1.A study on effect of vaporized perfluorocarbon combined with exogenous surfactant inhalation on rabbit models of acute lung injury
Rongbing HE ; Fan YI ; Sheng ZHANG ; Jun GUAN ; Wenfang LI ; Jun ZHU ; Zhaofen LIN
Chinese Journal of Integrated Traditional and Western Medicine in Intensive and Critical Care 2017;24(4):374-379
Objective To observe the effects of vaporized perfluorocarbon (PFC) combined with exogenous pulmonary surfactant (PS) inhalation on rabbit models of acute lung injury (ALI).Methods Thirty-two New Zealand rabbits were randomly divided into four groups: ALI group, combination treatment group, PFC group, and PS group (each groupn = 8 rabbits). The rabbit model of ALI was induced by the whole lung normal saline lavage. After modeling, in the combined group, 3 mL/kg vaporized perfluorooctyl bromide/dipalmitoylphosphatidylcholine (PFOB/DPPC) emulsion was inhaled, the rabbits in PFC and PS groups were treated with vaporized PFOB emulsion and vaporized DPPC emulsion 3 mL/kg inhalation respectively, and in the ALI group was given the same amount of vaporized normal saline inhalation. In each group, before modeling for 30 minutes (basic value), after modeling for 1 hour and after treatment at 0 minute, 30 minutes, 2 hours, 4 hours, the respiratory rate (RR), oxygenation index (OI), dynamic lung compliance (Cdyn) were observed, and the lung coefficient (LI) and lung permeability index (LPI) were calculated; the levels of serum tumor necrosis factor-α (TNF-α) and interleukin-1β (IL-1β) were measured by double antibody sandwich enzyme-linked immunosorbent assay (ELISA); the lung tissue was collected and the lung pathological changes were observed under macroscopic and microscopic observation.Results Aftermodeling, the levels of OI, Cdyn were quickly lowered, RR became significantly elevated, and there were obvious edema, hemorrhage and exudation in lung tissue of ALI group. The levels of OI were significantly increased in combined group and PFC group compared with the level in ALI group after treatment at 0 minute initially [mmHg (1 mmHg = 0.133 kPa): 231.0±16.7, 221.4±19.0 vs. 189.5±21.0, both P < 0.05], while the level of OI in PS group was increased significantly until 4 hours after treatment, being higher than that in ALI group (mmHg: 297.0±20.7 vs. 243.3±36.7,P < 0.05); RR was decreased significantly in combined treatment group at 30 minutes after treatment compared with that in ALI group (bpm: 151.1±13.3 vs. 178.5±32.0,P < 0.05), while the RR in PFC group and PS group were not increased significantly until 4 hours after treatment being higher than that in ALI group (bpm: 129.3±14.3, 133.1±13.9 vs. 157.5±32.5, bothP < 0.05). Compared to ALI group, the three treatment groups resulted in significant improvement in Cdyn right at 0 minute (mL/cmH2O: 1.64±0.10, 1.45±0.10, 1.43±0.09 vs. 0.57±0.05, allP < 0.05), their LPI, LI and inflammatory cytokines were significantly decreased [LPI (×10-5): 4.21±0.42, 4.76±0.55, 4.87±0.49 vs. 5.56±0.52, LI: 8.04±0.58, 8.90±0.88, 9.22±0.71 vs. 10.85±0.73, TNF-α (ng/L): 50.05±4.91, 56.18±5.54, 63.60±5.96 vs. 73.60±5.27, IL-1β (ng/L): 34.27±4.55, 40.29±5.03, 48.13±6.38 vs. 54.71±4.26, allP<0.05], and pulmonary edema, congestion and inflammatory cell infiltration were obviously ameliorated (pathological scores: 3.74±0.58, 4.50±0.75, 5.29±0.72 vs. 6.13±0.72, P < 0.05). Cdyn levels were increased significantly in combined treatment group at 0 minute, 30 minutes, 4 hours after treatment compared with thosein PFC and PS group, but there were no significant differences between PFC and PS group. Levels of LI, LPI, inflammatory factors and pathological scores were decreased significantly in combined treatment group compared with those in PFC and PS group, the degrees of improvement of inflammatory factors and pathological scores in PFC group were more obvious than those in PS group (allP < 0.05).Conclusions PFOB combined with DPPC inhalation can provide greater oxygen delivery, reduce the pro-inflammatory cytokines, supplement PS and influence its distribution on the surface of lung, which might lead to a marked and sustained improvement in oxygenation, pulmonary function and amelioration of lung edema and inflammatory reaction in saline lavage induced lung injury of rabbits.
2.Epidemiological characteristics of overseas imported dengue fever and malaria cases in Yunnan Province from 2015 to 2021
Rongbing ZHANG ; Jin HONG ; Rong TIAN ; Zhihui CHEN ; Qian YANG ; Qing YE ; Jianrong LI ; Honglin MA ; Lihua CHEN ; Xia PENG
Journal of Preventive Medicine 2023;35(2):141-143
Objective:
To investigate the epidemiological characteristics of overseas imported dengue fever and malaria cases in Yunnan Province from 2015 to 2021, so as to provide insights into the prevention and control of overseas imported arthropod-borne infectious diseases.
