Intelligent Bone Age Assessment: An Automated System to Detect a Bone Growth Problem Using Convolutional Neural

Mohd Asyraf Zulkifley1, Nur Ayuni Mohamed1, Siti Raihanah Abdani1

  • 1Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Selangor 43600, Malaysia.

Insights

Skeletal bone age assessment for children can now be automated using the Attention-Xception Network (AXNet). This AI system accurately predicts bone age from X-rays, reducing errors and aiding in diagnosing growth disorders.

Area of Science:

  • Medical Imaging
  • Artificial Intelligence in Healthcare
  • Pediatric Endocrinology

Background:

  • Skeletal bone age assessment from X-rays is crucial for detecting growth anomalies in children.
  • Current methods like Greulich-Pyle and Tanner-Whitehouse are subjective and prone to observer bias.
  • Accurate bone age assessment aids in screening for growth disorders, genetic conditions, and endocrine issues.

Purpose of the Study:

  • To develop an automated system for accurate skeletal bone age assessment.
  • To overcome the limitations of manual assessment methods.
  • To introduce the Attention-Xception Network (AXNet) for objective bone age prediction.

Main Methods:

  • Proposed an automated system named Attention-Xception Network (AXNet).
  • Implemented an image normalization module for standardizing X-ray images (hand region extraction, rotation, alignment).
  • Utilized a deep learning-based regressor with spatial-attention mechanisms for bone age prediction.

Main Results:

  • AXNet achieved a low mean absolute error of 7.699 months.
  • The system demonstrated a mean squared error of 108.869 months².
  • The automated assessment showed potential for clinical use with less than a year's error.

Conclusions:

  • The Attention-Xception Network (AXNet) offers an objective and accurate method for skeletal bone age assessment.
  • AXNet has the potential to assist radiologists and clinicians in evaluating bone age.
  • Automated assessment can improve the efficiency and reliability of diagnosing pediatric growth abnormalities.

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