[1] |
MVLLER T, HAHN E C, TOTTEWITZ F, et al. Pseudorabies virus in wild swine:a global perspective[J]. Arch Virol, 2011, 156(10):1691-1705.
|
[2] |
HAHN E C, FADL-ALLA B, LICHTENSTEIGER C A. Variation of Aujeszky's disease viruses in wild swine in USA[J]. Vet Microbiol, 2010, 143(1):45-51.
|
[3] |
LUO Y Z, LI N, CONG X, et al. Pathogenicity and genomic characterization of a pseudorabies virus variant isolated from Bartha-K61-vaccinated swine population in China[J]. Vet Microbiol, 2014, 174(1-2):107-115.
|
[4] |
AN T Q, PENG J M, TIAN Z J, et al. Pseudorabies virus variant in Bartha-K61-vaccinated pigs, China, 2012[J]. Emerg Infect Dis, 2013, 19(11):1749-1755.
|
[5] |
WU R, BAI C Y, SUN J Z, et al. Emergence of virulent pseudorabies virus infection in Northern China[J]. J Vet Sci, 2013, 14(3):363-365.
|
[6] |
SCHRÖTER C, VALLBRACHT M, ALTENSCHMIDT J, et al. Mutations in pseudorabies virus glycoproteins gB, gD and gH functionally compensate for the absence of gL[J]. J Virol, 2015, 90(5):2264-2272.
|
[7] |
FICINSKA J, VAN MINNEBRUGGEN G, NAUWYNCK H J, et al. Pseudorabies virus glycoprotein gD contains a functional endocytosis motif that acts in concert with an endocytosis motif in gB to drive internalization of antibody-antigen complexes from the surface of infected monocytes[J]. J Virol, 2005, 79(11):7248-7254.
|
[8] |
张闪闪, 刘永刚, 涂亚斌, 等. 猪伪狂犬病病毒抗体间接ELISA检测方法的建立[J]. 中国预防兽医学报, 2017, 39(6):456-460.ZHANG S S, LIU Y G, TU Y B, et al.Establishment of indirect ELISA for detection of antibodies against pseudorabies virus[J]. Chinese Journal of Preventive Veterinary Medicine, 2017, 39(6):456-460. (in Chinese)
|
[9] |
MAHLER M, BENTOW C, SERRA J, et al. Detection of autoantibodies using chemiluminescence technologies[J]. Immunopharmacol Immunotoxicol, 2016, 38(1):14-20.
|
[10] |
魏光伟, 余永鹏, 魏文康, 等. 化学发光免疫分析技术及其应用研究进展[J]. 动物医学进展, 2010, 31(3):97-102.WEI G W, YU Y P, WEI W K, et al. Progress on chemiluminescence immunoassay technique and its application[J]. Progress in Veterinary Medicine, 2010, 31(3):97-102. (in Chinese)
|
[11] |
ZAMORA B M, HARTUNG M. Chemiluminescent immunoassay in comparison with the indirect ELISA as reference method for detecting Salmonella antibodies in swine meat juice[J]. Berl Munch Tierarztl Wochenschr, 2002, 115(9-10):369-380.
|
[12] |
韩鹤友, 游子涵, 李庆, 等. 化学发光联用技术在兽药残留分析中的应用进展[J]. 分析科学学报, 2005, 21(5):552-556.HAN H Y, YOU Z H, LI Q, et al. Progress in the application of chemiluminescence coupled techniques for veterinary drug residue analysis[J]. Journal of Analytical Science, 2005, 21(5):552-556. (in Chinese)
|
[13] |
KRICKA L J. Clinical applications of chemiluminescence[J]. Anal Chim Acta, 2003, 500(1-2):279-286.
