PROTOTYPE ULTRA WIDEBAND RADAR SYSTEM FOR BLADDER MONITORING APPLICATIONS
Author(s) -
Martin O’Halloran,
Fearghal Morgan,
Daniel FloresTapia,
Dallan Byrne,
Martin Glavin,
Edward Jones
Publication year - 2012
Publication title -
progress in electromagnetics research c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.341
H-Index - 34
ISSN - 1937-8718
DOI - 10.2528/pierc12080805
Subject(s) - wideband , radar , radar systems , remote sensing , computer science , engineering , telecommunications , geology , electrical engineering
The aim of this study is to address the management of urinary problems by detecting changes in the volume of urine within the human bladder using low cost, low power, wearable Ultra Wideband (UWB) sensors and signal processing techniques. The paper describes experiments on the classiflcation of six three-layer dielectrically representative bladder phantoms, mimicking a range of muscle and bladder wall-to-wall distances. The process involves the illumination of the bladder with a UWB pulse. Due to the dielectric contrast between urine and bladder wall tissue at microwave frequencies, an electromagnetic re∞ection is generated at both the anterior and posterior bladder wall. These re∞ections are recorded, the salient features are extracted and processed by a classiflcation algorithm to estimate the volume of urine present in the bladder. To evaluate the prototype system, a number of physical bladder phantoms were constructed, each mimicking bladders of difierent volumes. Principal Component Analysis (PCA) was applied and the processed features were classifled by a K-Nearest Neighbour learning algorithm to estimate the state of the bladder (small, medium or full). The paper describes the bladder phantom prototype systems and the experimental setup. Results illustrate detection of phantom bladder states with an accuracy of up to 91%.
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