1.System Design of Remote Monitoring and Automatic Real-time Diagnosis of Cardiograph Based on Network Computer
Chinese Medical Equipment Journal 1989;0(02):-
Objective To realize real-time data transmission of multiple remote terminals ECG monitoring.Methods Mutiple ECG collection terminals were used through a wireless local area network which was linked to servers in the data center though WCDMA.Results ECG data real-time acquisition and monitoring were realized in remote ECG real-time automatic diagnosis system based on network computer.Conclusion Acquisition and control of large amount of real-time data are realized.[Chinese Medical Equipment Journal,2008,29(2):18-20]
2.Design of wireless portable helmet for telemedicine
Chinese Medical Equipment Journal 2004;0(09):-
Objective To develop a set of portable equipment for telemedicine audio and video acquision-wireless portable helmet terminal.Methods The telemedicine images were acquired rapidly in high precision by using micro-camera with automatic focus.Voice analog signals input from microphone were performed A/D conversion by using UDA1344 to form serial digital audio stream.Compressed by helmet master operating system in uCos multitask real-time operating system,the acquired audio and video data were connected with local network by short-distance wireless transmission and then with Internet.Results Wireless portable helmet for telemedicine had such functions as images acquisition,audio transmission,automatic focus,video tape and both-way interphone.The wireless connection with telemedicine server could transmit audio and video in long distance.Conclusion Wireless portable helmet for telemedicine can be applied in remote emergency care,operation and transmission,which will greatly promote the application of tele-medicine.
3.Optimization of pre-coated multi-probe fluorescence in situ hybridization for cytogenetic detection of acute leukemia.
Rui CAO ; Lanlin SONG ; Fuqun WU ; Libin LIAO ; Yuan ZUO ; Xiaoli LIU
Journal of Southern Medical University 2012;32(10):1457-1460
OBJECTIVETo optimize pre-coated multiple-probe fluorescence in situ hybridization (FISH) to improve its efficiency in cytogenetic diagnosis of acute leukemia.
METHODSThe original multiple-probe FISH techniques were optimized by adjusting the cell density and adding a process of protease digestion. Cytogenetic anomalies were detected in 141 patients with acute lymphocytic leukemia (ALL) or acute myeloid leukemia/ myelodysplastic syndromes (AML/MDS) using the modified technique, and 35 of the patients were also examined using the original technique. The successful detection rate and positive site detection rate were compared between the modified and original techniques.
RESULTSModification of the pre-coated multiple-probe FISH technique resulted in an significant increase of the successful detection rate (from 85.3% to 100%) and the positive site detection rate (from 5.1% to 8.6%) in ALL patients; in AML/MDS patients, the successful detection rate was significantly improved from 67.4% to 99.8% and the positive site detection rate from 3.5% to 6.0% (P<0.01).
CONCLUSIONThe modified pre-coated multiple-probe FISH technique can significantly increase the diagnostic efficiency of cytogenetic abnormalities in leukemic patients.
Chromosome Aberrations ; Humans ; In Situ Hybridization, Fluorescence ; methods ; Karyotyping ; Leukemia, Myeloid, Acute ; diagnosis ; genetics ; Myelodysplastic Syndromes ; diagnosis ; genetics