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  1. NTU Theses and Dissertations Repository
  2. 公共衛生學院
  3. 環境與職業健康科學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80780
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dc.contributor.advisor陳保中(Pau-Chung Chen)
dc.contributor.authorTing-Jui Liuen
dc.contributor.author劉庭睿zh_TW
dc.date.accessioned2022-11-24T03:16:19Z-
dc.date.available2021-11-03
dc.date.available2022-11-24T03:16:19Z-
dc.date.copyright2021-11-03
dc.date.issued2021
dc.date.submitted2021-10-12
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Bogdanska, Jasna, Borg, Daniel, Sundström, Maria, Bergström, Ulrika, Halldin, Krister, Abedi-Valugerdi, Manuchehr, . . . Nobel, Stefan. (2011). Tissue distribution of 35S- labelled perfluorooctane sulfonate in adult mice after oral exposure to a low environmentally relevant dose or a high experimental dose. Toxicology, 284(1-3), 54-62. Bradley, Robert H, Caldwell, Bettye M %J Child development. (1984). The relation of infants' home environments to achievement test performance in first grade: A follow-up study. 803-809. Buser, Melanie C, Scinicariello, Franco. (2016). Perfluoroalkyl substances and food allergies in adolescents. Environment international, 88, 74-79. Calafat, Antonia M, Wong, Lee-Yang, Kuklenyik, Zsuzsanna, Reidy, John A, Needham, Larry L. (2007). Polyfluoroalkyl chemicals in the US population: data from the National Health and Nutrition Examination Survey (NHANES) 2003–2004 and comparisons with NHANES 1999–2000. Environmental health perspectives, 115(11), 1596-1602. Calafat, Antonia M, Wong, Lee-Yang, Kuklenyik, Zsuzsanna, Reidy, John A, Needham, Larry L %J Environmental health perspectives. (2007). Polyfluoroalkyl chemicals in the US population: data from the National Health and Nutrition Examination Survey (NHANES) 2003–2004 and comparisons with NHANES 1999–2000. 115(11), 1596- 1602. Chang, Catie, Glover, Gary H. (2009). Effects of model-based physiological noise correction on default mode network anti-correlations and correlations. Neuroimage, 47(4), 1448-1459. Chen, Mei-Huei, Ha, Eun-Hee, Liao, Hua-Fang, Jeng, Suh-Fang, Su, Yi-Ning, Wen, Ting-Wen, . . . Chen, Pau-Chung %J Epidemiology. (2013). Perfluorinated compound levels in cord blood and neurodevelopment at 2 years of age. 800-808. Chen, Mei-Huei, Ha, Eun-Hee, Wen, Ting-Wen, Su, Yi-Ning, Lien, Guang-Wen, Chen, Chia-Yang, . . . Hsieh, Wu-Shiun %J PloS one. (2012). Perfluorinated compounds in umbilical cord blood and adverse birth outcomes. 7(8), e42474. 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Serum polyfluoroalkyl concentrations, asthma outcomes, and immunological markers in a case–control study of Taiwanese children. Environmental health perspectives, 121(4), 507-513. Grandjean, Philippe, Landrigan, Philip J. (2006). Developmental neurotoxicity of industrial chemicals. The Lancet, 368(9553), 2167-2178. Hsieh, Chia-Jung, Hsieh, Wu-Shiun, Su, Yi-Ning, Liao, Hua-Fang, Jeng, Suh-Fang, Taso, Feng-Ming, . . . Guo, Yueliang Leon %J BMC research notes. (2011). The Taiwan Birth Panel Study: a prospective cohort study for environmentally-related child health. 