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Eur J Radiol ; 23(2): 162-7, 1996 Sep.
Article in English | MEDLINE | ID: mdl-8886731

ABSTRACT

The objective is to develop an automated intelligent diagnostic system for the interpretation of umbilical artery velocity waveforms. An ultrasound instrument with pulsed-wave Doppler is connected to a microcomputer by means of a frame grabber. After data acquisition, umbilical Doppler velocimetry is handled as a pattern recognition (feature extraction and classification) and decision-making problem. Automated image processing (enhancement, smoothing/ thresholding and edge detection) and analysis are used for feature extraction. Six waveform indices obtained by feature extraction are used as input layer to vector quantization which classifies waveforms into six groups. A clinical decision is assigned to each group by the medical expert. Our system is trained by 278 and 380 waveform images of 94 normal and 157 high risk pregnancies, respectively. The system was tested with 193 and 61 images of normal and risky pregnancies; it was demonstrated that sensitivity and specificity of the system are 54.1% and 80.3%, respectively.


Subject(s)
Artificial Intelligence , Diagnosis, Computer-Assisted , Ultrasonography, Doppler, Pulsed , Umbilical Arteries/diagnostic imaging , Blood Flow Velocity , Decision Making , Expert Systems , Female , Gestational Age , Humans , Image Enhancement , Image Processing, Computer-Assisted/instrumentation , Microcomputers , Pattern Recognition, Automated , Pregnancy , Pregnancy Complications/diagnostic imaging , Pregnancy, High-Risk , Software
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