1.Clinical diagnosis and treatment of bronchial foreign bodies in 147 children
Shanjia CHEN ; Haoxiang GU ; Min LU ; Beirong WU ; Rong TANG
Journal of Clinical Pediatrics 2019;37(1):26-29
Objective To explore the clinical characteristics of bronchial foreign bodies in children. Method The clinical data of 147 children with exogenous bronchial foreign body admitted between 2014 and 2016 were retrospectively analyzed, and the applications of rigid bronchoscopy and flexible bronchoscopy for foreign body extraction were compared. Results All 147 cases were diagnosed with bronchial foreign bodies by chest CT, chest X-ray or respiratory endoscopy. In these cases (104 boys and 43 girls) , 87.8% of whom were aged 1-3 years, the most common types of bronchial foreign body were nuts. The common complications were bronchial mucosal granulation tissue hyperplasia (88 cases, 59.86%) , pneumonia (56 cases, 38.1%) , atelectasis (15 cases, 10.2%) , respiratory failure (14 cases, 9.52%) and bronchiectasis (4 cases, 2.72%) respectively. The foreign bodies were removed by soft bronchoscopy in 106 cases which were successfully removed at one time in 100 cases. Respiratory endoscopy was undergone in 141 cases to remove foreign bodies, and flexible bronchoscope was applied in 106 (72.11%) cases and foreign bodies were successfully removed in first attempt in 100 cases (94.34%) . Rigid bronchoscope was used in 35 cases (23.81%) and foreign bodies were successfully removed in first attempt in 28 cases (80.0%) . Conclusion The majority of children with bronchial foreign body are male. Both flexible and rigid bronchoscopes can remove exogenous foreign bodies in the lower respiratory tract.
2.Monitoring Concentration of Nirmatrelvir and Ritonavir by Ultra High Performance Liquid Chromatography-tandem Mass Spectormetry Method
Jing FAN ; Haoxiang TANG ; Yinghui WANG ; Weibin FAN ; Jiao XIE ; Bin LIN
Herald of Medicine 2024;43(2):190-195
Objective To establish a highly sensitive,stable,and universally applicable ultra-high-performance liquid mass spectrometry tandem method(UPLC-MS/MS)for simultaneous determination of nirmatrelvir and ritonavir blood concentrations in human plasma.Methods The separation was performed on an ACQUITY UPLC BEH C18 column(2.1 mm× 50 mm,1.7 μm)with gradient elution,and the mobile phase consisted of 0.1%formic acid-water and 100%acetonitrile at the flow rate of 0.3 mL·min-1.The column temperature was 45℃,and the injection volume was 2 μL.Electrospray ionization as ion source(ESI+)was used as the ion source and multiple reactions monitoring mode(nirmatrelvir m/z 500.20→319.10,nirmatrelvir-D9 m/z 508.59→328.10,ritonavir m/z 721.30→426.10,13C,2H3-ritonavir m/z 725.30→426.10)was adopted.Thirty patients with coronavirus disease 2019(COVID-19)treated with nirmatrelvir and ritonavir at the People's Hospital of Changxing County in Jan.2023 were selected to measure their steady-state trough concentrations of nirmatrelvir and ritonavir after 3 days of treatment.Results The linear range of nirmatrelvir was 0.100-10.0 μg·mL-1(R2=0.997 2),and the linear range of nirmatrelvir was 0.050-5.00 μg·mL-1(R2=0.995 2).The recovery rates of nirmatrelvir and lopinavir were both>90%and the intra-batch and inter-batch precision relative standard deviations(RSDs)were both<10%.Additionally,the recovery ranges for nirmatrelvir and lopinavir were 91.5%-97.0%,and the matrix effects ranged from 92.4%to 97.7%.The results of clinical samples showed that the plasma concentrations of nirmatrelvir and ritonavir in patients with COVID-19 varied greatly among individuals.Conclusion The method for simultaneous determination of nirmatrelvir and ritonavir concentrations in human plasma established in this study is convenient,highly specific,highly accurate,with high precision,which is suitable for monitoring the concentrations of nirmatrelvir and ritonavir in patients.
3.Development of Human Vital Signs and Body Posture Monitoring and Positioning Alarm Systems.
Haoxiang TANG ; Jia XU ; Ruijing SHE ; Dongni NING ; Yushun GONG ; Yongqin LI ; Liang WEI
Chinese Journal of Medical Instrumentation 2023;47(6):617-623
In view of the high incidence of malignant diseases such as malignant arrhythmias in the elderly population, accidental injuries such as falls, and the problem of no witnesses when danger occurs, the study developed a human vital signs and body posture monitoring and positioning alarm system. Through the collection and analysis of electrocardiogram (ECG), respiration (RESP) and acceleration (ACC) signals, the system monitors human vital signs and body posture in real time, automatically judges critical states such as malignant arrhythmias and accidental falls on the local device side, and then issues alarm information, opens the positioning function, and uploads physiological information and patient location information through 4G communication. Experiments have shown that the system can accurately determine the occurrence of ventricular fibrillation and falls, and issue position and alarm information.
Humans
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Aged
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Arrhythmias, Cardiac/diagnosis*
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Ventricular Fibrillation
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Electrocardiography
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Accidental Falls
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Vital Signs
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Posture
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Monitoring, Physiologic