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膳食维生素A和体重的比值与儿童高血压的相关性

程平 任艳玲 刘琴 陈栏灵 佟吉爽 肖伦 秦军 李兴贵 马军 徐林 史秀珍 王莉 万凌娟 梁小华

程平, 任艳玲, 刘琴, 陈栏灵, 佟吉爽, 肖伦, 秦军, 李兴贵, 马军, 徐林, 史秀珍, 王莉, 万凌娟, 梁小华. 膳食维生素A和体重的比值与儿童高血压的相关性[J]. 中国学校卫生, 2024, 45(2): 267-272. doi: 10.16835/j.cnki.1000-9817.2024062
引用本文: 程平, 任艳玲, 刘琴, 陈栏灵, 佟吉爽, 肖伦, 秦军, 李兴贵, 马军, 徐林, 史秀珍, 王莉, 万凌娟, 梁小华. 膳食维生素A和体重的比值与儿童高血压的相关性[J]. 中国学校卫生, 2024, 45(2): 267-272. doi: 10.16835/j.cnki.1000-9817.2024062
CHENG Ping, REN Yanling, LIU Qin, CHEN Lanling, TONG Jishuang, XIAO Lun, QIN Jun, LI Xinggui, MA Jun, XU Lin, SHI Xiuzhen, WANG Li, WAN Lingjuan, LIANG Xiaohua. Association between the ratio of dietary vitamin A to body weight and hypertension in children[J]. CHINESE JOURNAL OF SCHOOL HEALTH, 2024, 45(2): 267-272. doi: 10.16835/j.cnki.1000-9817.2024062
Citation: CHENG Ping, REN Yanling, LIU Qin, CHEN Lanling, TONG Jishuang, XIAO Lun, QIN Jun, LI Xinggui, MA Jun, XU Lin, SHI Xiuzhen, WANG Li, WAN Lingjuan, LIANG Xiaohua. Association between the ratio of dietary vitamin A to body weight and hypertension in children[J]. CHINESE JOURNAL OF SCHOOL HEALTH, 2024, 45(2): 267-272. doi: 10.16835/j.cnki.1000-9817.2024062

膳食维生素A和体重的比值与儿童高血压的相关性

doi: 10.16835/j.cnki.1000-9817.2024062
基金项目: 

重庆市科学技术委员会重点课题项目 CSTC2021jscx-gksb-N0001

重庆医科大学未来医学青年创新团队项目 W0088

重庆市科卫联合项目 2020FYYX060

国家自然科学基金青年基金项目 81502826

详细信息
    作者简介:

    程平(1981-),男,四川雅安人,大学本科,副主任药师,主要研究方向为临床医学

    任艳玲(1999-),女,山东滕州人,大学本科,主要研究方向为儿科学

    通讯作者:

    梁小华,E-mail: xiaohualiang@hospital.cqmu.edu.cn

  • 利益冲突声明  所有作者声明无利益冲突。
  • 程平与任艳玲为共同第一作者。
  • 中图分类号: R179  R591.41  R544.1

Association between the ratio of dietary vitamin A to body weight and hypertension in children

