1.Disease and environmental science data-based trans-field relevance analysis and its application
Songjing CHEN ; Sizhu WU ; Li HOU
Chinese Journal of Medical Library and Information Science 2017;26(7):1-6
The relevance analysis methods for the association between environmental factors (air pollutants, fine particles, climate conditions, toxic materials) and diseases (lung cancer and asthma, etc) were studied by mining the open access scientific data in American environmental health field, which realized their practical application and can thus provide reference for studying the association between environments and diseases in our country.
2.C4.5 classification-based quantitative analysis of risk factors for respiratory diseases
Songjing CHEN ; Lin YANG ; Sizhu WU ; Jiao LI
Chinese Journal of Medical Library and Information Science 2016;25(8):35-41
A model of classification techniques was established according to the sex and age by quantitative analy-sis of the risk factors for air popplution-induced respiratory diseases using the C4 .5 decision-making tree classifi-cation.The classification-based quantitative analysis was studied.The role of risk factors for respiratory diseases in 9 groups of people was assayed .This method can be used to analyze the risk factors for both respiratory diseases and other diseases in different populations, and can thus provide the evidence for their prevention and control.
3.Application of mobile health technology in management of chronic diseases
Songjing CHEN ; Jiao LI ; Zhen HOU ; Li HOU
Chinese Journal of Medical Library and Information Science 2015;(11):73-77
After the current studies on mobile health in China and foreign countries were described, the mobile APP for health management of diabetes mellitus was developed using data mining technology, which can be used to assess the risk of diabetes mellitus, monitoring the symptoms and signs of diabetes mellitus patients, medication and diet management of diabetes mellitus patients, health-related knowledge push, and public health management.
4.Levels of phthalate internal exposure levels in pregnant women and influencing factors.
Yue YANG ; Mingming SHI ; Biqin CHEN ; Jianfeng LIN ; Songjing YANG ; Baoping ZHU ; Baoling ZHUANG ; Yuzhu JIA ; Zhenxiang HUANG ; Jing CHEN ; Huifen LIU ; Jianghui CHEN ; Yanhua SU ; Xiayi KE ; Benhua ZHAO
Chinese Journal of Preventive Medicine 2015;49(11):998-1004
OBJECTIVETo investigate the levels and influencing factors of phthalate internal exposure in pregnant women (gestation age ≤ 16 weeks).
METHODSDuring April to June in 2013, 1 020 pregnant women (gestation age ≤ 16 weeks) who had established the maternal care manual were recruited in maternal and child health hospital of Siming District, Xiamen city. Participators were asked to complete a questionnaire to obtain information on socio-demographic characteristics, lifestyle behaviors, and antenatal examination and to provide a urine sample. Finally, 998 pregnant women who provided a urine sample and completed the questionnaire were enrolled. Adopting systematic sampling method, 100 ones were selected randomly among 998 pregnant women. High performance liquid chromatography-electrospray ionization-tandern mass was used to determine the concentration of five phthalate monoesters in each urine, including mono-n-methyl phthalate (MMP), mono-ethyl phthalate (MEP), mono-butyl phthalate (MBP), mono-benzyl phthalate (MBzP), mono-ethylhexyl phthalate (MEHP). Based on the measurements and questionnaire data, multivariate logistic regression was used to analyze the association between the phthalate monoester levels and potential influential factors.
RESULTSThe detection rates of MMP, MEP, MBP, MBzP and MEHP in 100 pregnant urine samples were 94%, 93%, 87%, 83%, 99%, respectively. And the urinary median uncorrected concentrations of MMP, MEP, MBP, MBzP and MEHP in 100 urine samples were 20.56, 17.62, 10.15, 2.03, and 5.12 ng/ml, respectively. Specific gravity-corrected concentration were 20.81, 20.36, 12.88, 2.58, 5.00 ng/ml, respectively. The results of multivariate logistic regression analysis indicated that: education degree was negatively associated with urinary concentration of MMP, MEP, MBP, MBzP and MEHP, OR (95% CI) were 0.495 (0.253-0.966), 0.380 (0.191-0.755), 0.379 (0.186-0.774), 0.401 (0.196-0.819), 0.373(0.183-0.762), respectively. Participants who had hair permed and dyed during pregnancy had higher urinary level of MBP and MBzP, OR (95% CI) were 12.867 (1.240-133.525), 15.982 (1.367-186.911), respectively; Participants who use cosmetics during pregnancy had higher urinary level of MEP and MBP, OR (95% CI) were 2.977 (1.012-8.757), 4.440 (1.485-13.272), respectively; plastic bottled water consumption was positively associated with urinary concentrations of MEP and MEHP, OR (95% CI) were 3.780 (1.417-10.083), 2.699 (1.039-7.010), respectively; annual household income was negatively associated with urinary concentration of MMP, OR (95% CI) was 0.597 (0.372-0.959); individuals who took medications during pregnancy had higher urinary level of MEHP than non-takers, OR (95% CI) was 4.853 (1.084-21.732).
CONCLUSIONPregnant women whose gestation age was less than 16 weeks are generally exposed to phthalate. Phthalate internal exposure levels are significantly associated with most measured factors and the influencing factors with different phthalates internal exposure levels are different.
Chromatography, High Pressure Liquid ; Dibutyl Phthalate ; urine ; Female ; Humans ; Life Style ; Maternal Exposure ; Phthalic Acids ; urine ; Pregnancy ; Surveys and Questionnaires ; Tandem Mass Spectrometry