Development and validation of an open-source tool for opportunistic screening of osteoporosis from hip CT images

Author:

Uemura Keisuke1ORCID,Otake Yoshito2ORCID,Takashima Kazuma3ORCID,Hamada Hidetoshi1ORCID,Imagama Takashi4,Takao Masaki5ORCID,Sakai Takashi4,Sato Yoshinobu2ORCID,Okada Seiji3ORCID,Sugano Nobuhiko1ORCID

Affiliation:

1. Department of Orthopaedic Medical Engineering, Graduate School of Medicine, Osaka University, Suita, Japan

2. Division of Information Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, Japan

3. Department of Orthopaedics, Graduate School of Medicine, Osaka University, Suita, Japan

4. Department of Orthopaedics, Graduate School of Medicine, Yamaguchi University, Ube, Japan

5. Department of Bone and Joint Surgery, Graduate School of Medicine, Ehime University, Toon, Japan

Abstract

AimsThis study aimed to develop and validate a fully automated system that quantifies proximal femoral bone mineral density (BMD) from CT images.MethodsThe study analyzed 978 pairs of hip CT and dual-energy X-ray absorptiometry (DXA) measurements of the proximal femur (DXA-BMD) collected from three institutions. From the CT images, the femur and a calibration phantom were automatically segmented using previously trained deep-learning models. The Hounsfield units of each voxel were converted into density (mg/cm3). Then, a deep-learning model trained by manual landmark selection of 315 cases was developed to select the landmarks at the proximal femur to rotate the CT volume to the neutral position. Finally, the CT volume of the femur was projected onto the coronal plane, and the areal BMD of the proximal femur (CT-aBMD) was quantified. CT-aBMD correlated to DXA-BMD, and a receiver operating characteristic (ROC) analysis quantified the accuracy in diagnosing osteoporosis.ResultsCT-aBMD was successfully measured in 976/978 hips (99.8%). A significant correlation was found between CT-aBMD and DXA-BMD (r = 0.941; p < 0.001). In the ROC analysis, the area under the curve to diagnose osteoporosis was 0.976. The diagnostic sensitivity and specificity were 88.9% and 96%, respectively, with the cutoff set at 0.625 g/cm2.ConclusionAccurate DXA-BMD measurements and diagnosis of osteoporosis were performed from CT images using the system developed herein. As the models are open-source, clinicians can use the proposed system to screen osteoporosis and determine the surgical strategy for hip surgery.Cite this article: Bone Joint Res 2023;12(9):590–597.

Publisher

British Editorial Society of Bone & Joint Surgery

Subject

Orthopedics and Sports Medicine,Surgery

Reference31 articles.

1. Diagnostic criteria for primary osteoporosis: year 2012 revision;Soen;J Bone Miner Metab,2013

2. European guidance for the diagnosis and management of osteoporosis in postmenopausal women;Kanis;Osteoporos Int,2019

3. No authors listed . Assessment of fracture risk and its application to screening for postmenopausal osteoporosis: report of a WHO study group [‎Meeting held in Rome from 22 to 25 June 1992]‎ . World Health Organization . 1994 . https://apps.who.int/iris/handle/10665/39142 ( date last accessed 11 August 2023 ).

4. Osteoporosis case ascertainment strategies in European and Asian countries: a comparative review;Burden;Osteoporos Int,2021

5. Osteoporosis: current screening methods, novel techniques, and preoperative assessment of bone mineral density;Al-Hourani;Bone Joint Res,2021

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