  • 摘要:   目的   探讨膳食维生素A(VitA)和体重的比值与儿童高血压的相关性,为通过膳食营养干预改善儿童血压水平与降低儿童期高血压的患病风险提供参考。   方法   利用2014—2019年在重庆城乡地区建立的健康儿童队列研究基线调查与随访样本资料,采用结构式定量膳食问卷和自行设计的调查表调查15 279名儿童膳食摄入量与社会经济学指标,测量血压、身高与体重等检测指标。儿童膳食VitA与体重的比值按照四分位数分为≤P25(Q1),>P25~P50(Q2),>P50~P75(Q3),>P75(Q4)4组。采用广义线性回归模型与Logistic回归模型分析膳食VitA和体重的比值与血压水平及高血压患病率的相关性。   结果   2014年基线调查结果表明,在校正人口统计学指标及营养摄入指标等混杂因素后,不同儿童膳食VitA摄入与体重比值组收缩压(SBP)、舒张压(DBP)、平均动脉压(MAP)的差异均有统计学意义(F值分别为157.57,44.71,95.92,P值均 < 0.05)。2014年儿童膳食VitA和体重的比值与SBP[β值(95%CI)=-0.65(-0.89~-0.42) ]、DBP[β值(95%CI))=-0.22(-0.42~-0.01) ]和MAP[β值(95%CI))=-0.36(-0.56~-0.16) ]均呈负相关(P值均<0.05);与Q1组比较,Q4组中儿童高血压的患病风险降低[OR值(95%CI)=0.63(0.49~0.81),P<0.01 ]。2014年儿童基线膳食VitA和体重的比值与2019年随访SBP、DBP、MAP均呈负相关[β值分别为-0.77(-1.34~-0.19),-0.62(-1.21~-0.02),-0.77(-1.34~-0.19),P值均<0.05 ];与Q1组相比,Q4组中的2019年儿童高血压患病风险也降低[OR值(95%CI)=0.18(0.08~0.42),P<0.01 ]。   结论   膳食VitA和体重的比值与儿童血压水平呈负相关,膳食VitA缺乏为儿童高血压的独立危险因素。应采取措施积极调整儿童膳食营养,降低儿童期高血压的患病风险。
    1)  利益冲突声明  所有作者声明无利益冲突。
    2)  程平与任艳玲为共同第一作者。
  • 表  1  2014年不同膳食VitA与体重比值组儿童体格检查、膳食摄入指标及VitA、VitA/体重值比较(x±s)

    Table  1.   Comparison of physical examination, dietary intake indicators, and VitA and VitA/weight values of children in different ratio groups of dietary VitA to body weight from 2014 (x±s)

    组别 人数 年龄/岁 身高/cm 体重/kg BMI/(kg·m-2) 腰围/cm SBP/mmHg DBP/mmHg MAP/mmHg 心率/(次·min-1)
    Q1 3 820 9.21±1.74 138.50±11.63 36.32±11.04 18.57±3.72 61.57±9.76 105.41±10.51 64.06±7.83 77.84±7.99 94.76±12.90
    Q2 3 819 8.82±1.78 135.57±11.36 32.89±9.34 17.58±2.98 58.92±8.40 103.68±9.91 63.44±7.58 76.86±7.65 94.46±12.48
    Q3 3 821 8.63±1.75 133.58±11.03 30.96±8.61 17.06±2.74 57.40±7.70 102.43±9.51 62.78±7.47 76.00±7.43 94.66±12.50
    Q4 3 819 8.43±1.70 131.01±10.36 28.34±6.87 16.29±2.14 55.39±6.47 100.86±9.24 62.42±7.61 75.23±7.49 94.77±12.22
    F 202.92 371.67 615.11 460.52 429.25 157.57 44.71 95.92 0.07
    P <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 0.67
    组别 人数 谷类/g 蔬菜/g 水果/g 猪牛羊肉/g 鸡、鸭及其他禽肉/g 各种鱼虾贝类/g 鸡蛋、鸭蛋等蛋类/g 牛奶、酸奶等制品/g 豆类及豆制品/g
    Q1 3 820 159.40±131.30 96.33±95.24 110.68±111.80 65.62±63.80 27.13±46.06 16.76±36.07 35.84±42.58 241.15±146.70 33.01±60.61
    Q2 3 819 191.69±150.40 180.24±169.80 164.26±155.20 100.04±93.58 45.21±68.39 31.41±65.45 57.80±61.67 260.50±153.20 47.89±77.56
    Q3 3 821 222.01±165.40 251.72±190.10 211.45±180.50 126.57±109.50 63.83±80.67 43.02±80.92 75.00±77.37 263.20±163.00 64.91±98.88
    Q4 3 819 253.64±188.80 361.25±201.40 271.42±214.70 172.41±135.20 96.76±106.60 58.51±96.39 99.77±96.02 271.80±162.40 85.71±109.10
    F/Z 100.20 715.18 456.07 1 180.38 974.13 312.94 830.72 698.03 292.99
    P <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01
    组别 人数 各种坚果/g 菌藻类食物/g 营养补充剂/g 饮料(可乐、雪碧等)/g 食用油/g 咸菜/g VitA/(μmol·L-1) VitA与体重比值[μmol·(L·kg)-1]
    Q1 3 820 16.50±34.91 10.94±27.29 11.48±44.88 45.60±96.46 64.03±54.83 13.57±28.37 507.74±211.50 4.13±4.33
    Q2 3 819 26.31±51.77 20.28±44.16 13.96±50.12 41.04±85.04 70.91±58.68 15.75±31.82 824.81±247.20 25.13±2.83
    Q3 3 821 35.31±65.18 33.47±73.60 20.88±72.31 48.90±105.80 76.02±61.68 19.45±35.94 1 126.20±326.50 36.47±3.93
    Q4 3 819 47.61±71.60 50.05±81.13 27.72±81.50 54.11±111.50 83.22±66.99 24.94±41.45 1 744.20±505.90 62.58±16.91
    F/Z 180.90 283.73 43.91 47.93 54.56 37.50 4 790.12 8 398.90
    P <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01 <0.01
    注:1 mmHg=0.133 kPa;以上儿童食物指标为每天摄入量。
    下载: 导出CSV

