Automated Bowel Sound Analysis: An Overview
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Robert M. Nowak | Ireneusz Grulkowski | Kacper Radzikowski | Jan Krzysztof Nowak | Jaroslaw Walkowiak | R. Nowak | I. Grulkowski | K. Radzikowski | J. Nowak | J. Walkowiak
[1] Zhihua Wang,et al. Bowel Sound Detection Based on MFCC Feature and LSTM Neural Network , 2018, 2018 IEEE Biomedical Circuits and Systems Conference (BioCAS).
[2] S. Ching,et al. Spectral analysis of bowel sounds in intestinal obstruction using an electronic stethoscope. , 2012, World journal of gastroenterology.
[3] Nathanael Paul,et al. A low power integrated bowel sound measurement system , 2015, 2015 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) Proceedings.
[4] Jennifer Talley,et al. Validation of an Acoustic Gastrointestinal Surveillance Biosensor for Postoperative Ileus , 2014, Journal of Gastrointestinal Surgery.
[5] Umit D. Ulusar,et al. Recovery of gastrointestinal tract motility detection using Naive Bayesian and minimum statistics , 2014, Comput. Biol. Medicine.
[6] Charalampos Dimoulas,et al. Pattern classification and audiovisual content management techniques using hybrid expert systems: A video-assisted bioacoustics application in Abdominal Sounds pattern analysis , 2011, Expert Syst. Appl..
[7] Masatake Akutagawa,et al. ARMA-based spectral bandwidth for evaluation of bowel motility by the analysis of bowel sounds , 2013, Physiological measurement.
[9] Charalampos A. Dimoulas. Audiovisual Spatial-Audio Analysis by Means of Sound Localization and Imaging: A Multimedia Healthcare Framework in Abdominal Sound Mapping , 2016, IEEE Transactions on Multimedia.
[10] Fok-Ching Chong,et al. TWO-DIMENSIONAL STATIC AND DYNAMIC DISPLAY SYSTEM OF BOWEL SOUND MAGNITUDE MAP FOR EVALUATION OF INTESTINAL MOTILITY , 2009 .
[11] Adam Osseiran,et al. Noninvasive Diagnosis of Irritable Bowel Syndrome via Bowel Sound Features: Proof of Concept , 2019, Clinical and translational gastroenterology.
[12] Erdinc Turk,et al. Bioacoustic sensor system for automatic detection of bowel sounds , 2015, 2015 Medical Technologies National Conference (TIPTEKNO).
[13] E. Blanchard,et al. A 1- and 2-year follow-up study of bowel sound biofeedback as a treatment for irritable bowel syndrome , 1989, Biofeedback and self-regulation.
[14] Osamu Sakata,et al. Temporal changes in occurrence frequency of bowel sounds both in fasting state and after eating , 2013, Journal of Artificial Organs.
[15] P. Caushaj,et al. Bowel Sounds Are Not Associated With Flatus, Bowel Movement, or Tolerance of Oral Intake in Patients After Major Abdominal Surgery , 2017, Diseases of the colon and rectum.
[16] H Yoshino,et al. Clinical application of spectral analysis of bowel sounds in intestinal obstruction , 1990, Diseases of the colon and rectum.
[17] Valérie Louis-Dorr. Contribution au traitement et à l'analyse de signaux issus de processus physiologiques , 2008 .
[18] Leontios J. Hadjileontiadis,et al. An iterative kurtosis-based technique for the detection of nonstationary bioacoustic signals , 2006, Signal Process..
[19] N. Juffermans,et al. Auscultation for bowel sounds in patients with ileus: An outdated practice in the ICU? , 2018 .
[20] T. Nordentoft,et al. Accuracy of abdominal auscultation for bowel obstruction. , 2015, World journal of gastroenterology.
[21] Stavros M. Panas,et al. Enhancement of bowel sounds by wavelet-based filtering , 2000, IEEE Transactions on Biomedical Engineering.
[22] B. Marshall,et al. The potential of computerised analysis of bowel sounds for diagnosis of gastrointestinal conditions: a systematic review , 2018, Systematic Reviews.
[23] He-Hua Zhang,et al. [Design of a bowel sounds acquisition system based on C8051F340 MCU]. , 2008, Zhongguo yi liao qi xie za zhi = Chinese journal of medical instrumentation.
[24] J T FARRAR,et al. Gastrointestinal motility as revealed by study of abdominal sounds. , 1955, Gastroenterology.
[25] Osamu Sakata,et al. Forecasting Bowel Sound Occurrence Frequency by SARIMA Model , 2019, 2019 23rd International Computer Science and Engineering Conference (ICSEC).
[26] Jasmine Dumas,et al. Feasibility of an electronic stethoscope system for monitoring neonatal bowel sounds. , 2013, Connecticut medicine.
