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    Please use this identifier to cite or link to this item: http://asiair.asia.edu.tw/ir/handle/310904400/10976


    Title: Heart rate and pulse transit time analysis of leg crossing on meditation practitioner.
    Authors: Sih-Huei Chen
    Contributors: Department of Computer and Communication Engineering
    Keywords: meditation;heart rate variability;pulse transmit time;cross-leg
    Date: 2010
    Issue Date: 2010-11-10 03:43:02 (UTC+0)
    Publisher: Asia University
    Abstract: Meditation common in many developing countries and developed countries, the Republic of China is also commonly associated with the research report, it means using sit-ins, to observe the practice in the long meditation of the 15 students did not receive meditation training with 14 students in the sitting cross-legged sitting position with legs straight, the acquisition of heart rate variability and pulse transmit time and the two parameters was found in the cross-legged posture control pulse transmit time on average there are significant differences, and Zen No fixed group; the results and assumptions control group meditation practice in a long time, change in position, the curved legs crossing over in the blood flow on unimpeded. While the movement experiment, using to fling hand and kicking, this action can be cast in a small space stretching, observation of pulse transmit time parameter is the value after exercise on reducing the trend; swing experiments of many parameters have values reduce the trend after exercise, kicking foot experiment data pulse transmit time averages have numerical decrease after exercise, but not obvious. Therefore, we can find parameters of pulse transmit time in the leg crossing posture on heart rate variability parameters than do more of the information available, and in the movement, speed up blood circulation in the body of assumptions, not significantly different, but still can see a trend. Pulse transmit time and the physiological parameters measured in only one non-invasive sensors, heart rate variability than pure parameters can describe a number of related phenomena.
    Appears in Collections:[光電與通訊學系] 博碩士論文

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