    表  2  2014年各种模型下不同VitA膳食摄入量与体重比值组血压水平比较/[mmHg, x(95%CI)]

    Table  2.   Comparison of blood pressure levels among different ratio groups of dietary VitA to body weight among children for various models from 2014/[mmHg, x(95%CI)]

    模型 组别 统计值 SBP DBP MAP
    模型1 Q1 105.41(105.10~105.70) 64.06(63.82~64.30) 77.84(77.60~78.08)
    Q2 103.68(103.40~104.00)* 63.44(63.20~63.69)* 76.86(76.61~77.10)*
    Q3 102.43(102.10~102.70)* 62.78(62.54~63.03)* 76.00(75.76~76.24)*
    Q4 100.86(100.50~101.20)* 62.42(62.18~62.66)* 75.23(74.99~75.48)*
    H 455.20 124.90 273.50
    P <0.01 <0.01 <0.01
    模型2 Q1 103.99(103.70~104.30) 63.61(63.37~63.85) 77.07(76.83~77.30)
    Q2 103.32(103.00~103.60)* 63.33(63.10~63.57) 76.66(76.43~76.90)*
    Q3 102.84(102.60~103.10)* 62.91(62.67~63.15)* 76.22(75.99~76.45)*
    Q4 102.23(101.90~102.50)* 62.86(62.61~63.10)* 75.98(75.75~76.22)*
    H 542.13 127.40 294.16
    P <0.01 <0.01 <0.01
    模型3 Q1 103.97(103.60~104.40) 63.45(63.10~63.79) 76.95(76.62~77.28)
    Q2 103.48(103.20~103.80)* 63.36(63.11~63.62) 76.74(76.49~76.98)
    Q3 102.69(102.40~103.00)* 62.82(62.56~63.07)* 76.11(75.86~76.35)*
    Q4 101.97(101.50~102.40)* 62.95(62.56~63.35)* 75.96(75.58~76.34)*
    H 512.47 118.08 273.95
    P <0.01 0.02 <0.01
    注:1 mmHg=0.133 kPa;*表示与Q1组相比,P<0.05。
    下载: 导出CSV

    表  3  2014年儿童膳食VitA和体重的比值与血压的线性回归分析(n=15 279)

    Table  3.   Linear regression analysis of the relationship between the ratio of dietary VitA to body weight and blood pressure among children from 2014 (n=15 279)

    模型 SBP DBP MAP
    β值(95%CI) F P β值(95%CI) F P β值(95%CI) F P
    1 -1.49(-1.63~-1.35) 440.57 <0.01 -0.56(-0.67~-0.45) 102.13 <0.01 -0.87(-0.98~-0.76) 246.14 <0.01
    2 -0.58(-0.71~-0.45) 75.56 <0.01 -0.27(-0.38~-0.16) 22.64 <0.01 -0.37(-0.48~-0.26) 46.08 <0.01
    3 -0.65(-0.89~-0.42) 28.99 <0.01 -0.22(-0.42~-0.01) 4.23 0.04 -0.36(-0.56~-0.16) 12.78 <0.01
    下载: 导出CSV

    表  4  2014年儿童膳食VitA和体重的比值与2019年血压的线性回归分析(n=4 140)

    Table  4.   Linear regression analysis of the relationship between the ratio of dietary VitA to body weight from 2014 and blood pressure among children from 2019(n=4 140)