4(1), 291. Impinen, A, Longnecker, MP, Nygaard, UC, London, SJ, Ferguson, KK, Haug, LS, Granum, B. (2019). Maternal levels of perfluoroalkyl substances (PFASs) during pregnancy and childhood allergy and asthma related outcomes and infections in the Norwegian Mother and Child (MoBa) cohort. Environment international, 124, 462-472. Impinen, A, Nygaard, UC, Carlsen, KC Lødrup, Mowinckel, P, Carlsen, KH, Haug, LS, Granum, B. (2018a). Prenatal exposure to perfluoralkyl substances (PFASs) associated with respiratory tract infections but not allergy-and asthma-related health outcomes in childhood. Environmental research, 160, 518-523. Impinen, A, Nygaard, UC, Carlsen, KC Lødrup, Mowinckel, P, Carlsen, KH, Haug, LS, Granum, B %J Environmental research. (2018b). Prenatal exposure to perfluoralkyl substances (PFASs) associated with respiratory tract infections but not allergy-and asthma-related health outcomes in childhood. 160, 518-523. Johansson, Niclas, Eriksson, Per, Viberg, Henrik. (2009). Neonatal Exposure to PFOS 24 and PFOA in Mice Results in Changes in Proteins which are Important for Neuronal Growth and Synaptogenesis in the Developing Brain. Toxicological Sciences, 108(2), 412-418. doi:10.1093/toxsci/kfp029 %J Toxicological Sciences Lau, Christopher, Anitole, Katherine, Hodes, Colette, Lai, David, Pfahles-Hutchens, Andrea, Seed, Jennifer. (2007). Perfluoroalkyl acids: a review of monitoring and toxicological findings. Toxicological Sciences, 99(2), 366-394. Lee, Sunggyu, Kim, Sunmi, Park, Jeongim, Kim, Hai-Joong, Choi, Gyuyeon, Choi, Sooran, . . . Choi, Kyungho. (2018). Perfluoroalkyl substances (PFASs) in breast milk from Korea: Time-course trends, influencing factors, and infant exposure. Science of the Total Environment, 612, 286-292. Lien, Guang-Wen, Huang, Ching-Chun, Wu, Kuen-Yuh, Chen, Mei-Huei, Lin, Chien-Yu, Chen, Chia-Yang, . . . Chen, Pau-Chung %J Chemosphere. (2013). Neonatal–maternal factors and perfluoroalkyl substances in cord blood. 92(7), 843-850. Lien, Guang-Wen, Wen, Ting-Wen, Hsieh, Wu-Shiun, Wu, Kuen-Yuh, Chen, Chia-Yang, Chen, Pau-Chung %J Journal of Chromatography B. (2011). Analysis of perfluorinated chemicals in umbilical cord blood by ultra-high performance liquid chromatography/tandem mass spectrometry. 879(9-10), 641-646. Manzano-Salgado, Cyntia B, Casas, Maribel, Lopez-Espinosa, Maria-Jose, Ballester, Ferran, Basterrechea, Mikel, Grimalt, Joan O, . . . Sunyer, Jordi %J Environmental research. (2015). Transfer of perfluoroalkyl substances from mother to fetus in a Spanish birth cohort. 142, 471-478. Matilla-Santander, Nuria, Valvi, Damaskini, Lopez-Espinosa, Maria-Jose, Manzano- Salgado, Cyntia B, Ballester, Ferran, Ibarluzea, Jesús, . . . Sunyer, Jordi. (2017). Exposure to perfluoroalkyl substances and metabolic outcomes in pregnant women: evidence from the Spanish INMA birth cohorts. Environmental health perspectives, 125(11), 117004. O'Donnell, Louise. (2009). The Wechsler Intelligence Scale for Children—Fourth Edition. Okada, Emiko, Sasaki, Seiko, Kashino, Ikuko, Matsuura, Hideyuki, Miyashita, Chihiro, Kobayashi, Sumitaka, . . . Kishi, Reiko. (2014). Prenatal exposure to perfluoroalkyl acids and allergic diseases in early childhood. Environment international, 65, 127-134. Prevedouros, Konstantinos, Cousins, Ian T, Buck, Robert C, Korzeniowski, Stephen H %J Environmental science, technology. (2006). Sources, fate and transport of perfluorocarboxylates. 