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1.
Chinese Journal of Medical Physics ; (6): 1672-1675, 2010.
Article in Chinese | WPRIM | ID: wpr-500264

ABSTRACT

Objective:In order to detect blood oxygen saturation timely,accurately,and conveniently,a wireless blood oxygen saturation detection module has been developed.Methods:Based on wearable monitoring technology and ZigBee wireless communication technology,we designed a blood oxygen saturation module of finger cuff type.This system is composed of photoplethysmography detection micromodule,ZigBee access terminal,and data analysis program,which realize the functions of waveform display,SpO2 calculation,wireless date transmission and so on.Results:The results show that detection accuracy of photoplethysmography is 98%,and calculating error of SpO2 is less than 8.8% satisfying the performance index of blood oxygen saturation detection.Furthermore,ZigBee wireless communication technology and light source regulator can reduce energy expenditure effectively.Conclusion:With the characters of wireless,low power consumption,miniaturization,and high performance,it can truly reflect physiological condition of patients,and remove lines on them,which make it possible for mobile monitor.

2.
Journal of Biomedical Engineering ; (6): 529-543, 2010.
Article in Chinese | WPRIM | ID: wpr-230837

ABSTRACT

Motion artifact is a significant source of noise in ambulatory physiologic signals and can affect the diagnoses seriously. To cope with this problem, we adopted certain methods for removing motion artifact from ECG signals via synchronous acquisition of the elector/skin impedance as the reference signal of adaptive filter. The results demonstrated that 3rd order RLS adaptive filter can remove the baseline shift effectively with an exciting current of 120 Hz and 50 microA. Such system was implemented to investigate the utility of ambulatory heart rate monitoring, which provides convenient and reliable monitoring services for patients.


Subject(s)
Humans , Algorithms , Artifacts , Electric Impedance , Electrocardiography , Methods , Signal Processing, Computer-Assisted
3.
Chinese Medical Equipment Journal ; (6)1989.
Article in Chinese | WPRIM | ID: wpr-588592

ABSTRACT

Phonocardiogram contains a lot of information on the physiological and pathological cardiac function, so it can improve the diagnosis and treatment of cardiovascular disease to effectively diagnose cardiac sounds. This paper presents the design of a computer-based measurement and real-time analysis system of heart sounds. Applying computers to the analysis and auxiliary diagnosis of cardiac sounds, the system is real-time and intelligent.

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