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By Subhasis Chaudhuri

Ambulation research in Wearable ECG

Subhasis Chaudhuri, Tanmay Pawar, Siddhartha Duttagupta

Ambulation research in Wearable ECG demonstrates why, because of contemporary advancements, the wearable ECG recorder substantiates an important innovation within the healthcare field.

About this book:

Examines the viability of wearable ECG in cardiac monitoring

Includes chapters written by way of practitioners who've in my view built such to put in writing concerning the details

Bridges the distance among and algorithmic advancements with chapters that in particular talk about the points and their corresponding calibration issues

Presents an invaluable textual content for either practitioners and researchers in biomedical engineering and similar interdisciplinary fields

Assumes easy familiarity with electronic sign processing and linear algebra

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Additional resources for Ambulation Analysis in Wearable ECG

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1, in which two parallel channels of the lead-II ECG acquisition are depicted. 5cm, for each of the paired locations as shown in Fig. 1. The upper channel is connected to an ECG amplifier followed by an ADC, NI-USB-6009 from National Instruments (NI). The NI-USB-6009 is configured to sample the analog signal in the single ended mode with a common ground (the same as the amplifier ground), unity gain and quantization of 12 bits/sample. Further details about connections and configuration of NI-USB-6009 are provided in [1].

Shojaei Baghini, S. Nag, R. K. Lal, D. K. Sharma, ”An Ultra Low-Power CurrentMode Integrated CMOS Instrumentation Amplifier for Personal ECG Recorders”, Journal of Circuits, Systems, and Computers (JCSC) Vol: 17, Issue: 6, c 2008 World Scientific Publishing Co. Pte. ) Although current balancing technique is a known method, suitability of this technique for achieving ultra low power ECG signal conditioning chips was reported for the first time in [116]. Integrated INA reported in [116, 118] consumes only 9µA.

Microcontroller (more often with built in data converters) 2. Clock generator 3. Memory modules for storing application software (usually compiled in assembly code), patient data and digitized ECG 4. Display driver (some ECG monitoring devices do not have display) 5. Data transfer interface like USB interface or serial link 6. Data transmission interface like interface with short range ECG wireless transmitter like infrared and Bluetooth. 1 Microcontroller Main digital modules of Silicon Locket are shown in Fig.

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