40(1), 32-44. Rice, Deborah, Barone Jr, Stan. (2000). Critical periods of vulnerability for the developing nervous system: evidence from humans and animal models. Environmental health perspectives, 108(suppl 3), 511-533. Smit, Lidwien AM, Lenters, Virissa, Høyer, Birgit Bjerre, Lindh, Christian H, Pedersen, Henning S, Liermontova, Iuliia, . . . Toft, Gunnar. (2015). Prenatal exposure to environmental chemical contaminants and asthma and eczema in school‐age children. Allergy, 70(6), 653-660. Stein, Cheryl R, McGovern, Kathleen J, Pajak, Ashley M, Maglione, Paul J, Wolff, Mary S. (2016). Perfluoroalkyl and polyfluoroalkyl substances and indicators of immune function in children aged 12–19 y: National Health and Nutrition Examination Survey. Pediatric research, 79(2), 348-357. Stein, Cheryl R, Savitz, David A, Bellinger, David C. (2013). Perfluorooctanoate (PFOA) and neuropsychological outcomes in children. Epidemiology (Cambridge, Mass.), 24(4), 590. Suh, Dong In, Song, Dae Jin, Baek, Hey-Sung, Shin, Meeyong, Yoo, Young, Kwon, Ji- Won, . . . Kim, Hwan Soo %J BMC pulmonary medicine. (2019). Korean childhood asthma study (KAS): a prospective, observational cohort of Korean asthmatic children. 19(1), 64. Tsai, Meng-Shan, Chen, Mei-Huei, Lin, Ching-Chun, Ng, Sharon, Hsieh, Chia-Jung, Liu, Chen-yu, . . . Chen, Pau-Chung %J Science of the Total Environment. (2017). Children's environmental health based on birth cohort studies of Asia. 609, 396-409. Vélez, MP, Arbuckle, TE, Fraser, WD %J Human reproduction. (2015). Maternal exposure to perfluorinated chemicals and reduced fecundity: the MIREC study. 30(3), 701-709. Wang, I-Jen, Hsieh, Wu-Shiun, Chen, Chia-Yang, Fletcher, Tony, Lien, Guang-Wen, Chiang, Hung-Lung, . . . Chen, Pau-Chung %J Environmental research. (2011). The effect of prenatal perfluorinated chemicals exposures on pediatric atopy. 111(6), 785-791. Wang, Yan, Rogan, Walter J, Chen, Hsin-Yi, Chen, Pau-Chung, Su, Pen-Hua, Chen, Hsiao-Yen, . . . health, environmental. (2015). Prenatal exposure to perfluroalkyl substances and children's IQ: The Taiwan maternal and infant cohort study. 218(7), 639- 644. Watkins, Marley W. (2010). Structure of the Wechsler Intelligence Scale for Children— Fourth Edition among a national sample of referred students. Psychological Assessment, 22(4), 782. Wechsler, David, Kodama, Habuku. (1949). Wechsler intelligence scale for children (Vol. 1): Psychological corporation New York. Yang, Lin, Li, Jingguang, Lai, Jianqiang, Luan, Hemi, Cai, Zongwei, Wang, Yibaina, . . . Wu, Yongning. (2016). Placental transfer of perfluoroalkyl substances and associations with thyroid hormones: Beijing Prenatal Exposure