清楚。本研究旨在探讨常规涡轮机或超声法备牙时对牙龈微循环的形态和生理影响之间的关系。

方法

使用涡轮机或超声仪器沿牙龈边缘备取下颌前磨牙。通过扫描电子显微镜对腐蚀树脂铸件进行研究,观察牙龈血管变化。同时,通过激光多普勒血流仪测定备牙部位的牙龈血流。这些评估在即刻(第 0 天)、牙预备后 7 天和 30 天进行。

结果

在第 0 天,涡轮组的血管被破坏,部分树脂泄漏。此外,该部位的牙龈血流明显增加。相比之下,超声组在备牙后 30 天内显示出几乎正常的血管和类似于未备牙组的牙龈血流。两种备牙方法 30 天后牙龈循环均无明显变化,但涡轮组显示出明显的形态变化。

结论

通过多方法分析,本研究表明超声波在牙预备时对微血管保护有用。与涡轮机相比,超声仪器对牙龈微循环的损伤最小。使用超声仪器备牙可能有助于保护牙周组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1b6/6999118/88f484756d5a/1678-7757-jaos-28-e20190145-gf01.jpg

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