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临床试验/NCT03729843
NCT03729843Unknown不适用

Cone Beam Computed Tomography Versus Intraoral Digital Radiography in Detection and Measurements of Simulated Periodontal Bone Defects Diagnostic Accuracy Study

Marwa Mohamed Ali0 个研究点目标入组 15 人开始时间: 2018年11月10日最近更新:
适应症

试验速览

阶段
不适用
发起方
入组人数
15
主要终点
CBCT and Intraoral Digital Radiography

研究概览

简要总结

The selection of a regenerative approach is primarily based on the configuration of the intrabony defect and esthetic risk of treatment. Accurate diagnosis of periodontal bone defects, such as vertical bone defects or furcation involvements, is a challenge for dental clinicians. A deficiency in comprehensive diagnosis may result in: 1) compromised prognosis of teeth; 2) changes in treatment plan; 3) unnecessary treatment; 4) longer treatment time; and 5) unanticipated treatment costs.

Thus, it is very important to have access to accurate diagnostic tools that can aid clinicians in cultivating an appropriate treatment choice. Periodontal assessments utilizing both clinical and radiographic examinations allow for the establishment of an accurate diagnosis as well as subsequent treatment choices.

Radiography plays an important role in periodontal diagnosis mainly because radiographs can reveal the amount and type of damage caused to the alveolar bone.

Digital imaging technique has created challenging opportunities for dental radiographic diagnosis. Digora was the first digital system for dental radiography based on a photostimulable phosphor technology.

E9ickholz et al. at 1999 compared linear measurements of interproximal bone loss on digitized radiographic images after application of different filters to the gold standard of intrasurgical measurements they concluded that all radiographic assessments on the digitized images came close to the intasurgical gold standard.

2D technologies do not allow for measurement of the bucco-lingual (B-L) width of the defect. Only the vertical height and the mesio-distal (M-D) width of the defect can be measured with 2D images.

Use of 3D volumetric images and 2D images in artificial bone defects have shown that CBCT has a sensitivity of 80% to 100% in detection and classification of bone defects, while intraoral radiographs present a sensitivity of 63% to 67%.

When compared with periapical and panoramic images, the CBCT has also shown an absence of distortion and overlapping, and the dimensions of the images that it presents were compatible with the actual size of the individual.

A few studies have been published comparing CBCT with digital radiography for the detection and measurements of periodontal bone defects.

详细描述

Periodontal disease is caused by an imbalance between bone formation and resorption, leading to an ultimate reduction in bone height. Detection of periodontal disease is important in the prevention of tooth loss. The detection and accurate assessment of the location, extent and configuration of the endosseous defect is important for the determination of the tooth prognosis, the treatment plan and the maintenance procedures.

Regenerative therapies for both intrabony and furcation defects are viable options, but early management of these defects offers the greatest potential for periodontal health. Intrabony defect morphology as well as degree of furcation involvement may affect overall regenerative outcomes and/or optimal treatment strategies.

Radiographic bone loss is also useful for assigning descriptors to indicate severity of periodontitis: <1/3 bone loss = mild, 1/3 to ½ bone loss = moderate, and >½ bone loss = severe. Classification of bony defects given by Papapanou et al. 2000 was used to differentiate bone defects into: Suprabony defects (SB), Infrabony defects (IB), Interradicular defects (IR).For classifying the intrabony defects (IT), the investigators used classification system by Goldman and Cohen 1958 which classified the IT defects into: 1 wall, 2 wall , 3 wall and Combined bone defects (CB). Other bone defects (OB) were classified by their topography as:Bulbous bone contour (BB), Reversed architecture (RA), Dehiscence (DH).

The potentially existing radiological furcation involvement was examined by identifying the furcation upper boundary and furcation lower boundary and was classified as Subclass A, B, and C according to the classification system by Tarnow and Fletcher 1984, where he added the vertical component to the diagnosis of furcation involvement. Subclass based on the vertical bone resorption from the furcation fornix was added.

  • Subclass A: Denotes furcation involvements with vertical bone loss of 3 mm or less.
  • Subclass B: Denotes furcation involvements with vertical bone loss from 4 to 6 mm.
  • Subclass C: Presents with bone loss from the fornix of 7 mm or more.

研究设计

研究类型
Observational
观察模型
Other
时间视角
Other

入排标准

性别
All
接受健康志愿者

入选标准

  • • The selected dry jaws should be intact with no mechanical damage (chips, cracks, or fractures in the alveolar process).
  • The teeth will be naturally attached to human jaws.
  • The study samples will not identified by age or gender group.

排除标准

  • • teeth with metallic restorations to avoid artifacts generation on CBCT scanning.
  • Teeth with anomalies and fractures.

结局指标

主要结局

CBCT and Intraoral Digital Radiography

时间窗: 24 months

Detection and measuring of artificially prepared periodontal bone defects.

次要结局

未报告次要终点

研究者

发起方
Marwa Mohamed Ali
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Marwa Mohamed Ali

Lecturer Assistant of Oral Radiology Department

Cairo University

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