Methods:
The data pertaining to imported dengue fever and malaria cases in Yunnan Province from 2015 to 2021 were collected from the Chinese Disease Prevention and Control Information System, and the temporal distribution, regional distribution, population distribution, sources, diagnosis and treatment of imported dengue fever and malaria cases were descriptively analyzed.
Results:
Totally 4 332 overseas imported dengue fever cases and 2 011 overseas imported malaria cases were reported in Yunnan Province form 2015 to 2021, which accounted for 30.09% of all reported dengue fever cases and 98.53% of all reported malaria cases. The number of overseas imported dengue fever and malaria cases peaked from August to November (83.13% of all imported dengue fever cases) and from April to July (59.08% of all imported malaria cases), and the cases were predominantly reported in Dehong Prefecture (50.99% and 58.88%), with farmers as the predominant occupation (40.21% and 67.93%). The dengue fever and malaria cases were mainly imported from Southeast Asia (99.04% and 88.21%), and the proportions of definitive diagnosis of dengue fever and malaria were 88.33% and 97.80% at township hospitals, respectively.
Conclusions
The number of overseas imported dengue fever and malaria cases peaked from August to November and from April to July in Yunnan Province from 2015 to 2021, and the cases were predominantly reported in Dehong Prefecture and imported from Southeast Asia, with farmers as the predominant occupation.
3.Quality control of the multi-centre clinical trial on PET/CT brain imaging
Zizhao JU ; Huiwei ZHANG ; Qi HUANG ; Jingjie GE ; Rongbing JIN ; Rong TIAN ; Xiangsong ZHANG ; Shuo HU ; Jie LU ; Xiaoli LAN ; Li HUO ; Yihui GUAN ; Chuantao ZUO ; Kuangyu SHI
Chinese Journal of Nuclear Medicine and Molecular Imaging 2022;42(9):550-555
Multi-centre clinical trials on PET/CT brain imaging are complex to organize and require careful co-ordination and management. This article describes considerations, which are necessary when designing and starting a multi-centre clinical trial on PET/CT brain imaging, based on guidelines and multi-center clinical brain imaging studies, providing references for further studies.
4.Guidance for operation and reading of 18F-FDG PET brain imaging in dementia
Huiwei ZHANG ; Jiaying LU ; Zhemin HUANG ; Ruixue CUI ; Xiaoli LAN ; Jie LU ; Xiangsong ZHANG ; Liping FU ; Yafu YIN ; Rongbing JIN ; Shicun WANG ; Jianjun WU ; Qianhua ZHAO ; Yihui GUAN ; Chuantao ZUO
Chinese Journal of Nuclear Medicine and Molecular Imaging 2022;42(10):613-618
Due to the availability of 18F-FDG in PET centers, this article aims to advocate and promote the standardization of 18F-FDG PET brain imaging in dementia in order to improve the reliability, repeatability and comparison of the imaging process and results. It is also provided to guide the PET imaging operation standard and to give suggestions on image interpretation.
5.Epidemiological characteristics of varicella in schools of Yunnan Province in 2018 - 2020
Rongbing ZHANG ; Jin HONG ; Lihua CHEN ; Xia PENG ; Jibo HE ; Zhenhui LI ; Yan LIN ; Yucheng JIA
Journal of Public Health and Preventive Medicine 2023;34(4):55-58
Objective To analyze the epidemiological characteristics of school varicella and varicella public health emergency event (PHEE) in Yunnan Province, and to provide a scientific basis for the prevention and control of varicella in schools. Methods The descriptive epidemiological method was used to analyze the reported PHEE of varicella in students and varicella in schools in Yunnan Province from 2018 to 2020. Results From 2018 to 2020, a total of 69,391 cases of varicella were reported in students in Yunnan Province, accounting for 71.48% (69 391 / 97 080) of the total cases in the province, and the annual average reported incidence rate was 255.56/100 000 (69 391/27.1522 million). The time distribution of the incidence showed double peaks, which were from May to July (26.48%) and October to January of the following year (53.88%). The incidence rates of different schools from high to low were 301.74/100 000 for primary schools (34 816/11.538 3 million), 250.43/100 000 for kindergarten (11 526/4.6024 million), 202.74/100 000 for middle school (16 779/8.276 1 million), and 119.07/100 000 for others (3 257/2.735 4 million). The age distribution was mainly concentrated in 5-9 years old, accounting for 39.81% (27 625/69 391). Varicella PHEE accounted for 25.64% (180/702)of the province's PHEE in the same period, school varicella PHEE accounted for 100% of varicella PHEE, and the attack rate was 3.38% (6 566/194 260). The sources of reported varicella PHEE were hospitals 45.40% (58/123), epidemic analysis 36.78% (44/123), schools 13.22% (15/123), and others 4.60% (6/123). Conclusion The incidence of varicella in schools in Yunnan Province is high, which is harmful to students. PHEE reported in rural schools are relatively lagging behind. On the basis of doing two doses of varicella vaccination, emergency prevention should be focused on epidemic seasons, lower grade schools and rural schools. The source of infection shall be controlled and managed in time to prevent the outbreak of the epidemic. It is recommended that varicella should be included in the management of Class C infectious diseases.
