Statistics and Machine Learning Methods for EHR Data
From Data Extraction to Data Analytics
Herausgeber: Wu, Hulin; Yaseen, Ashraf; Yamal, Jose Miguel
Statistics and Machine Learning Methods for EHR Data
From Data Extraction to Data Analytics
Herausgeber: Wu, Hulin; Yaseen, Ashraf; Yamal, Jose Miguel
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The book carefully evaluates and compares the standard statistical models and approaches with those of machine learning and deep learning methods and reports the unbiased comparison results for these methods in predicting clinical outcomes based on the EHR data.
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The book carefully evaluates and compares the standard statistical models and approaches with those of machine learning and deep learning methods and reports the unbiased comparison results for these methods in predicting clinical outcomes based on the EHR data.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Chapman & Hall/CRC Healthcare Informatics Series
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 328
- Erscheinungstermin: 16. Dezember 2020
- Englisch
- Abmessung: 236mm x 159mm x 24mm
- Gewicht: 638g
- ISBN-13: 9780367442392
- ISBN-10: 0367442396
- Artikelnr.: 60599937
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Chapman & Hall/CRC Healthcare Informatics Series
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 328
- Erscheinungstermin: 16. Dezember 2020
- Englisch
- Abmessung: 236mm x 159mm x 24mm
- Gewicht: 638g
- ISBN-13: 9780367442392
- ISBN-10: 0367442396
- Artikelnr.: 60599937
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
* Hulin Wu, PhD, the endowed Betty Wheless Trotter Professor and Chair, Department of Biostatistics & Data Science, School of Public Health (SPH), University of Texas Health Science Center at Houston (UTHealth). Dr. Wu also holds a joined appointment as Professor at UTHealth School of Biomedical Informatics. Dr. Wu received BS and MS training in engineering and PhD in statistics. He has many years of experience in developing novel statistical methods, mathematical models and informatics tools for biomedical data analysis and modeling. He is the Founding Director of the Center for Big Data in Health Sciences (CBD-HS) and he is directing the EHR research working group at UTHealth SPH. * Dr. Yamal is a tenured Associate Professor in the Department of Biostatistics & Data Science and a member of the Coordinating Center for Clinical Trials at UTHealth School of Public Health. Dr. Yamal has extensive experience in clinical trials including data coordinating centers and serving on Data Safety Monitoring Boards for clinical trials in stroke and traumatic brain injury. He has also contributed towards statistical methodology for classification problems for nested data as well as machine learning applications. * Ashraf Yaseen is an Assistant Professor of Data Science at the School of Public Health, UTHealth. He has extensive experience in database design, implementation and management, machine learning, and high-performance computing. In his current research work, Dr. Yaseen is exploring big data integration and deep learning technologies in electronic health records to address clinical and public health questions. * Vahed Maroufy, PhD, Assistant Professor, Department of Biostatistics & Data Science, UTHealth School of Public Health. Dr. Maroufy received MSc and PhD training in statistics and has experience in applied and theoretical statistics, including geometry of statistical models, mixture models, Bayesian inference, predictive models using EHR data, and analysis of genetic data in cancer research.
1. Introduction: Use of EHR Data for Research-Challenges and Opportunities.
2. EHR Project Management. 3. EHR Databases: Data Queries and Extraction.
4. EHR Data Cleaning. 5. EHR Data Pre-Processing and Preparation. 6. EHR
Missing Data Issues. 7. Causal Inference and Analysis for EHR Data. 8. EHR
Data Exploration, Analysis and Predictions: Statistical Models and Methods.
9. EHR Data Analytics and Predictions: Neural Network and Deep Learning
Methods. 10. EHR Data Analytics and Predictions: Other Machine Learning
Methods. 11. Use of EHR Data for Research: Future.
2. EHR Project Management. 3. EHR Databases: Data Queries and Extraction.
4. EHR Data Cleaning. 5. EHR Data Pre-Processing and Preparation. 6. EHR
Missing Data Issues. 7. Causal Inference and Analysis for EHR Data. 8. EHR
Data Exploration, Analysis and Predictions: Statistical Models and Methods.
9. EHR Data Analytics and Predictions: Neural Network and Deep Learning
Methods. 10. EHR Data Analytics and Predictions: Other Machine Learning
Methods. 11. Use of EHR Data for Research: Future.
1. Introduction: Use of EHR Data for Research-Challenges and Opportunities.
2. EHR Project Management. 3. EHR Databases: Data Queries and Extraction.
4. EHR Data Cleaning. 5. EHR Data Pre-Processing and Preparation. 6. EHR
Missing Data Issues. 7. Causal Inference and Analysis for EHR Data. 8. EHR
Data Exploration, Analysis and Predictions: Statistical Models and Methods.
9. EHR Data Analytics and Predictions: Neural Network and Deep Learning
Methods. 10. EHR Data Analytics and Predictions: Other Machine Learning
Methods. 11. Use of EHR Data for Research: Future.
2. EHR Project Management. 3. EHR Databases: Data Queries and Extraction.
4. EHR Data Cleaning. 5. EHR Data Pre-Processing and Preparation. 6. EHR
Missing Data Issues. 7. Causal Inference and Analysis for EHR Data. 8. EHR
Data Exploration, Analysis and Predictions: Statistical Models and Methods.
9. EHR Data Analytics and Predictions: Neural Network and Deep Learning
Methods. 10. EHR Data Analytics and Predictions: Other Machine Learning
Methods. 11. Use of EHR Data for Research: Future.