Slak Bartosz, Daabous Andrew, Bednarz Wojciech, Strumban Emil, Maev Roman Gr
The Institute for Diagnostic Imaging Research, University of Windsor, 688 University Ave., Windsor, ON, Canada N9A 5R5.
The Institute for Diagnostic Imaging Research, University of Windsor, 688 University Ave., Windsor, ON, Canada N9A 5R5.
Ann Anat. 2015 May;199:98-103. doi: 10.1016/j.aanat.2014.02.010. Epub 2014 Mar 25.
Knowledge of periodontal anatomy is essential when performing surgical and non-surgical procedures in the field of oral healthcare. Gingival thickness (GT) is often assessed for this purpose. A dental system prototype was recently developed for quantitative, non-invasive GT assessment by high-frequency (HF) ultrasound. Laboratory trials were conducted to validate system performance against a traditional method of assessment. A system with a 50 MHz broadband, spherically-focused transducer was used. The transducer was housed in a small, hand-held probe equipped with a continuous water supply. A-scans were obtained and thickness at each location was determined. For comparison, the traditional method of transgingival probing through tissue with an endodontic k-file needle was also implemented. Preliminary experiments were performed on phantoms simulating the anatomical and acoustic properties of human periodontal tissues. A porcine cadaver was obtained for further laboratory trials. The speed of sound through porcine gingiva was determined to be 1564 ± 21 m/s. Finally, a multiple-point experiment involved GT assessment in an array of locations on the buccal gingival surface in the fourth quadrant. Ultrasonic measurements were found to yield similar GT values to those obtained from invasive methods. Results obtained in this experiment validate the applicability of ultrasound as a diagnostic tool for assessing periodontal anatomy.
在口腔医疗领域进行手术和非手术操作时,牙周解剖学知识至关重要。为此,牙龈厚度(GT)常被评估。最近开发了一种牙科系统原型,用于通过高频(HF)超声进行定量、非侵入性的GT评估。进行了实验室试验,以对照传统评估方法验证系统性能。使用了一个具有50 MHz宽带、球形聚焦换能器的系统。该换能器安装在一个配备连续供水的小型手持探头中。获取A扫描并确定每个位置的厚度。为作比较,还采用了用牙髓锉针经牙龈组织穿刺探测的传统方法。在模拟人类牙周组织解剖和声学特性的模型上进行了初步实验。获取了一头猪的尸体用于进一步的实验室试验。经测定,超声波在猪牙龈中的传播速度为1564±21米/秒。最后,进行了一项多点实验,在第四象限颊侧牙龈表面的一系列位置进行GT评估。发现超声测量得出的GT值与侵入性方法获得的GT值相似。本实验获得的结果验证了超声作为评估牙周解剖学诊断工具的适用性。