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Fracture Detection in Wrist X-ray Images Using Deep Learning-Based Object Detection Models.
Fırat Hardalaç1, Fatih Uysal1,2, Ozan Peker1
1Department of Electrical and Electronics Engineering, Faculty of Engineering, Gazi University, Ankara TR 06570, Turkey.
Sensors (Basel, Switzerland)
|February 15, 2022
Summary
This study developed a deep learning model for wrist fracture detection using X-ray images. The unique
Area of Science:
- Radiology
- Artificial Intelligence
- Medical Imaging
Background:
- Hospitals, particularly emergency departments, manage numerous wrist fracture cases.
- Accurate diagnosis relies on medical imaging, patient records, and physical examination.
- Physician support is crucial for timely and correct fracture diagnosis.
Purpose of the Study:
- To implement deep learning for automated wrist fracture detection on X-ray images.
- To assist physicians in diagnosing wrist fractures, especially in emergency settings.
- To develop a novel, high-performance detection model.
Main Methods:
- Evaluated 20 deep learning object detection procedures using models like Faster R-CNN and RetinaNet on a wrist X-ray dataset.
- Developed five ensemble models to enhance detection accuracy.
- Created a unique ensemble model, 'wrist fracture detection-combo (WFD-C)'.
Main Results:
- The WFD-C model achieved the highest detection performance.
- Achieved an average precision (AP50) of 0.8639 with the WFD-C model.
- Compared 26 different fracture detection models.
Conclusions:
- Deep learning models, particularly ensemble approaches, show significant promise for wrist fracture detection.
- The developed WFD-C model offers a robust tool to support clinical diagnosis.
- This AI-driven approach can enhance efficiency in emergency medical services.
Keywords:
X-rayartificial intelligencebiomedical image processingbone fracturesdeep learningfracture detectionobject detectiontransfer learningwristMore Related Videos
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