A-Mode Ultrasound Bladder Volume Estimation Algorithm Based on Wavelet Energy Ratio Adaptive Denoising
Abstract
:1. Introduction
2. Theoretical Basis
2.1. Principle of Ultrasound Bladder Volume Estimation
2.2. Principle of Wavelet Threshold Denoising
3. Wavelet Adaptive Denoising Algorithm for Bladder Volume Estimation Based on Energy Ratio
3.1. Wavelet Adaptive Threshold Denoising Algorithm Based on Energy Ratio
3.1.1. Energy Ratio Adaptive Threshold Function
3.1.2. Simulation and Analysis of Wavelet Adaptive Threshold Denoising
3.2. Feature Extraction of Ultrasound Echo Signals
3.2.1. Construction of Cross-Correlation Reference Signals Utilizing Estimated Initial Values
- (1)
- Correlation between the energy and the signal parameters
- (2)
- Relationship between the envelope and the signal parameters
3.2.2. Cross-Correlation Method and Hilbert Envelope Peak Extraction
3.2.3. Reference Signal Simulation and Analysis
3.3. Bladder Volume Fitting
4. Bladder Volume Estimation Experiment
4.1. Experimental Design
4.2. Experiment Results
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Irwin, D.E.; Kopp, Z.S.; Agatep, B.; Milsom, I.; Abrams, P. Worldwide Prevalence Estimates of Lower Urinary Tract Symptoms, Overactive Bladder, Urinary Incontinence and Bladder Outlet Obstruction. BJU Int. 2011, 108, 1132–1138. [Google Scholar] [CrossRef]
- Vaidyanathan, S.; Rao, M.S.; Saleem, A.; Subudhi, C.L.; Rajendran, L.J.; Shrikhande, V.V. Fatal Intra-Peritoneal Bladder Rupture Due to Blocked Catheter in a Paraplegic. Spinal Cord. 1979, 17, 272–277. [Google Scholar] [CrossRef]
- Niu, H.; Yang, S.; Liu, C.; Yan, Y.; Li, L.; Ma, F.; Wang, X.; Pu, F.; Li, D.; Fan, Y. Design of an Ultrasound Bladder Volume Measurement and Alarm System. In Proceedings of the 2011 5th International Conference on Bioinformatics and Biomedical Engineering, Wuhan, China, 10–12 May 2011; pp. 1–4. [Google Scholar]
- Kunin, C.M. Urinary-Catheter-Associated Infections in the Elderly. Int. J. Antimicrob. Agents 2006, 28, 78–81. [Google Scholar] [CrossRef]
- Padmapriya, B.; Kesavamurthy, T.; Selvi, M.S.T.; Gayathri, A. An Intensive Review on the Noninvasive Methods to Measure the Urinary Bladder Volume Using Ultrasound Images. Appl. Mech. Mater. 2014, 573, 803–807. [Google Scholar]
- Molavi, B.; Shadgan, B.; Macnab, A.J.; Dumont, G.A. Noninvasive Optical Monitoring of Bladder Filling to Capacity Using a Wireless near Infrared Spectroscopy Device. IEEE Trans. Biomed. Circuits Syst. 2013, 8, 325–333. [Google Scholar] [CrossRef] [PubMed]
- Fong, D.; Alcantar, A.V.; Gupta, P.; Kurzrock, E.; Ghiasi, S. Non-Invasive Bladder Volume Sensing for Neurogenic Bladder Dysfunction Management. In Proceedings of the 2018 IEEE 15th International Conference on Wearable and Implantable Body Sensor Networks (BSN), Las Vegas, NV, USA, 4–7 March 2018; pp. 82–85. [Google Scholar]
- Shin, S.; Moon, J.; Kye, S.; Lee, K.; Lee, Y.S.; Kang, H.-G. Continuous Bladder Volume Monitoring System for Wearable Applications. In Proceedings of the 2017 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), Jeju, Republic of Korea, 11–15 July 2017; pp. 4435–4438. [Google Scholar]
- Gaubert, V.; Gidik, H.; Koncar, V. Smart Underwear, Incorporating Textrodes, to Estimate the Bladder Volume: Proof of Concept on a Test Bench. Smart Mater. Struct. 2020, 29, 085028. [Google Scholar] [CrossRef]
