The miniaturization of electronics has driven a huge innovation in medical instruments. Medical-grade systems are now able to be sent home with patients, alongside small, portable devices for monitoring sports performance, stress, and lifestyle.
The core ideas behind these devices originated about 130 years ago, but they are now made cheaply and are readily available in consumer devices like smart watches, as well as in new diagnostic instruments.
Medical Devices and Data: Technology to Instrument the Body and Its Interpretation focuses on three key questions: How do these new instruments work? How do they interpret their data? And when do they err? It also identifies the key factors that are driving this innovation further.
This text is written for those who would like to understand non-invasive medical instruments in more detail. It is written in an accessible manner, and no formal background in science, engineering, or medicine is required. Some equations are used where necessary, but calculus is avoided. This book explains the key ideas behind the advanced techniques used.
All data, software, and figures used in this book are made available online at the following link: https://url.us.m.mimecastprotect.com/s/N28qCwpEkBHAJkEoyFQF8HJhX1S?domain=bitbucket.org
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Andy Adler is a Canada Research Professor in Biomedical Engineering in Systems and Computer Engineering at Carleton University in Ottawa, Canada. His research interests are broadly in the area of biomedical measurement and robust data analysis. He is the author of ten book chapters, four patents, eighty-eight journal and 190 conference papers. A main focus of his work is technologies for imaging the body using small applied electrical currents. He has also been active in translation of the technology to the bedside, working with both start-up and established med-tech companies. He is the editor of Electrical Impedance Tomography, Second Edition (CRC Press, 2021).
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Hardcover. Condition: new. Hardcover. The miniaturization of electronics has driven a huge innovation in medical instruments. Medical-grade systems are now able to be sent home with patients, alongside small, portable devices for monitoring sports performance, stress, and lifestyle.The core ideas behind these devices originated about 130 years ago, but they are now made cheaply and are readily available in consumer devices like smart watches, as well as in new diagnostic instruments.Medical Devices and Data: Technology to Instrument the Body and Its Interpretation focuses on three key questions: How do these new instruments work? How do they interpret their data? And when do they err? It also identifies the key factors that are driving this innovation further.This text is written for those who would like to understand non-invasive medical instruments in more detail. It is written in an accessible manner, and no formal background in science, engineering, or medicine is required. Some equations are used where necessary, but calculus is avoided. This book explains the key ideas behind the advanced techniques used.All data, software, and gures used in this book are made available online at the following link: orgKey features:Explores the design and use of medical instrumentation, seeking to explain the data measured and how it relates to body processesDiscusses what these devices mean: modern instruments give a whole range of indications: from basic (heart rate) to much more complicated (sleep quality score). For users of these devices, this book hope to shed some light on the information availableDetails when results can be trusted and how to cast a critical eye over the accuracy and interpretation of these instruments The miniaturization of electronics has driven innovation in medical instruments. This text asks: how do these new instruments work, how do they interpret their data, and when do they err? It also identifies key factors driving innovation. This text is accessible for anyone who would like to understand non-invasive medical instruments. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Seller Inventory # 9781032442372
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Hardcover. Condition: new. Hardcover. The miniaturization of electronics has driven a huge innovation in medical instruments. Medical-grade systems are now able to be sent home with patients, alongside small, portable devices for monitoring sports performance, stress, and lifestyle.The core ideas behind these devices originated about 130 years ago, but they are now made cheaply and are readily available in consumer devices like smart watches, as well as in new diagnostic instruments.Medical Devices and Data: Technology to Instrument the Body and Its Interpretation focuses on three key questions: How do these new instruments work? How do they interpret their data? And when do they err? It also identifies the key factors that are driving this innovation further.This text is written for those who would like to understand non-invasive medical instruments in more detail. It is written in an accessible manner, and no formal background in science, engineering, or medicine is required. Some equations are used where necessary, but calculus is avoided. This book explains the key ideas behind the advanced techniques used.All data, software, and gures used in this book are made available online at the following link: orgKey features:Explores the design and use of medical instrumentation, seeking to explain the data measured and how it relates to body processesDiscusses what these devices mean: modern instruments give a whole range of indications: from basic (heart rate) to much more complicated (sleep quality score). For users of these devices, this book hope to shed some light on the information availableDetails when results can be trusted and how to cast a critical eye over the accuracy and interpretation of these instruments The miniaturization of electronics has driven innovation in medical instruments. This text asks: how do these new instruments work, how do they interpret their data, and when do they err? It also identifies key factors driving innovation. This text is accessible for anyone who would like to understand non-invasive medical instruments. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781032442372
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Condition: New. Andy Adler is a Canada Research Professor in Biomedical Engineering in Systems and Computer Engineering at Carleton University in Ottawa, Canada. His research interests are broadly in the area of biomedical measurement and robust data analysis. He. Seller Inventory # 2772876197
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Hardcover. Condition: new. Hardcover. The miniaturization of electronics has driven a huge innovation in medical instruments. Medical-grade systems are now able to be sent home with patients, alongside small, portable devices for monitoring sports performance, stress, and lifestyle.The core ideas behind these devices originated about 130 years ago, but they are now made cheaply and are readily available in consumer devices like smart watches, as well as in new diagnostic instruments.Medical Devices and Data: Technology to Instrument the Body and Its Interpretation focuses on three key questions: How do these new instruments work? How do they interpret their data? And when do they err? It also identifies the key factors that are driving this innovation further.This text is written for those who would like to understand non-invasive medical instruments in more detail. It is written in an accessible manner, and no formal background in science, engineering, or medicine is required. Some equations are used where necessary, but calculus is avoided. This book explains the key ideas behind the advanced techniques used.All data, software, and gures used in this book are made available online at the following link: orgKey features:Explores the design and use of medical instrumentation, seeking to explain the data measured and how it relates to body processesDiscusses what these devices mean: modern instruments give a whole range of indications: from basic (heart rate) to much more complicated (sleep quality score). For users of these devices, this book hope to shed some light on the information availableDetails when results can be trusted and how to cast a critical eye over the accuracy and interpretation of these instruments The miniaturization of electronics has driven innovation in medical instruments. This text asks: how do these new instruments work, how do they interpret their data, and when do they err? It also identifies key factors driving innovation. This text is accessible for anyone who would like to understand non-invasive medical instruments. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9781032442372
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