Deep Learning for Osteoporosis Classification Using Hip Radiographs and Patient Clinical Covariates

Biomolecules. 2020 Nov 10;10(11):1534. doi: 10.3390/biom10111534.

Abstract

This study considers the use of deep learning to diagnose osteoporosis from hip radiographs, and whether adding clinical data improves diagnostic performance over the image mode alone. For objective labeling, we collected a dataset containing 1131 images from patients who underwent both skeletal bone mineral density measurement and hip radiography at a single general hospital between 2014 and 2019. Osteoporosis was assessed from the hip radiographs using five convolutional neural network (CNN) models. We also investigated ensemble models with clinical covariates added to each CNN. The accuracy, precision, recall, specificity, negative predictive value (npv), F1 score, and area under the curve (AUC) score were calculated for each network. In the evaluation of the five CNN models using only hip radiographs, GoogleNet and EfficientNet b3 exhibited the best accuracy, precision, and specificity. Among the five ensemble models, EfficientNet b3 exhibited the best accuracy, recall, npv, F1 score, and AUC score when patient variables were included. The CNN models diagnosed osteoporosis from hip radiographs with high accuracy, and their performance improved further with the addition of clinical covariates from patient records.

Keywords: deep learning; ensemble model; hip radiograph; osteoporosis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Aged, 80 and over
  • Bone Density
  • Deep Learning / standards*
  • Female
  • Hip / diagnostic imaging*
  • Humans
  • Male
  • Middle Aged
  • Neural Networks, Computer
  • Osteoporosis / diagnosis
  • Osteoporosis / diagnostic imaging*
  • Predictive Value of Tests
  • ROC Curve
  • Radiography