- Petrican, P.; Sawan, M.A. Design of a Miniaturized Ultrasonic Bladder Volume Monitor and Subsequent Preliminary Evaluation on 41 Enuretic Patients. IEEE Trans. Rehab. Eng. 1998, 6, 66–74. [Google Scholar] [CrossRef] [PubMed]
- Kristiansen, N.K.; Nygaard, H.; Djurhuus, J.C. Clinical Evaluation of a Novel Ultrasound-Based Bladder Volume Monitor. Scand. J. Urol. Nephrol. 2005, 39, 321–328. [Google Scholar] [CrossRef]
- Tanaka, R.; Abe, T. Measurement of the Bladder Volume with a Limited Number of Ultrasonic Transducers. In Proceedings of the 2010 IEEE International Ultrasonics Symposium, San Diego, CA, USA, 11–14 October 2010; pp. 1783–1786. [Google Scholar]
- Niu, H.; Fan, Y.; Yang, S.; Li, L.; Li, D. Design of an ultrasound bladder volume measurement and alarm system based on ARM and DSP. Chin. J. Sci. Instrum. 2011, 32, 1858–1863. [Google Scholar]
- Van Leuteren, P.G.; De Vries, B.A.; De Joode-Smink, G.C.J.; Ten Haken, B.; De Jong, T.P.V.M.; Dik, P. URIKA, Continuous Ultrasound Monitoring for the Detection of a Full Bladder in Children with Dysfunctional Voiding: A Feasibility Study. Biomed. Phys. Eng. Express 2017, 3, 017005. [Google Scholar] [CrossRef]
- Kuru, K.; Ansell, D.; Jones, M.; Watkinson, B.J.; Caswell, N.; Leather, P.; Lancaster, A.; Sugden, P.; Briggs, E.; Davies, C.; et al. Intelligent Autonomous Treatment of Bedwetting Using Non-Invasive Wearable Advanced Mechatronics Systems and MEMS Sensors. Med. Biol. Eng. Comput. 2020, 58, 943–965. [Google Scholar] [CrossRef]
- Xu, J. Wavelet Thresholding Estimation of Density Derivatives from a Negatively Associated Size-Biased Sample. Int. J. Wavelets Multiresolut Inf. Process. 2020, 18, 2050016. [Google Scholar] [CrossRef]
- Sun, J.; Zhao, Y.; Nan, Y.; Ma, J.; Liu, S.; Wang, Q.; Ju, Y. Research on the rail waist defect testing with laser-EMAT ultrasonic and signal processing. Laser J. 2017, 38, 22–25. [Google Scholar]
- Li, X.; Ji, Y.; Wu, J. Self-Correlation Wavelet De-noising Method Used in Highly Accurate Ultrasonic Ranging System. Nanotechnol. Precis. Eng. 2016, 14, 179–185. [Google Scholar]
- Tan, L.; Zhang, L.; Jie, D.; Chen, Y.; Peng, L. Application of improved wavelet threshold de-noising method in harmonic detection. Electr. Meas. Instrum. 2019, 56, 23–26+75. [Google Scholar]
- Liang, W.; Lu, A.; Zhou, Q. A Wavelet Denoising Algorithm of Non-Segmented Threshold Function. Microprocessors 2021, 42, 29–32. [Google Scholar]
- Ren, Z.; Liu, Y.; Liu, G.; Huang, Z. Improved wavelet denoising with dual-threshold and dual-factor function. J. Comput. Appl. 2013, 33, 2595–2598. [Google Scholar] [CrossRef]
- Wu, G.; Wang, C.; Bao, J.; Chen, Y.; Hu, Y. A Wavelet Threshold De-noising Algorithm Based on Adaptive Threshold Function. J. Electron. Inf. Technol. 2014, 36, 1340–1347. [Google Scholar]
- Ma, X.; Liu, Q.; Li, Y.; Lan, Q.; Li, W. Application of Improved Wavelet Denoising Based on Sample Entropy in Quality Inspection of Micromotor. Mach. Tool. Hydraul. 2022, 50, 158–163. [Google Scholar]
- Wu, Y.; Xing, H.; Li, J.; Zhang, Y.; Duan, R. Wavelet denoising algorithm with improved threshold function. J. Electron. Meas. Instrum. 2022, 36, 9–16. [Google Scholar]
- Fessler, J.A.; Hero, A.O. Complete-Data Spaces and Generalized EM Algorithms. In Proceedings of the 1993 IEEE International Conference on Acoustics, Speech, and Signal Processing, Minneapolis, MN, USA, 27–30 April 1993; Volume 4, pp. 1–4. [Google Scholar]