6.Interpretation of presynaptic dopaminergic PET imaging results
Ping WU ; Jianjun WU ; Xun SUN ; Jingjie GE ; Fangyang JIAO ; Chengfeng JIANG ; Lirong JIN ; Xinlu WANG ; Zhenguang WANG ; Yafu YIN ; Ruixue CUI ; Rong TIAN ; Shuo HU ; Rongbing JIN ; Jianjun LIU ; Xiangsong ZHANG ; Ling CHEN ; Jie LU ; Xingmin HAN ; Yihui GUAN ; Xiaoli LAN ; Chuantao ZUO ; Jian WANG
Chinese Journal of Nuclear Medicine and Molecular Imaging 2023;43(4):236-241
Presynaptic dopaminergic PET imaging is a useful method for the diagnosis of parkinsonism. Based on the expert consensus on operation and clinical application of dopamine transporter brain PET imaging technology published in 2020, this paper further recommends the relevant elements of result interpretation of presynaptic dopaminergic PET imaging.
7.Consensus for the management of severe acute respiratory syndrome.
Nanshang ZHONG ; Yanqing DING ; Yuanli MAO ; Qian WANG ; Guangfa WANG ; Dewen WANG ; Yulong CONG ; Qun LI ; Youning LIU ; Li RUAN ; Baoyuan CHEN ; Xiangke DU ; Yonghong YANG ; Zheng ZHANG ; Xuezhe ZHANG ; Jiangtao LIN ; Jie ZHENG ; Qingyu ZHU ; Daxin NI ; Xiuming XI ; Guang ZENG ; Daqing MA ; Chen WANG ; Wei WANG ; Beining WANG ; Jianwei WANG ; Dawei LIU ; Xingwang LI ; Xiaoqing LIU ; Jie CHEN ; Rongchang CHEN ; Fuyuan MIN ; Peiying YANG ; Yuanchun ZHANG ; Huiming LUO ; Zhenwei LANG ; Yonghua HU ; Anping NI ; Wuchun CAO ; Jie LEI ; Shuchen WANG ; Yuguang WANG ; Xioalin TONG ; Weisheng LIU ; Min ZHU ; Yunling ZHANG ; Zhongde ZHANG ; Xiaomei ZHANG ; Xuihui LI ; Wei CHEN ; Xuihua XHEN ; Lin LIN ; Yunjian LUO ; Jiaxi ZHONG ; Weilang WENG ; Shengquan PENG ; Zhiheng PAN ; Yongyan WANG ; Rongbing WANG ; Junling ZUO ; Baoyan LIU ; Ning ZHANG ; Junping ZHANG ; Binghou ZHANG ; Zengying ZHANG ; Weidong WANG ; Lixin CHEN ; Pingan ZHOU ; Yi LUO ; Liangduo JIANG ; Enxiang CHAO ; Liping GUO ; Xuechun TAN ; Junhui PAN ; null ; null
Chinese Medical Journal 2003;116(11):1603-1635
8. Correlations between striatal dopamine transporter distribution, glucose metabolism and clinical symptoms in Parkinson′s disease
Fangyang JIAO ; Jun TAO ; Jinju SUN ; Haosu ZHANG ; Yi LUO ; Jianliang WEN ; Zhenfan ZHAO ; Zhiqiang XU ; Rongbing JIN
Chinese Journal of Nuclear Medicine and Molecular Imaging 2019;39(6):349-355
Objective:
To investigate the correlations among striatal dopamine transporter (DAT) distribution, glucose metabolism and Parkinson′s disease (PD) clinical symptoms.
Methods:
Twenty-five clinically confirmed idiopathic PD patients (17 males, 8 females, age: (59.8±9.2) years) who underwent 11C-2-beta-carbomethoxy-3-beta-(4-fluorophenyl)tropane (CFT) and 18F-fluorodeoxyglucose (FDG) PET imaging from January 2015 to December 2016 were reviewed. The detailed clinical scores were systematically collected from all patients. Correlations between DAT distribution, glucose metabolism and clinical symptoms were evaluated at global and voxel levels using Pearson correlation analysis.
Results:
There were significantly positive correlations between the PD-related pattern (PDRP) value and unified PD rating scale (UPDRS) motor scores, non-motor symptoms scale (NMSS) scores, activity of daily living scale (ADL) scores (