Study. Scientific reports, 6(1), 1-9. Zhang, Yifeng, Beesoon, Sanjay, Zhu, Lingyan, Martin, Jonathan W. (2013). Biomonitoring of perfluoroalkyl acids in human urine and estimates of biological half- life. Environmental science technology, 47(18), 10619-10627. Zhang, Yifeng, Beesoon, Sanjay, Zhu, Lingyan, Martin, Jonathan W %J Environmental science, technology. (2013). Biomonitoring of perfluoroalkyl acids in human urine and estimates of biological half-life. 47(18), 10619-10627.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80780-
dc.description.abstract"背景/目的 在全氟碳化物 Perfluoroalkyl and Polyfluoroalkyl Substances (PFAS)是環境中常見的持久性有機污染物,像是有全氟辛酸 perfluorooctanoic acid (PFOA)、全氟辛 烷磺酸鹽perfluorooctane sulfonate (PFOS)、全氟壬酸 perfluorononanoic acid (PFNA)及全氟十一酸 perfluoroundecanoic acid (PFUnDA)。全氟碳化物質廣泛存在 且動物研究表明,PFAS 會影響兒童的神經發展與智商,然而產前 PFAS 暴露是 否影響更多兒童的智商得分的影響尚不清楚。 方法 我們的研究使用的族群是來自臺灣出生世代追蹤調查研究(Taiwan Birth Panel Study I),在出生時收集臍帶血測量全氟碳化物的濃度,用極致液相層析/串聯式 質譜儀分析臍帶血中全氟碳化物的濃度。並在隨訪過程中,我們於孩童七歲時進 行魏氏兒童智力測驗第四版試卷測驗評估兒童智商分數。 結果 在我們的研究中,臍帶血中的包括 PFOA、PFOS、PFNA、PFUnDA 的濃度平均 數分別為 2.33、5.12、7.38 和 16.00 ng/mL。研究族群中的孩童智力測驗分數 intelligence quotient total(IQ total)平均數為 113.0,全量表智商 full scale intelligence quotient (FSIQ)平均數為 109.9。在連續變量迴歸模型中,產前暴露 PFOA 濃度對 於兒童智商分數呈現正相關,且產前暴露 PFOA 濃度對知覺推裡指數(PRI)有統 計顯著(β=12.035, p<0.05);產前暴露 PFUnDA 濃度對於智商分數呈現負相關, 且產前暴露 PFUnDA 濃度對處理速度指數(PSI)指數分數有統計顯著(β=-5.634, p<0.05)。 結論 我們的研究表明,產前暴露 PFOA 及 PFUnDA 與孩童智商有關。暴露 PFOA會影響知覺推裡指數(PRI)和 PFUnDA 會影響處理速度指數(PSI)。產前 PFAS 暴露可能對兒童智力發展有重要作用。這些暴露的健康風險需要更進一步探索。"zh_TW
dc.description.provenanceMade available in DSpace on 2022-11-24T03:16:19Z (GMT). No. of bitstreams: 1
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Previous issue date: 2021
en
dc.description.tableofcontents口試委員會審定書 I.II 誌謝 i 摘要 ii ABSTRACT iii 目錄 v 表目錄 vi 圖目錄 vii 第一章 介紹 1 第二章 材料與方法 4 1.1 研究設計與研究族群 4 1.2 魏氏兒童智力量表第四版中文版The Chinese version of Wechsler’s Intelligence Scale for Children-IV 5 1.3 中文版兒童早期家庭環境評估量表The Home Observation for Measurement of the Environments (HOME) Inventory 7 1.4 分析方法 8 1.5 統計分析 9 第三章 結果 10 第四章 討論 12 第五章 結論 15 參考文獻 16
dc.language.isozh-TW
dc.subject神經發展zh_TW
dc.subject產前暴露zh_TW
dc.subject全氟碳化物zh_TW
dc.subject智商zh_TW
dc.subject魏氏兒童智力測驗第四版zh_TW
dc.subjectprenatal exposureen
dc.subjectperfluoroalkyl substances (PFAS)en
dc.subjectintelligence quotient (IQ)en
dc.subjectWechsler intelligence scale (WSIC-IV)en
dc.subjectneurodevelopmenten
dc.title產前暴露全氟碳化物與孩童智商的相關性zh_TW
dc.titlePrenatal exposure to perfluoroalkyl substances and children’s intelligence quotient (IQ)en
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee何文照(Hsin-Tsai Liu),陳美惠(Chih-Yang Tseng),楊曜旭
dc.subject.keyword產前暴露,全氟碳化物,智商,魏氏兒童智力測驗第四版,神經發展,zh_TW
dc.subject.keywordprenatal exposure,perfluoroalkyl substances (PFAS),intelligence quotient (IQ),Wechsler intelligence scale (WSIC-IV),neurodevelopment,en
dc.relation.page32
dc.identifier.doi10.6342/NTU202103633
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2021-10-12
dc.contributor.author-college公共衛生學院zh_TW
dc.contributor.author-dept環境與職業健康科學研究所zh_TW
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