- Lu, Z.; Yang, C.; Wei, G. Hilbert Transform Based Time-of-Flight Estimation of Multi-Echo Ultrasonic Signals and Its Resolution Analysis. IEICE TRANSACTIONS Fundam. Electron. Commun. Comput. Sci. 2014, E97-A, 1962–1965. [Google Scholar] [CrossRef]
- Marks, L.S.; Dorey, F.J.; Macairan, M.L.; Park, C.; DeKernion, J.B. Three-Dimensional Ultrasound Device for Rapid Determination of Bladder Volume. Urology 1997, 50, 341–348. [Google Scholar] [CrossRef] [PubMed]
- Hvarness, H.; Skjoldbye, B.; Jakobsen, H. Urinary Bladder Volume Measurements: Comparison of Three Ultrasound Calculation Methods. Scand. J. Urol. Nephrol. 2002, 36, 177–181. [Google Scholar] [CrossRef] [PubMed]
- Matsumoto, M.; Tsutaoka, T.; Yabunaka, K.; Handa, M.; Yoshida, M.; Nakagami, G.; Sanada, H. Development and Evaluation of Automated Ultrasonographic Detection of Bladder Diameter for Estimation of Bladder Urine Volume. PLoS ONE 2019, 14, e0219916. [Google Scholar] [CrossRef]
- Li, Q.; Griffiths, J.G. Least Squares Ellipsoid Specific Fitting. In Proceedings of the Geometric Modeling and Processing, 2004. Proceedings, Beijing, China, 13–15 April 2004; pp. 335–340. [Google Scholar]
Denoising Algorithm | Soft Threshold Denoising | Hard Threshold Denoising | Literature [23] Threshold Denoising | Literature [24] Threshold Denoising | Threshold Denoising in This Study |
---|---|---|---|---|---|
SNR | 9.2778 | 8.8603 | 10.0531 | 10.1305 | 10.6091 |
RMSE | 0.0813 | 0.0853 | 0.0743 | 0.0737 | 0.0697 |
Method | Time (s) | ||||||
---|---|---|---|---|---|---|---|
Truth Value | − | 2 | 0.4 | 15 | 1 | 0 | − |
Noiseless | Fixed initial value method | 2.0000 | 0.4000 | 10.0000 | 1.0000 | 0.0000 | 0.0519 |
Initial value estimation method | 2.0000 | 0.4000 | 10.0000 | 1.0000 | 0.0000 | 0.0052 | |
20 db | Fixed initial value method | 1.9887 | 0.3916 | 14.9967 | 1.0019 | −0.0161 | 0.0653 |
Initial value estimation method | 1.9887 | 0.3916 | 14.9967 | 1.0019 | 12.5503 | 0.0059 | |
10 db | Fixed initial value method | 1.9654 | 0.3739 | 14.9891 | 1.0060 | 12.5116 | 0.0660 |
Initial value estimation method | 1.9654 | 0.3739 | 14.9891 | 1.0060 | −0.0548 | 0.0062 | |
5 db | Fixed initial value method | 0.9967 | 0.1145 | 13.8449 | 1.0280 | 5.1260 | 0.0906 |
Initial value estimation method | 1.9405 | 0.3543 | 14.9795 | 1.0105 | −0.1060 | 0.0058 |
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Jin, R.; Huang, Q.; Jiang, J.; Hu, P. A-Mode Ultrasound Bladder Volume Estimation Algorithm Based on Wavelet Energy Ratio Adaptive Denoising. Sensors 2024, 24, 1984. https://doi.org/10.3390/s24061984
Jin R, Huang Q, Jiang J, Hu P. A-Mode Ultrasound Bladder Volume Estimation Algorithm Based on Wavelet Energy Ratio Adaptive Denoising. Sensors. 2024; 24(6):1984. https://doi.org/10.3390/s24061984
Chicago/Turabian StyleJin, Rencheng, Qipeng Huang, Jiaxu Jiang, and Peihao Hu. 2024. "A-Mode Ultrasound Bladder Volume Estimation Algorithm Based on Wavelet Energy Ratio Adaptive Denoising" Sensors 24, no. 6: 1984. https://doi.org/10.3390/s24061984
APA StyleJin, R., Huang, Q., Jiang, J., & Hu, P. (2024). A-Mode Ultrasound Bladder Volume Estimation Algorithm Based on Wavelet Energy Ratio Adaptive Denoising. Sensors, 24(6), 1984. https://doi.org/10.3390/s24061984