[27] M. Nishizawa,et al. Reduced bowel sounds in Parkinson’s disease and multiple system atrophy patients , 2011, Clinical Autonomic Research.
[28] Oswaldo Baffa,et al. Digital Auscultation and Processing of Abdominal Sounds , 2009 .
[29] Øyvind Stavdahl,et al. Data driven filtering of bowel sounds using multivariate empirical mode decomposition , 2019, Biomedical engineering online.
[30] A. Fougner,et al. Feasibility of Early Meal Detection Based on Abdominal Sound , 2019, IEEE Journal of Translational Engineering in Health and Medicine.
[31] Adam Osseiran,et al. A mathematical model of bowel sound generation. , 2018, The Journal of the Acoustical Society of America.
[32] Osamu Sakata,et al. Basic study of occurrence frequency of bowel sounds after food ingestion , 2011, TENCON 2011 - 2011 IEEE Region 10 Conference.
[33] M. Camilleri,et al. Clinical measurement of gastrointestinal motility and function: who, when and which test? , 2018, Nature Reviews Gastroenterology & Hepatology.
[34] Ronald Adrezin,et al. System for Recording the Bowel Sounds of Premature Infants , 2008 .
[35] M. Moser,et al. How Useful Are Bowel Sounds in Assessing the Abdomen? , 2010, Digestive Surgery.
[36] Didier Wolf,et al. Digestive Activity Evaluation by Multichannel Abdominal Sounds Analysis , 2010, IEEE Transactions on Biomedical Engineering.
[37] H Ehrenreich,et al. Non-invasive topographic analysis of intestinal activity in man on the basis of acustic phenomena , 1989, Research in experimental medicine. Zeitschrift fur die gesamte experimentelle Medizin einschliesslich experimenteller Chirurgie.
[38] Hanjun Jiang,et al. Long-Term Bowel Sound Monitoring and Segmentation by Wearable Devices and Convolutional Neural Networks , 2020, IEEE Transactions on Biomedical Circuits and Systems.
[39] W C Watson,et al. Phonoenterography: the recording and analysis of bowel sounds. , 1967, Gut.
[40] Keo-Sik Kim,et al. Non-invasive algorithm for bowel motility estimation using a back-propagation neural network model of bowel sounds , 2011, Biomedical engineering online.
[41] Adam Osseiran,et al. Bowel Sounds Identification and Migrating Motor Complex Detection with Low-Cost Piezoelectric Acoustic Sensing Device , 2018, Sensors.
[42] D. Wolf,et al. Towards an acoustic map of abdominal activity , 2003, Proceedings of the 25th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (IEEE Cat. No.03CH37439).
[43] Oliver Amft,et al. GastroDigitalShirt: a smart shirt for digestion acoustics monitoring , 2020, SEMWEB.
[44] Chul-Gyu Song,et al. Awareness system for bowel motility estimation based on artificial neural network of bowel sounds , 2012, 4th International Conference on Awareness Science and Technology.
[45] Osamu Sakata,et al. Hybrid Bowel Sound Measurement System Combining Microphones and a Vibration Sensor , 2020, ICCMS.
[46] R. Sandler,et al. Detection and analysis of gastrointestinal sounds in normal and small bowel obstructed rats , 2006, Medical and Biological Engineering and Computing.
[47] Stavros M. Panas,et al. Enhancement of the diagnostic character of bowel sounds using higher-order crossings , 1999, Proceedings of the First Joint BMES/EMBS Conference. 1999 IEEE Engineering in Medicine and Biology 21st Annual Conference and the 1999 Annual Fall Meeting of the Biomedical Engineering Society (Cat. N.
[48] Osamu Sakata,et al. Evaluation of Food Qualiity based on Digestive Activities of Small Intestine —Accuracy of Bowel Sound Detection by Multidimensional Signal Processing , 2008 .
[49] Xiaojing Wang,et al. Research on auto-identification method to the typical bowel sound signal , 2011, 2011 4th International Conference on Biomedical Engineering and Informatics (BMEI).
[50] Leontios J. Hadjileontiadis,et al. Enhancement of explosive bowel sounds using Kurtosis-based filtering , 2003, Proceedings of the 25th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (IEEE Cat. No.03CH37439).
[51] E. Blanchard,et al. Bowel sound biofeedback as a treatment for irritable bowel syndrome , 1988, Biofeedback and self-regulation.
[52] Bor-Shyh Lin,et al. Higher-Order-Statistics-Based Fractal Dimension for Noisy Bowel Sound Detection , 2015, IEEE Signal Processing Letters.
[53] W. Cannon,et al. AUSCULTATION OF THE RHYTHMIC SOUNDS PRODUCED BY THE STOMACH AND INTESTINES , 1905 .
[54] Umit Deniz Ulusar,et al. Real-time monitoring for recovery of gastrointestinal tract motility detection after abdominal surgery , 2013, 2013 7th International Conference on Application of Information and Communication Technologies.
