Department of Oral Biology, Augusta University, Augusta, GA, USA.
Department of Periodontics, The Dental College of Georgia at Augusta University, Augusta, GA, USA.
J Periodontal Res. 2019 Feb;54(1):1-9. doi: 10.1111/jre.12585. Epub 2018 Jul 4.
Deepened periodontal pockets exert a significant pathological burden on the host and its immune system, particularly in a patient with generalized moderate to severe periodontitis. This burden is extensive and longitudinal, occurring over decades of disease development. Considerable diagnostic and prognostic successes in this regard have come from efforts to measure the depths of the pockets and their contents, including level of inflammatory mediators, cellular exudates and microbes; however, the current standard of care for measuring these pockets, periodontal probing, is an analog technology in a digital age. Measurements obtained by probing are variable, operator dependent and influenced by site-specific factors. Despite these limitations, manual probing is still the standard of care for periodontal diagnostics globally. However, it is becoming increasingly clear that this technology needs to be updated to be compatible with the digital technologies currently being used to image other orofacial structures, such as maxillary sinuses, alveolar bone, nerve foramina and endodontic canals in 3 dimensions. This review aims to summarize the existing technology, as well as new imaging strategies that could be utilized for accurate evaluation of periodontal pocket dimensions.
深度牙周袋对宿主及其免疫系统造成重大病理负担,尤其在患有广泛性中重度牙周炎的患者中。这种负担广泛且具有纵向性,在疾病发展的数十年间持续存在。在这方面,通过测量牙周袋的深度及其内容物(包括炎症介质、细胞渗出物和微生物水平),已经取得了相当大的诊断和预后成功;然而,目前测量这些口袋的标准护理方法,即牙周探查,是数字时代的模拟技术。探测获得的测量值具有变异性,依赖于操作者,并且受到特定部位因素的影响。尽管存在这些局限性,手动探查仍然是全球牙周病诊断的标准护理方法。然而,越来越明显的是,这项技术需要更新,以与当前用于 3 维成像其他口腔结构(如上颌窦、牙槽骨、神经孔和牙髓腔)的数字技术兼容。这篇综述旨在总结现有的技术,以及可用于准确评估牙周袋尺寸的新成像策略。