Immunome Research

Immunome Research
Open Access

ISSN: 1745-7580

+44-77-2385-9429

Immunome Research : Citations & Metrics Report

Articles published in Immunome Research have been cited by esteemed scholars and scientists all around the world. Immunome Research has got h-index 15, which means every article in Immunome Research has got 15 average citations.

Following are the list of articles that have cited the articles published in Immunome Research.

  2024 2023 2022 2021 2020 2019 2018 2017

Total published articles

30 37 20 40 13 7 20 17

Conference proceedings

0 0 0 0 0 0 99 44

Citations received as per Google Scholar, other indexing platforms and portals

74 82 94 111 117 98 76 71
Journal total citations count 952
Journal impact factor 9.00
Journal 5 years impact factor 10.13
Journal cite score 13.75
Journal h-index 15
Journal h-index since 2019 13
Important citations (1540)

li g, wu d, wang s, sun j, xu d, et al. (2013) similarity between segments in protein conformational epitopes and mhc ii peptides. international journal of computational biology and drug design 6: 107-118.

zhou w, brisson d (2017) correlation between antigenicity and variability in the vls antigenic variation system of borrelia burgdorferi. microbes and infection.

hasan nh, ebrahimie e, ignjatovic j, tarigan s, peaston a, et al. (2016) epitope mapping of avian influenza m2e protein: different species recognise various epitopes. plos one 11: e0156418.

rahman ks, chowdhury eu, sachse k, kaltenboeck b (2016) jbc papers in press. published on may 9, 2016 as manuscript m116. 729020.

rahman ks, chowdhury eu, sachse k, kaltenboeck b (2016) inadequate reference datasets biased toward short non-epitopes confound b-cell epitope prediction. journal of biological chemistry 291: 14585-14599.

zhou, wei (2016) "selective forces that shape the vls antigenic variation system in borrelia burgdorferi."

dalkas ga, rooman m (2017) sepia, a knowledge-driven algorithm for predicting conformational b-cell epitopes from the amino acid sequence. bmc bioinformatics 18: 95.

zhang c, li y, tang w, zhou z, sun p, et al. (2016) the relationship between b-cell epitope and mimotope sequences. protein and peptide letters 23: 132-141.

dam ce, houen g, hansen pr, trier nh (2014) identification and fine mapping of a linear b cell epitope of human vimentin. scandinavian journal of clinical and laboratory investigation 74: 506-514.

habibi m, bakhshi pk, aghdam r (2015) lrc: a new algorithm for prediction of conformational b-cell epitopes using statistical approach and clustering method. journal of immunological methods 427: 51-57.

何圣发, 陈红兵, 武涌, 李欣, 佟平, 高金燕. 食物过敏原构象性表位预测技术研究进展. 食品科学. 2013;34(13):314-8.

吴立志, 沈志强, 张松林, 肖跃强, 夏小静, 扈俊波, 李振伟, 伍晓雄. 猪链球菌 2 型枯草杆菌素样蛋白酶的截短表达及其免疫保护作用研究. 中国预防兽医学报. 2013;35(6):507-9.

qiu t, xiao h, zhang q, qiu j, yang y, et al. (2015) proteochemometric modeling of the antigen-antibody interaction: new fingerprints for antigen, antibody and epitope-paratope interaction. plos one 10: e0122416.

navalkar ka, johnston sa, stafford p (2015) peptide based diagnostics: are random-sequence peptides more useful than tiling proteome sequences?. journal of immunological methods 417: 10-21.

he y, cao z, de groot as, brusic v, schönbach c, et al. (2013) computational vaccinology and the icovax 2012 workshop. bmc bioinformatics 14: i1.

hakimi h, nguyen tt, suganuma k, masuda-suganuma h, angeles jm, et al. (2013) development of monoclonal antibodies that target 1-cys peroxiredoxin and differentiate plasmodium falciparum from p. vivax and p. knowlesi. tropical medicine and health 41: 55-59.

pol-fachin l, verli h (2012) structural glycobiology of the major allergen of artemisia vulgaris pollen, art v 1: o-glycosylation influence on the protein dynamics and allergenicity. glycobiology 22: 817-825.

zheng w, zhang c, hanlon m, ruan j, gao j (2014) an ensemble method for prediction of conformational b-cell epitopes from antigen sequences. computational biology and chemistry 49: 51-58.

luštrek m, lorenz p, kreutzer m, qian z, steinbeck f, et al. (2013) epitope predictions indicate the presence of two distinct types of epitope-antibody-reactivities determined by epitope profiling of intravenous immunoglobulins. plos one 8: e78605.

esmaielbeiki r, krawczyk k, knapp b, nebel jc, deane cm (2016) progress and challenges in predicting protein interfaces. briefings in bioinformatics 17: 117-131.

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