[55] D. Margel,et al. Usefulness of bowel sound auscultation: a prospective evaluation. , 2014, Journal of surgical education.
[56] D. Zaborski,et al. Recording and Analysis of Bowel Sounds , 2015, Euroasian journal of hepato-gastroenterology.
[57] Masahiro Ono,et al. Is a computerized bowel sound auscultation system useful for the detection of increased bowel motility? , 2002, American Journal of Gastroenterology.
[58] Bing Li,et al. Analysis of Bowel Sounds Application Status for Gastrointestinal Function Monitoring in the Intensive Care Unit , 2014, Critical care nursing quarterly.
[59] Adam Osseiran,et al. Advances in Acoustic Signal Processing Techniques for Enhanced Bowel Sound Analysis , 2019, IEEE Reviews in Biomedical Engineering.
[60] W. Kaiser,et al. Postoperative Gastrointestinal Telemetry with an Acoustic Biosensor Predicts Ileus vs. Uneventful GI Recovery , 2015, Journal of Gastrointestinal Surgery.
[61] Masatake Akutagawa,et al. Automatic Bowel Motility Evaluation Technique for Noncontact Sound Recordings , 2018, Applied Sciences.
[62] A. Fougner,et al. Pilot Study of Early Meal Onset Detection from Abdominal Sounds , 2019, 2019 E-Health and Bioengineering Conference (EHB).
[63] Brian L. Craine,et al. Computerized Auscultation Applied to Irritable Bowel Syndrome , 1999, Digestive Diseases and Sciences.
[64] Erdinc Turk,et al. Wireless bioacoustic sensor system for automatic detection of bowel sounds , 2015, 2015 19th National Biomedical Engineering Meeting (BIYOMUT).
[65] Keo-Sik Kim,et al. Estimation algorithm of the bowel motility based on regression analysis of the jitter and shimmer of bowel sounds , 2011, Comput. Methods Programs Biomed..
[66] M Sugrue,et al. Computerized phonoenterography: the clinical investigation of a new system. , 1994, Journal of clinical gastroenterology.
[67] Hanjun Jiang,et al. Intestinal motility assessment based on Legendre fitting of logarithmic bowel sound spectrum , 2016 .
[68] W.E. Hansen,et al. Critical Review And New Aspects Of Noise Analysis For Gastrointestinal Motility Determination , 1991, Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society Volume 13: 1991.
[69] Yi Huang,et al. Fast diagnosis of bowel activities , 2017, 2017 International Joint Conference on Neural Networks (IJCNN).
[70] V. Louis-Dorr,et al. Principal component analysis and interpretation of bowel sounds , 2004, The 26th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[71] Y. Arabi,et al. The value of bowel sound assessment in predicting feeding intolerance in critically ill patients , 2011 .
[72] Bowel Movement Signal Modeling and Parameters Extraction , 2020, 2020 Asia-Pacific Signal and Information Processing Association Annual Summit and Conference (APSIPA ASC).
[73] Leontios J. Hadjileontiadis,et al. Wavelet-based enhancement of lung and bowel sounds using fractal dimension thresholding-part II: application results , 2005, IEEE Transactions on Biomedical Engineering.
[74] Leontios J. Hadjileontiadis,et al. Wavelet-based enhancement of lung and bowel sounds using fractal dimension thresholding-part I: methodology , 2005, IEEE Transactions on Biomedical Engineering.
[75] Osamu Sakata,et al. Evaluation of Food Quality Based on Digestive Activities of Small Intestine — Analysis of Bowel Sound and Automatic Detective System of Bowel Sounds , 2004 .
[76] Osamu Sakata,et al. Usefulness of a real-time bowel sound analysis system in patients with severe sepsis (pilot study) , 2015, Journal of Artificial Organs.
[77] Osamu Sakata,et al. Improved method of detecting bowel sounds for automatic long analysis under noisy environments , 2019, International Conference on Signal Processing Systems.
[78] Daniel Dalle,et al. Postprandial Bowel Sounds , 1975, IEEE Transactions on Biomedical Engineering.
[79] Chin-Fu Tsai,et al. Labview based bowel-sounds monitoring system in realtime , 2011, 2011 International Conference on Machine Learning and Cybernetics.
[80] Nicole McFarlane,et al. Integrated real time bowel sound detector for artificial pancreas systems , 2016 .
[81] George Kalliris,et al. Long-term signal detection, segmentation and summarization using wavelets and fractal dimension: A bioacoustics application in gastrointestinal-motility monitoring , 2007, Comput. Biol. Medicine.
[82] G Devroede,et al. Computer analysis of bowel sounds. , 1975, Computers in biology and medicine.