    模型 SBP DBP MAP
    β值(95%CI) F P β值(95%CI) F P β值(95%CI) F P
    1 -2.29(-2.80~-1.77) 76.25 <0.01 -0.89(-1.26~-0.51) 21.47 <0.01 -1.35(-1.74~-0.97) 48.18 <0.01
    2 -1.39(-1.87~-0.91) 79.92 <0.01 -0.64(-1.02~-0.25) 13.87 <0.01 -0.89(-1.27~-0.51) 38.11 <0.01
    3 -0.77(-1.34~-0.19) 32.09 <0.01 -0.62(-1.21~-0.02) 8.36 0.04 -0.77(-1.34~-0.19) 18.06 <0.01
    下载: 导出CSV

    表  5  2014年不同膳食VitA和体重的比值与儿童高血压患病风险的Logistic回归分析(n=15 279)

    Table  5.   Logistic regression analysis of the relationship between different ratios of dietary VitA to body weight and the risk of hypertension in 2014 (n=15 279)

    自变量 模型1 模型2 模型3
    β 标准误 OR值(95%CI) P β 标准误 OR值(95%CI) P β 标准误 OR值(95%CI) P
    Q2 -0.03 0.04 0.86(0.75~0.97) <0.01 -0.04 0.04 0.84(0.74~0.96) <0.01 -0.08 0.05 0.84(0.73~0.98) <0.01
    Q3 -0.11 0.04 0.74(0.65~0.85) 0.01 -0.11 0.04 0.72(0.63~0.83) 0.01 -0.11 0.05 0.70(0.58~0.84) 0.02
    Q4 -0.13 0.04 0.72(0.63~0.83) <0.01 -0.14 0.04 0.70(0.61~0.80) <0.01 -0.22 0.07 0.63(0.49~0.81) <0.01
    注:自变量以Q1为参照。
    下载: 导出CSV

    表  6  2014年不同膳食VitA和体重的比值与2019年儿童高血压患病风险的Logistic回归分析(n=4 140)

    Table  6.   Logistic regression analysis of the relationship between different ratios of dietary VitA to body weight from 2014 and the risk of hypertension from 2019 (n=4 140)

