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Qin-kai Deng

Publications and source records attributed to Qin-kai Deng.

3 recordsLinked to original sources

[A method for transfering physiological data through GSM wireless communication network].

This article describes a method for transfering physiological data through GSM wireless communication network. The data of heart rate and body temperature are collected by a microcontroller and transmitted through serial ports to the GSM data module, which then transmits the data to a remote terminal through GSM network. This method ensures cheap and stable long-distance data transfer within the coverage of the GSM network.

Body Temperature↗

[Nonlinear dynamic analysis of heart rate variability in patients with diabetic autonomic neuropathy].

OBJECTIVE: To explore earlier detection methods for diabetic autonomic neuropathy (DAN) by heart rate variability (HRV) analysis. METHODS: Thirty-four diabetic patients (including 22 with explicit clinical DAN symptoms) were randomly selected for this study from the in-patient department of endocrinology. On the basis of Virtual Instrumental WorkBench- LabVIEW and using several nonlinear dynamic analysis measures, including Allan factor, lyapunov exponent, approximate entropy, fractal dimension, complexity, wavelet-transform standard deviation and nonlinear energy operator, the analysis of the HRV in these diabetic patients was performed in comparison with normal subjects. RESULTS: The nonlinear indices of both DAN patients and patients without obvious DAN were significantly different from those of the normal subjects, especially in terms of Lyapunov exponent, approximate entropy, and nonlinear energy operator. CONCLUSION: Nonlinear dynamic methods of HRV analysis can provide assistance in assessing the status and impairment of the autonomic system, and can be used to efficiently detect diabetic neuropathy in early stages.

Autonomic Nervous System Diseases↗

[A new approach for exploring the essence of meridian].

The paper includes a brief review and evaluation of the progress in the research of the essence of meridian in China in the last two decades, in which the author suggests that more effort at all levels involving multiple disciplines needs to be investigated in the pursuit of this issue after the failure of prolonged research in the fields of histological anatomy. Microcosmic investigation, in particular, should be pursued making full use of the available achievement in molecular cell biology, genome research, biophysics and biochemistry and so forth, so as to build a solid plateform for making a breakthrough. The author urges the importance of research in the information carrier that regulates the meridian physiological network of the body. Based on the theories in cellular signal transduction and relevant experimental data, the author points out that the signal amplitude and frequency of intracellular Ca(2+) oscillations and intercellular Ca(2) wave elicited by specific acupuncture may contain information of the meridian routes and physiological function regulations. Through its binding proteins, Ca(2+) participates in almost all the physiological processes such as reproduction, metabolism, muscle contraction to cognition and memory. It is therefore hypothetically believed that Ca(2+) and inositol trisphosphate (IP(3), which is required for the propagation of intercellular Ca(2+) waves) can be the long-quested information carriers of the meridian physiological network, and they in conjunction with the gap-junction protein (connexon) build the material bases of the meridian. The author also specifies some possible directions of further study and experimental methods.

Calcium Signaling↗