Immunome Research

Immunome Research
Open Access

ISSN: 1745-7580

+44-20-4587-4809

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.

  2021 2020 2019 2018

Year wise published articles

40 13 7 20

Year wise citations received

111 109 84 74
Journal total citations count 817
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)

kinjo ar, suzuki h, yamashita r, ikegawa y, kudou t, et al. (2011) protein data bank japan (pdbj): maintaining a structural data archive and resource description framework format. nucleic acids research.

davies dh (2012) antigen discovery for vaccines using high‐throughput proteomic screening technologies. vaccinology: principles and practice pp: 150-167.

Davies dh, chun s, hermanson g, tucker ja, jain a, et al. (2014) t cell antigen discovery using soluble vaccinia proteome reveals recognition of antigens with both virion and nonvirion association. the journal of immunology 193: 1812-1827.

Vaughan k, peters b, larche m, pomes a, broide d, et al. (2012) strategies to query and display allergy-derived epitope data from the immune epitope database. international archives of allergy and immunology 160: 334-345.

Salimi n, fleri w, peters b, sette a. the immune epitope database: a historical retrospective of the first decade. immunology. 2012 oct;137(2):117-23.

mishra s, losikoff pt, self aa, terry f, ardito mt, et al. (2014) peptide-pulsed dendritic cells induce the hepatitis c viral epitope-specific responses of naïve human t cells. vaccine 32: 3285-3292.

losikoff pt, mishra s, terry f, gutierrez a, ardito mt, et al. (2015) hcv epitope, homologous to multiple human protein sequences, induces a regulatory t cell response in infected patients. journal of hepatology 62: 48-55.

sanou mp, de groot as, murphey-corb m, levy ja, yamamoto jk (2012) hiv-1 vaccine trials: evolving concepts and designs. open aids j 6: 274-288.

chen l, li b, yang wc, he jl, li ny, et al. (2013) a dominant cd4+ t-cell response to helicobacter pylori reduces risk for gastric disease in humans. gastroenterology 144: 591-600.

spellman s (2012) development of medical technology for contingency response to marrow toxic agents. national marrow donor program minneapolis mn.

marangon av, sell am, cardozo dm, visentainer je (2013) immunogenetics of hematopoietic stem cell transplantation. intech open access publisher.

petersdorf ew, malkki m, hsu k, bardy p, cesbron a, et al. (2013) 16th ihiw: international histocompatibility working group in hematopoietic cell transplantation. international journal of immunogenetics 40: 2-10.

petersdorf ew (2013) genetics of graft-versus-host disease: the major histocompatibility complex. blood reviews 27: 1-2.

chakraborty d (2015) immunoglobulin motions and antigen binding effects examined by elastic network models.

gniewek p, kolinski a, jernigan rl, kloczkowski a (2012) elastic network normal modes provide a basis for protein structure refinement. the journal of chemical physics 136: 05b616.

Corrada d, morra g, colombo g (2013) investigating allostery in molecular recognition: insights from a computational study of multiple antibody–antigen complexes. the journal of physical chemistry b 117: 535-552.

reuveni s, klafter j, granek r (2012) dynamic structure factor of vibrating fractals: proteins as a case study. physical review e 85: 011906.

pentier jm, sewell ak, miles jj (2016) advances in t-cell epitope engineering.

sidney j, southwood s, moore c, oseroff c, pinilla c, et al. (2015) measurement of mhc/peptide interactions by gel filtration or monoclonal antibody capture. current protocols in immunology pp: 18-3.

ahmad ta, eweida ae, el-sayed lh (2016) t-cell epitope mapping for the design of powerful vaccines. vaccine reports 6: 13-22.

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