    自变量 模型1 模型2 模型3
    β 标准误 OR值(95%CI) P β 标准误 OR值(95%CI) P β 标准误 OR值(95%CI) P
    Q2 -1.72 0.08 0.18(0.15~0.21) <0.01 -0.23 0.11 0.79(0.63~0.99) 0.04 -1.18 0.37 0.31(0.15~0.64) <0.01
    Q3 -1.52 0.07 0.22(0.19~0.25) <0.01 -0.03 0.10 0.97(0.79~1.18) 0.75 -1.40 0.39 0.25(0.11~0.53) <0.01
    Q4 -1.66 0.08 0.19(0.16~0.22) <0.01 -0.28 0.12 0.76(0.60~0.96) 0.02 -1.71 0.43 0.18(0.08~0.42) <0.01
    注:自变量以Q1为参照。
    下载: 导出CSV
  • [1] ZHANG Y, LIU M, ZHOU C, et al. Inverse association between dietary vitamin A intake and new-onset hypertension[J]. Clin Nutr, 2021, 40(5): 2868-2875. doi: 10.1016/j.clnu.2021.04.004
    [2] ZHANG Y, NIE J, ZHANG Y, et al. Degree of blood pressure control and incident diabetes mellitus in Chinese adults with hypertension[J]. J Am Heart Assoc, 2020, 9(16): e017015. doi: 10.1161/JAHA.120.017015
    [3] ZHANG Y X, WANG S R. Comparison of blood pressure levels among children and adolescents with different body mass index and waist circumference: study in a large sample in Shandong, China[J]. Eur J Nutr, 2014, 53(2): 627-634. doi: 10.1007/s00394-013-0571-1
    [4] MOYER V A, FORCE U S P S T. Screening for primary hypertension in children and adolescents: U.S. preventive services task force recommendation statement[J]. Pediatrics, 2013, 132(5): 907-914. doi: 10.1542/peds.2013-2864
    [5] HILL D C, MOSS R H, SYKES-MUSKETT B, et al. Stress and eating behaviors in children and adolescents: systematic review and Meta-analysis[J]. Appetite, 2018, 123: 14-22. doi: 10.1016/j.appet.2017.11.109
    [6] RENNINGER M, HANSEN B H, STEENE-JOHANNESSEN J, et al. Associations between accelerometry measured physical activity and sedentary time and the metabolic syndrome: a Meta-analysis of more than 6 000 children and adolescents[J]. Pediatr Obes, 2020, 15(1): e12578. doi: 10.1111/ijpo.12578
    [7] KATSA M E, IOANNIDIS A, ZYGA S, et al. The effect of nutrition and sleep habits on predisposition for metabolic syndrome in Greek children[J]. J Pediatr Nurs, 2018, 40: e2-e8. doi: 10.1016/j.pedn.2018.01.012
    [8] BORGHI C, TSIOUFIS K, AGABITI-ROSEI E, et al. Nutraceuticals and blood pressure control: a European society of hypertension position document[J]. J Hypertens, 2020, 38(5): 799-812. doi: 10.1097/HJH.0000000000002353
    [9] VON LINTIG J. Provitamin A metabolism and functions in mammalian biology[J]. Am J Clin Nutr, 2012, 96(5): 1234S-1244S. doi: 10.3945/ajcn.112.034629
    [10] FREY S K, VOGEL S. Vitamin A metabolism and adipose tissue biology[J]. Nutrients, 2011, 3(1): 27-39. doi: 10.3390/nu3010027
    [11] SOMMER A. Vitamin A deficiency and childhood mortality[J]. Lancet, 1992, 340(8817): 488-489.
    [12] SONG P, WANG J, WEI W, et al. The prevalence of vitamin A deficiency in Chinese children: a systematic review and Bayesian Meta-analysis[J]. Nutrients, 2017, 9(12): 1285. doi: 10.3390/nu9121285
    [13] SURI S, KUMAR D, DAS R. Dietary deficiency of vitamin A among rural children: a community-based survey using a food-frequency questionnaire[J]. Natl Med J India, 2017, 30(2): 61-64.
    [14] ACHAN V, TRAN C T, ARRIGONI F, et al. All-trans-retinoic acid increases nitric oxide synthesis by endothelial cells: a role for the induction of dimethylarginine dimethylaminohydrolase[J]. Circ Res, 2002, 90(7): 764-769. doi: 10.1161/01.RES.0000014450.40853.2B
    [15] OLSON J A. Benefits and liabilities of vitamin A and carotenoids[J]. J Nutr, 1996, 126(4 Suppl): 1208S-1212S.
    [16] MCCARRON D A, MORRIS C D, HENRY H J, et al. Blood pressure and nutrient intake in the United States[J]. Science, 1984, 224(4656): 1392-1398. doi: 10.1126/science.6729459
    [17] LLOPIS-GONZALEZ A, RUBIO-LOPEZ N, PINEDA-ALONSO M, et al. Hypertension and the fat-soluble vitamins A, D and E[J]. Int J Environ Res Public Health, 2015, 12(3): 2793-2809. doi: 10.3390/ijerph120302793
    [18] ZHENG M, HUO Y, WANG X, et al. A prospective study on pulse wave velocity (PWV) and response to anti-hypertensive treatments: PWV determines BP control[J]. Int J Cardiol, 2015, 178: 226-231. doi: 10.1016/j.ijcard.2014.10.049
    [19] LIANG X, CHEN M, QU P, et al. The association of vitamin A and vitamin D with hypertension in children: a case-control study[J]. Int J Hypertens, 2018, 2018: 9295147.
    [20] LIANG X, XIAO L, LUO Y, et al. Prevalence and risk factors of childhood hypertension from birth through childhood: a retrospective cohort study[J]. J Hum Hypertens, 2020, 34(2): 151-164. doi: 10.1038/s41371-019-0282-z
    [21] ELMENHORST J, HULPKE-WETTE M, BARTA C, et al. Percentiles for central blood pressure and pulse wave velocity in children and adolescents recorded with an oscillometric device[J]. Atherosclerosis, 2015, 238(1): 9-16. doi: 10.1016/j.atherosclerosis.2014.11.005
    [22] 杨月欣. 中国食物成分表(2004版)[M]. 2版. 北京: 北京大学医学出版社, 2004.

