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关于病理生理学《豚鼠高钾血症》实验的改进性研究 被引量:1
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作者 肖启华 彭吉霞 +1 位作者 陈艳 吴胜英 《山西医科大学学报(基础医学教育版)》 2000年第4期305-305,共1页
本文通过对病理生理学中《豚鼠高钾血症》实验中心电图尺的使用对病理生理实验教学改革作了有益的探讨。
关键词 病理生理学 高钾血症 心电图尺 实验课程
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Complexity and characteristic frequency studies in ECG signals of mice based on multiple scale factors 被引量:1
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作者 YANG XiaoDong HE AiJun +2 位作者 LIU Peng SUN TongFeng NING XinBao 《Science China(Life Sciences)》 SCIE CAS 2011年第6期544-552,共9页
Existing methods of physiological signal analysis based on nonlinear dynamic theories only examine the complexity difference of the signals under a single sampling frequency.We developed a technique to measure the mul... Existing methods of physiological signal analysis based on nonlinear dynamic theories only examine the complexity difference of the signals under a single sampling frequency.We developed a technique to measure the multifractal characteristic parameter intimately associated with physiological activities through a frequency scale factor.This parameter is highly sensitive to physiological and pathological status.Mice received various drugs to imitate different physiological and pathological conditions,and the distributions of mass exponent spectrum curvature with scale factors from the electrocardiogram (ECG) signals of healthy and drug injected mice were determined.Next,we determined the characteristic frequency scope in which the signal was of the highest complexity and most sensitive to impaired cardiac function,and examined the relationships between heart rate,heartbeat dynamic complexity,and sensitive frequency scope of the ECG signal.We found that all animals exhibited a scale factor range in which the absolute magnitudes of ECG mass exponent spectrum curvature achieve the maximum,and this range (or frequency scope) is not changed with calculated data points or maximal coarse-grained scale factor.Further,the heart rate of mice was not necessarily associated with the nonlinear complexity of cardiac dynamics,but closely related to the most sensitive ECG frequency scope determined by characterization of this complex dynamic features for certain heartbeat conditions.Finally,we found that the health status of the hearts of mice was directly related to the heartbeat dynamic complexity,both of which were positively correlated within the scale factor around the extremum region of the multifractal parameter.With increasing heart rate,the sensitive frequency scope increased to a relatively high location.In conclusion,these data provide important theoretical and practical data for the early diagnosis of cardiac disorders. 展开更多
关键词 ECG MULTIFRACTALITY COMPLEXITY frequency scale factor characteristic frequency
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