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Biomedical subjects

Hsiao-Lung Chan

Publications and source records attributed to Hsiao-Lung Chan.

5 recordsLinked to original sources

Carvedilol can restore the multifractal properties of heart beat dynamics in patients with advanced congestive heart failure.

INTRODUCTION: Human heart beats in an extremely inhomogeneous and non-stationary manner. Recent study has demonstrated that it belongs to a class of signals called multifractal. Loss of multifractality was also uncovered in patients with congestive heart failure. We investigated whether carvedilol could restore the multifractal properties in a group of patients with advanced congestive heart failure. METHODS AND RESULTS: A Holter ECG recording was obtained before and 1 and 3 months after titrated addition of carvedilol therapy in 10 patients with advanced congestive heart failure. Multifractal spectrum, detrended fluctuation analysis (DFA) as well as the traditional time- and frequency-domain heart rate variability (HRV) parameters were compared before and after carvedilol therapy together with those in age and sex-matched normal control. The results showed that the multifractal spectrum tau(q) vs. q of N-N interval time series returned toward normal during carvedilol treatment. All the traditional HRV parameters and the short-term DFA improved significantly after 3 months of carvedilol therapy. CONCLUSION: We concluded that the deteriorated multifractal properties could be reversed by carvedilol treatment in patients with advanced congestive heart failure.

Adrenergic beta-Antagonists↗

A real-time QRS detection method based on moving-averaging incorporating with wavelet denoising.

In this paper, a simple moving average-based computing method for real-time QRS detection is proposed. In addition, for signal preprocessing our detection algorithm also incorporates a wavelet-based denoising procedure to effectively reduce the noise level for electrocardiogram (ECG) data. The overall computational structure of the proposed algorithm allows the QRS detection to be performed and implemented in real-time with high time- and memory-efficiency. Algorithm performance was evaluated against the MIT-BIH Arrhythmia Database. The numerical results indicated that the novel algorithm finally achieved about 99.5% of the detection rate for the standard database, and also, it could function reliably even under the condition of poor signal quality in the measured ECG data.

Algorithms↗

Heart rate variability characterization in daily physical activities using wavelet analysis and multilayer fuzzy activity clustering.

A portable data recorder was developed to parallel measure the electrocardiogram and body accelerations. A multilayer fuzzy clustering algorithm was proposed to classify the physical activity based on body accelerations. Discrete wavelet transform was incorporated to retrieve time-varying characteristics of heart rate variability under different physical activities. Nine healthy subjects were included to investigate activity-related heart rate variability during 24 h. The results showed that the heartbeat fluctuations in high frequencies were the greatest during lying and the smallest during standing. Moreover, very-low-frequency heartbeat fluctuations during low activity level (lying) were greater than during high activity level (nonlying).

Activities of Daily Living↗

Restoration of heart rate turbulence by titrated beta-blocker therapy in patients with advanced congestive heart failure: positive correlation with enhanced vagal modulation of heart rate.

INTRODUCTION: Heart rate turbulence (HRT) is a powerful novel predictor for cardiovascular mortality. Chronic congestive heart failure is associated with abnormal HRT. Whether antiadrenergic beta-blocker therapy can restore control of HRT in patients with chronic congestive heart failure is unknown. METHODS AND RESULTS: A 24-hour Holter ECG recording was obtained before and 1 and 3 months after titrated addition of atenolol therapy in 10 consecutive patients with advanced congestive heart failure. Two parameters derived from HRT, turbulence slope (TS) and turbulence onset (TO), and time- and frequency-domain heart rate variability (HRV) parameters (SDNN, RMSSD, VLF, LF, HF) from 24-hour ECG were compared before and after beta-blocker therapy, together with the same parameters in age-matched normal control. Results showed that TS (3.1 +/- 2.2 vs 6.2 +/- 3.0; P = 0.001) and all HRV parameters were increased after 3 months of atenolol treatment. No changes in TO were evident (0.6 +/- 0.5 vs -0.2 +/- 1.3; P = 0.13). The improvement of TS and the vagally mediated parameters of mean R-R interval, RMSSD, and the HF component of HRV were positively correlated. CONCLUSION: Abnormal HRT caused by chronic congestive heart failure can be restored by beta-blocker therapy. The evolution of TS was positively correlated with measures of vagal modulation of heart rate.

Adrenergic beta-Antagonists↗

Tight mechanism correlation between heart rate turbulence and baroreflex sensitivity: sequential autonomic blockade analysis.

INTRODUCTION: Heart rate turbulence is a powerful de novo risk predictor for patients surviving acute myocardial infarction. However, little is known about its underlying physiologic mechanism. METHODS AND RESULTS: Hypothesizing that heart rate turbulence is barorceptor reflex related, we studied heart rate and blood pressure fluctuations at rest and after systematically introduced ventricular premature beats in 16 patients without structural heart disease (10 men and 6 women; mean age 45 +/- 17 years) before and after sequential sympathetic (esmolol 4-mg bolus followed by 120 microg/kg/min intravenously), parasympathetic (atropine 0.04 mg/kg intravenously), and combined autonomic blockade (esmolol plus atropine). Turbulence onset (%) and turbulence slope (msec/beat) were averaged from 10 respective ventricular premature beats. Spontaneous baroreflex sensitivity (msec/mmHg) was calculated from 5 minutes of sinus rhythm recording. The results showed that turbulence slope decreased after atropine (0.71 +/- 0.50 msec/beat vs 5.17 +/- 3.96 msec/beat at baseline; P < 0.01) and combined autonomic blockade (1.23 +/- 1.02 msec/beat; P < 0.01) but was unchanged after esmolol (4.53 +/- 3.30 msec/beat; P > 0.05). Turbulence onset increased after atropine (0.32% +/- 0.35% vs -0.45 +/- 0.94 at baseline; P < 0.05) and combined sympathetic and parasympathetic blockade (0.58% +/- 0.86%; P < 0.05) but was unchanged after esmolol (-0.62% +/- 1.33%; P > 0.05). Turbulence slope was positively correlated with baroreflex sensitivity at baseline (r = 0.78, P < 0.01) and after esmolol (r = 0.8, P < 0.01), but dissociated after atropine (r = 0.16, P > 0.05) and combined autonomic blockade (r = 0.31, P > 0.05). Turbulence onset was negatively correlated with baroreflex sensitivity at baseline (r = -0.61, P < 0.05), after esmolol (r = -0.80, P < 0.01), and after atropine (r = -0.53, P < 0.05). CONCLUSION: Heart rate turbulence of turbulence onset and turbulence slope is critically vagal dependent and highly correlated with spontaneous baroreflex sensitivity, which underscores its clinical importance in cardiovascular risk stratification.

Adult↗