|
[14] |
马震原, 李宁, 闫若潜, 等. 猪伪狂犬病病毒变异毒株HeNZK-2014的分离鉴定及gE基因序列分析[J]. 中国畜牧兽医, 2017, 44(7):2086-2095.MA Z Y, LI N, YAN R Q, et al. Isolation and identification of variant HeNZK-2014 of pseudorabies virus and sequence analysis of gE gene[J]. China Animal Husbandry & Veterinary Medicine, 2017, 44(7):2086-2095. (in Chinese)
|
[15] |
李宁. 猪伪狂犬病毒变异株的分离鉴定及其gB、gE基因的原核表达[D]. 洛阳:河南科技大学, 2016.LI N. Isolation and identification of a mutated swine pseudorabies virus and prokaryotic expression of gB and gE genes[D]. Luoyang:Henan University of Science and Technology, 2016. (in Chinese)
|
[16] |
李方方, 闫若潜, 吴志明, 等. 抗O型口蹄疫病毒VP1蛋白单克隆抗体的制备及鉴定[J]. 中国兽医科学, 2017, 47(7):831-837.LI F F, YAN R Q, WU Z M, et al. Preparation and identification of monoclonal antibodies against VP1 protein of foot-and-mouth disease virus O serotype[J]. Chinese Veterinary Science, 2017, 47(7):831-837. (in Chinese)
|
[17] |
卢清侠, 刘畅, 郭官鹏, 等. A型口蹄疫病毒VP1蛋白间接ELISA检测方法的建立[J]. 西北农业学报, 2014, 23(1):30-35.LU Q X, LIU C, GUO G P, et al. Establishment of indirect ELISA diagnose based on the VP1 protein of foot and mouth disease virus serotype A[J]. Acta Agriculturae Boreali-Occidentalis Sinica, 2014, 23(1):30-35. (in Chinese)
|
[18] |
CHEN J, TETRAULT J, LEY A. Comparison of standard and new Generation hydrophobic interaction chromatography resins in the monoclonal antibody purification process[J]. J Chromatogr A, 2008, 1177(2):272-281.
|
[19] |
FINDLAY J W A, DILLARD R F. Appropriate calibration curve fitting in ligand binding assays[J]. AAPS J, 2007, 9(2):E260-E267.
|
[20] |
ZANETTI M R, PETRICELLI C D, ALEXANDRE S M. Determination of a cutoff value for pelvic floor distensibility using the Epi-no balloon to predict perineal integrity in vaginal delivery:ROC curve analysis. Prospective observational single cohort study[J]. Sao Paulo Med J, 2016, 134(2):97-102.
|
[21] |
BANKS M, CARTWRIGHT S. Comparison and evaluation of four serological tests for detection of antibodies to Aujeszky's disease virus[J]. Vet Rec, 1983, 113(2):38-41.
|
[22] |
陈亚娜, 王静, 訾占超, 等.伪狂犬病病毒微滴数字PCR定量检测方法的建立[J]. 畜牧兽医学报, 2017, 48(9):1705-1710.CHEN Y N, WANG J, ZI Z C, et al. Development of droplet digital PCR for the detection of pseudorabies virus[J].Acta Veterinaria et Zootechnica Sinica, 2017, 48(9):1705-1710. (in Chinese)
|
[23] |
BUSCHMANN A, BIACABE A G, ZIEGLER U, et al. Atypical scrapie cases in Germany and France are identified by discrepant reaction patterns in BSE rapid tests[J]. J Virol Methods, 2004, 117(1):27-36.
|
[24] |
CRÉTON R, JAFFE L F. Chemiluminescence microscopy as a tool in biomedical research[J]. Biotechniques, 2001, 31(5):1098-1100.
|
[25] |
刘泽众, 李扬帆, 常惠芸. 化学发光技术在人兽共患病诊断中的应用[J]. 中国人兽共患病学报, 2016, 32(5):485-489.LIU Z Z, LI Y F, CHANG H Y. Application of chemiluminescence for diagnosis of zoonoses[J]. Chinese Journal of Zoonoses, 2016, 32(5):485-489. (in Chinese)
|
[26] |
高景波. HIV酶联免疫吸附试验检测设置灰区的必要性[J]. 中国艾滋病性病, 2016, 22(12):1009-1010.GAO J B. The necessity of setting gray zone for HIV enzyme-linked immunosorbent assay detecting[J]. Chinese Journal of AIDS & STD, 2016, 22(12):1009-1010. (in Chinese)
|
[27] |
王庆敏, 冯晨晨, 蒋昵真, 等. 国内常用7家HBsAg酶免检测试剂盒灰区临界值的确定[J]. 中国输血杂志, 2017, 30(3):279-281.WANG Q M, FENG C C, JIANG N Z, et al. Analysis and verification of the cut-off value in domestic HBsAg ELISA kits during blood donation screening using Youden index[J]. Chinese Journal of Blood Transfusion, 2017, 30(3):279-281. (in Chinese)
|
[28] |
PABLO M C, CARLOS P F J. The Youden index in the generalized receiver operating characteristic curve context[J]. Int J Biostat, 2019, 15(1):20.
|