    YANG Y X. China food composition (2004)[M]. 2 ed. Beijing: Peking University Medical Press, 2004. (in Chinese)
    [23] 杨月欣, 王光亚, 潘兴昌. 中国食物成分表[M]. 北京: 北京大学医学出版社, 2002.

    YANG Y X, WANG G Y, PAN X C. China food composition[M]. Beijing: Peking University Medical Press, 2002. (in Chinese)
    [24] 范晖, 闫银坤, 米杰. 中国3~17岁儿童性别、年龄别和身高别血压参照标准[J]. 中华高血压杂志, 2017, 25(5): 428-435. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGZ201705010.htm

    FAN H, YAN Y K, MI J. Updating blood pressure references for Chinese children aged 3-17 years[J]. Chin J Hypertens, 2017, 25(5): 428-435. (in Chinese) https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGZ201705010.htm
    [25] TRASINO S E, TANG X H, JESSURUN J, et al. Obesity leads to tissue, but not serum vitamin A deficiency[J]. Sci Rep, 2015, 5: 15893. doi: 10.1038/srep15893
    [26] LI Z, CHEN J, ZHANG D. Association between dietary carotenoid intakes and hypertension in adults: national health and nutrition examination survey 2007-2014[J]. J Hypertens, 2019, 37(12): 2371-2379. doi: 10.1097/HJH.0000000000002200
    [27] WOO J, HO S C, DONNAN S, et al. Nutritional correlates of blood pressure in elderly Chinese[J]. J Hum Hypertens, 1988, 1(4): 287-291.
    [28] ALBUQUERQUE M N, DINIZ ADA S, ARRUDA I K. Retinolemia, vitamin A intake, and blood pressure in the elderly[J]. Arch Latinoam Nutr, 2009, 59(4): 396-401.
    [29] O'BYRNE S M, WONGSIRIROJ N, LIBIEN J, et al. Retinoid absorption and storage is impaired in mice lacking lecithin: retinol acyltransferase (LRAT)[J]. J Biol Chem, 2005, 280(42): 35647-3557. doi: 10.1074/jbc.M507924200
    [30] PIETRI P, VLACHOPOULOS C, TERENTES-PRINTZIOS D, et al. Beneficial effects of low-dose aspirin on aortic stiffness in hypertensive patients[J]. Vasc Med, 2014, 19(6): 452-457. doi: 10.1177/1358863X14556695
    [31] LIANG X, CHEN M, WANG D, et al. Vitamin A deficiency indicating as low expression of LRAT may be a novel biomarker of primary hypertension[J]. Clin Exp Hypertens, 2021, 43(2): 151-163. doi: 10.1080/10641963.2020.1833023
    [32] SERAVALLE G, GRASSI G. Obesity and hypertension[J]. Pharmacol Res, 2017, 122: 1-7. doi: 10.1016/j.phrs.2017.05.013
    [33] NARKIEWICZ K. Diagnosis and management of hypertension in obesity[J]. Obes Rev, 2006, 7(2): 155-162. doi: 10.1111/j.1467-789X.2006.00226.x
    [34] WUHL E. Hypertension in childhood obesity[J]. Acta Paediatr, 20 19, 108(1): 37-43. doi: 10.1111/apa.14551
    [35] BANCALARI R, DIAZ C, MARTINEZ-AGUAYO A, et al. Prevalence of hypertension in school age children and its association with obesity[J]. Rev Med Chil, 2011, 139(7): 872-879. doi: 10.4067/S0034-98872011000700007
    [36] SAEED S, WAJE-ANDREASSEN U, FROMM A, et al. Early vascular aging in young and middle-aged ischemic stroke patients: the Norwegian Stroke in the young study[J]. PLoS One, 2014, 9(11): e112814. doi: 10.1371/journal.pone.0112814
    [37] MUNAKATA M. Brachial-ankle pulse wave velocity in the measurement of arterial stiffness: recent evidence and clinical applications[J]. Curr Hypertens Rev, 2014, 10(1): 49-57. doi: 10.2174/157340211001141111160957
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出版历程
  • 收稿日期:  2023-08-12
  • 修回日期:  2023-12-19
  • 网络出版日期:  2024-03-02
  • 刊出日期:  2024-02-25

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