| [1] |
王桂芳, 郭会越, 邹建芳. 铅的神经毒性及其生物标志物的研究进展[J]. 工业卫生与职业病, 2012, 38(4):252-255.
|
| [2] |
何九军. 血铅中毒对少年儿童生长发育的影响[J]. 中国资源综合利用, 2015, 33(5):61-63.
|
| [3] |
LARSEN B, SÁNCHEZ-TRIANA E. Global health burden and cost of lead exposure in children and adults:A health impact and economic modelling analysis[J]. Lancet Planet Health, 2023, 7(10):E831-E840.
|
| [4] |
ROTHWEILER A M, CABB E E, GERSTENBERGER S L. The status of childhood lead poisoning and prevention in Nevada,USA[J]. Thescientificworldjournal, 2007, 7:479-492.
DOI
URL
|
| [5] |
WANG J, EL-FAHMAWI A, YAN C, et al. Childhood lead poisoning from domestic products in China:A case study with implications for practice,education,and policy[J]. Public Health Nurs, 2019, 36(6):806-812.
DOI
URL
|
| [6] |
GARCÍA-FERNÁNDEZ A J, ESPÍN S, GÓMEZ-RAMÍREZ P, et al. Wildlife Sentinels for Human and Environmental Health Hazards in Ecotoxicological Risk Assessment[M]// ROYK. EcotoxicologicalQSARs. New York: Springer US,2020:77-94.
|
| [7] |
TOYOMAKI H, YABE J, NAKAYAMA S M M, et al. Factors associated with lead(Pb) exposure on dogs around a Pb mining area,Kabwe,Zambia[J]. Chemosphere, 2020, 247:125919.
DOI
URL
|
| [8] |
RABINOWITZ P M, GORDON Z, HOLMES R, et al. Animals as sentinels of human environmental health hazards:An evidence-based analysis[J]. EcoHealth, 2005, 2(1):26-37.
DOI
URL
|
| [9] |
BERNY P J M. Household pets as monitors of lead exposure to humans[D]. Urbana-Champaign: University of Illinois at Urbana-Champaign, 1993.
|
| [10] |
秦晓飞, 秦占芬, 徐晓白. 前哨动物在环境污染物人体健康风险评价中的应用[J]. 生态毒理学报, 2007(4):476-480.
|
| [11] |
HEGEDUS C, ANDRONIE L, UIUIUI P, et al. Pets,Genuine Tools of Environmental Pollutant Detection:Sentinels and Biomonitors[J]. Animals, 2023, 13(18):2923.
DOI
URL
|
| [12] |
BERNY P J, COTE L M, BUCK W B. Can household pets be used as reliable monitors of lead exposure to humans?[J]. Sci Total Environ, 1995, 172(2-3):163-173.
PMID
|
| [13] |
NEO J P S, TAN B H. The use of animals as a surveillance tool for monitoring environmental health hazards,human health hazards and bioterrorism[J]. Vet Microbiol, 2017, 203:40-48.
DOI
URL
|
| [14] |
ASSI M A, HEZMEE M N M, HARONA W, et al. The detrimental effects of lead on human and animal health[J]. Vet World, 2016, 9(6):660-671.
DOI
URL
|
| [15] |
IMAGAMA M, RUSHING M, CARTER A, et al. Using blood lead concentrations of wildlife sentinels to identify environmental risk factors of lead exposure for public health and wildlife rehabilitation efforts[J]. Ecotoxicology, 2023, 32(3):357-369.
DOI
PMID
|
| [16] |
CHEN X, CAO S, WEN D, et al. Domestic dogs as sentinels of children lead exposure:Multi-pathway identification and source apportionment based on isotope technique[J]. Chemosphere, 2023, 316:137787.
DOI
URL
|
| [17] |
陈星. 家养狗血铅同位素指纹特征解析农村地区儿童铅暴露来源[D]. 北京: 北京科技大学, 2023.
|
| [18] |
MONKIEWICZ J, ROGOWSKA K A, MIELNIKIEWICZ A, et al. Lead in the blood of dogs living in variously contaminated environment[J]. Bull Vet Inst Pulawy, 2012, 56(4):605-609.
