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Magnetic Resonance Imaging in the Diagnosis of Periodontal and Periapical Disease

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Date 2023 Aug 29
PMID 37641959
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Abstract

Objectives: Early pre-clinical inflammatory changes in periodontal and/or periapical lesions, which typically precede bone loss, are challenging to diagnose using ionizing-radiation-based imaging modalities. MRI provides relevant additional diagnostic information of inflammatory processes in soft and hard tissues. The aim of the present study is to undertake a systematic review of the literature on MRI in the diagnosis of periodontal and/or periapical disease.

Methods And Materials: The PubMed/MEDLINE and Scopus bibliographic databases were searched (2000-2021) using the search string: ("MRI" or "magnetic resonance imaging") and ("periodontitis" or "periodontal" or "apical pathology" or "endodontic pathology" or "periapical" or "furcation" or "intrabony"). The search was limited to studies published in English. The studies were assessed independently by three reviewers, focusing on the MRI sequences, imaging modalities (radiographs, cone beam CT (CBCT), and MRI), disease definition, assessed parameters, and outcome measurements.

Results: The search strategy yielded 34 studies, from which 13 were included. Overall, the findings of MRI were in agreement with CBCT. The studies showed that MRI provided diagnostic information of the hard and soft tissue components affected by periodontal and/or periapical disease with a fairly high sensitivity and specificity. However, the assessed parameters ( MRI acquisition protocols, and disease definition) differed substantially.

Conclusions: The included studies indicate that the use of MRI in the diagnosis of periodontal and/or periapical disease is feasible and promising. More studies are needed to define the accuracy of this non-ionizing-radiation-based diagnostic modality, in the assessment of periodontal and/or periapical lesions.

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References
1.
Dommisch H, Walter C, Dannewitz B, Eickholz P . Resective surgery for the treatment of furcation involvement: A systematic review. J Clin Periodontol. 2020; 47 Suppl 22:375-391. DOI: 10.1111/jcpe.13241. View

2.
Patel S . New dimensions in endodontic imaging: Part 2. Cone beam computed tomography. Int Endod J. 2009; 42(6):463-75. DOI: 10.1111/j.1365-2591.2008.01531.x. View

3.
Whiting P, Rutjes A, Westwood M, Mallett S, Deeks J, Reitsma J . QUADAS-2: a revised tool for the quality assessment of diagnostic accuracy studies. Ann Intern Med. 2011; 155(8):529-36. DOI: 10.7326/0003-4819-155-8-201110180-00009. View

4.
Bracher A, Hofmann C, Bornstedt A, Hell E, Janke F, Ulrici J . Ultrashort echo time (UTE) MRI for the assessment of caries lesions. Dentomaxillofac Radiol. 2013; 42(6):20120321. PMC: 3667523. DOI: 10.1259/dmfr.20120321. View

5.
Sedlacik J, Kutzner D, Khokale A, Schulze D, Fiehler J, Celik T . Optimized 14 + 1 receive coil array and position system for 3D high-resolution MRI of dental and maxillomandibular structures. Dentomaxillofac Radiol. 2015; 45(1):20150177. PMC: 5083890. DOI: 10.1259/dmfr.20150177. View