[83] Guojing Wang,et al. [Design and Implementation of Wearable Multi-channel Bowel Sound Recorder]. , 2016, Zhongguo yi liao qi xie za zhi = Chinese journal of medical instrumentation.
[84] George Kalliris,et al. Novel wavelet domain Wiener filtering de-noising techniques: Application to bowel sounds captured by means of abdominal surface vibrations , 2006, Biomed. Signal Process. Control..
[85] O. Sakata,et al. Automatic Bowel Sound Detection under Cloth Rubbing Noise , 2020, 2020 IEEE REGION 10 CONFERENCE (TENCON).
[86] J. Neu,et al. Electrogastrography, Near-infrared Spectroscopy, and Acoustics to Measure Gastrointestinal Development in Preterm Babies , 2017, Journal of pediatric gastroenterology and nutrition.
[87] George Kalliris,et al. Bowel-sound pattern analysis using wavelets and neural networks with application to long-term, unsupervised, gastrointestinal motility monitoring , 2008, Expert Syst. Appl..
[88] Hansen A. Mansy,et al. 107 COMPUTERIZED ANALYSIS OF BOWEL SOUNDS IN NORMAL AND SMALL BOWEL OBSTRUCTED RATS. , 1996 .
[89] Shih‐Che Huang,et al. Oscillating gas bubbles as the origin of bowel sounds: a combined acoustic and imaging study. , 2010, The Chinese journal of physiology.
[90] Guojing Wang,et al. Design and Implementation of the Performance Test of Our Self-developed Bowel Sound Recorder , 2019, 2019 12th International Congress on Image and Signal Processing, BioMedical Engineering and Informatics (CISP-BMEI).
[91] Hehua Zhang,et al. [Progress in detection, analysis and application of new techniques to monitoring bowel sounds]. , 2009, Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi.
[92] Bor-Shyh Lin,et al. Enhancing Bowel Sounds by Using a Higher Order Statistics-Based Radial Basis Function Network , 2013, IEEE Journal of Biomedical and Health Informatics.
[93] L.J. Hadjileontiadis,et al. Detection of explosive lung and bowel sounds by means of fractal dimension , 2003, IEEE Signal Processing Letters.
[94] Masatake Akutagawa,et al. AUTOMATIC EVALUATION OF GASTROINTESTINAL MOTOR ACTIVITY THROUGH THE ANALYSIS OF BOWEL SOUNDS , 2013 .
[95] J. Gade,et al. Abdominal auscultation does not provide clear clinical diagnoses. , 2013, Danish medical journal.
[96] H.A. Mansy,et al. Bowel-sound signal enhancement using adaptive filtering , 1997, IEEE Engineering in Medicine and Biology Magazine.
[97] Vladimir K. Makukha,et al. Evaluation of the applicability of MEMS microphone for auscultation , 2015, 2015 16th International Conference of Young Specialists on Micro/Nanotechnologies and Electron Devices.
[98] Bing Li,et al. Bowel Sounds and Monitoring Gastrointestinal Motility in Critically Ill Patients , 2012, Clinical nurse specialist CNS.
[99] D. Bray,et al. Assessing motility through abdominal sound monitoring , 1997, Proceedings of the 19th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. 'Magnificent Milestones and Emerging Opportunities in Medical Engineering' (Cat. No.97CH36136).
[100] Zhihua Wang,et al. Bowel sound based digestion state recognition using artificial neural network , 2015, 2015 IEEE Biomedical Circuits and Systems Conference (BioCAS).
[101] Oinam Robita Chanu,et al. ACQUISITION AND CHARACTERIZATION OF BOWEL SOUNDS USING LabVIEW SOFTWARE , 2018 .
[102] B. Adams. The measurement of intestinal sounds in man and their relationship to serum 5-hydroxytryptamine , 1961, Gut.
[103] V. Louis-Dorr,et al. Wavelet-based bowel sounds denoising, segmentation and characterization , 2001, 2001 Conference Proceedings of the 23rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[104] Masatake Akutagawa,et al. Evaluation of human bowel motility using non-contact microphones , 2016 .
[105] K. Domen,et al. Passive exercise of the lower limbs and trunk alleviates decreased intestinal motility in patients in the intensive care unit after cardiovascular surgery , 2017, Journal of physical therapy science.
[106] Peng Jin,et al. A flexible skin-mounted wireless acoustic device for bowel sounds monitoring and evaluation , 2019, Science China Information Sciences.
[108] S. Nishi,et al. Effects of Passive Lower Limb and Trunk Exercises and Diaphragm Breathing Exercise on Intestinal Movement , 2013 .
[109] C Vasseur,et al. The genesis of bowel sounds: influence of viscus and gastrointestinal content. , 1976, Gastroenterology.
[110] Zhihua Wang,et al. Bowel sound recognition using SVM classification in a wearable health monitoring system , 2018, Science China Information Sciences.