DOI
URL
|
| [19] |
PARK S H, LEE M H, KIM S K. Studies on Cd,Pb,Hg and Cr values in dog hairs from urban Korea[J]. Asian-Australas J Anim Sci, 2005, 18(8):1135-1140.
DOI
URL
|
| [20] |
HEGEDUS C, ANDRONIE L, UIUIU P, et al. Pets,genuine tools of environmental pollutant detection[J]. Animals(Basel), 2023, 13(18):2923.
|
| [21] |
张园, 耿春女, 蔡超. 铅暴露对人体健康风险评价的模型综述[J]. 环境化学, 2013, 32(6):943-951.
|
| [22] |
孟菁华. 重金属铅的Source-to-Effect模型构建及健康风险评价[D]. 兰州: 兰州大学, 2015.
|
| [23] |
杨珂玲, 张宏志, 张志刚. 铅暴露的环境健康风险评估模型的本土化研究[J]. 中国人口·资源与环境, 2016, 26(2):163-169.
|
| [24] |
MADDALONI M, BALLEW M, DIAMOND G, et al. Assessing lead risks at non-residential hazardous waste sites[J]. Hum Ecol Risk Assess, 2005, 11(5):967-1003.
DOI
URL
|
| [25] |
吕玉桦. 我国儿童血铅水平现状及对策研究[D]. 衡阳: 南华大学, 2014.
|
| [26] |
荣盛, 丁栋梅, 滕丽丽, 等. 儿童血铅测定分析[J]. 中国保健营养, 2012, 22(4):258-259.
|
| [27] |
YAFFE Y, FLESSEL C P, WESOLOWSKI J J, et al. Identification of lead sources in California children using the stable isotope ratio technique[J]. Arch Environ Health, 1983, 38(4):237-245.
DOI
URL
|
| [28] |
刘景秀, 王晓燕, 曾静, 等. 同体儿童血、发铝浓度及同位素比值研究[J]. 卫生研究, 2009, 38(3):375-377.
|
| [29] |
TSCHETSCH L, MUSSAUER A, MAUDER M, et al. Multi-isotope fingerprints(O,Sr and Pb) in archaeological animal bone bioapatite:Similarity search and the suitability for provenance analysis in a geologically complex Alpine region[J]. Archaeometry, 2020, 62:35-52.
DOI
URL
|
| [30] |
DUZGOREN-AYDIN N S, WEISS A L. Use and abuse of Pb-isotope fingerprinting technique and GIS mapping data to assess lead in environmental studies[J]. Environ Geochem Health, 2008, 30(6):577-588.
DOI
URL
|
| [31] |
ALQATTAN Z A, TRAHAN A, CHUKWUONYE G N, et al. Lead source apportionment and climatic impacts in rural environmental justice mining communities[J]. Environ Res, 2025, 271:121130.
DOI
URL
|
| [32] |
DEPAERMENTIER M L C. Isotope data in Migration Period archaeology:Critical review and future directions[J]. Archaeol Anthropol Sci, 2023, 15(4):1-22.
DOI
|
| [33] |
孙缨泽, 李湘凌, 周涛发. 铅同位素示踪技术在土壤重金属污染来源解析中的应用研究进展[J]. 地球科学进展, 2012, 27(S1):411-414.
|
| [34] |
WEI X, ZHOU Y, JIANG Y, et al. Health risks of metal(loid)s in maize(Zea mays L.) in an artisanal zinc smelting zone and source fingerprinting by lead isotope[J]. Sci Total Environ, 2020, 742:140321.
DOI
URL
|
| [35] |
GLORENEC P, AZEMA A, DURAND S, et al. The isotopic signature of lead emanations during the fire at Notre Dame Cathedral in Paris,France[J]. Int J Environ Res Public Health, 2021, 18(10):5249.
DOI
URL
|