Family Medicine & Medical Science Research

Family Medicine & Medical Science Research
Open Access

ISSN: 2327-4972

+44-77-2385-9429

Family Medicine & Medical Science Research : Citations & Metrics Report

Articles published in Family Medicine & Medical Science Research have been cited by esteemed scholars and scientists all around the world. Family Medicine & Medical Science Research has got h-index 14, which means every article in Family Medicine & Medical Science Research has got 14 average citations.

Following are the list of articles that have cited the articles published in Family Medicine & Medical Science Research.

  2024 2023 2022 2021 2020 2019 2018 2017

Total published articles

20 36 20 63 11 7 13 11

Conference proceedings

0 0 0 0 0 0 0 0

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

87 109 110 128 101 101 58 54
Journal total citations count 852
Journal impact factor 2.67
Journal 5 years impact factor 4.37
Journal cite score 4.17
Journal h-index 14
Journal h-index since 2019 13
Important citations (454)

Rong, j., xu, j., liu, q., xu, j., mou, t., zhang, x., ... & zhou, h. (2020). anti-inflammatory effect of up-regulated microrna-221-3p on coronary heart disease via suppressing nlrp3/asc/pro-caspase-1 inflammasome pathway activation. cell cycle, 19(12), 1478-1491.

Sorror, m. l., gooley, t. a., maclean, k. h., hubbard, j., marcondes, m. a., torok-storb, b. j., & tewari, m. (2019). pre-transplant expressions of micrornas, comorbidities, and post-transplant mortality. bone marrow transplantation, 54(7), 973-979.

Kwee, l. c., neely, m. l., grass, e., gregory, s. g., roe, m. t., ohman, e. m., ... & shah, s. h. (2019). associations of osteopontin and nt-probnp with circulating mirna levels in acute coronary syndrome. physiological genomics, 51(10), 506-515.

Koupenova, m., mick, e., corkrey, h. a., singh, a., tanriverdi, s. e., vitseva, o., ... & freedman, j. e. (2019). pollen-derived rnas are found in the human circulation. iscience, 19, 916-926.

Kibel, a., lukinac, a. m., dambic, v., juric, i., & relatic, k. s. (2020). oxidative stress in ischemic heart disease. oxidative medicine and cellular longevity, 2020.

Wang, l., & jin, y. (2020). noncoding rnas as biomarkers for acute coronary syndrome. biomed research international, 2020.

Mansouri, f., & mohammadzad, m. h. s. (2020). molecular mir-19a in acute myocardial infarction: novel potential indicators of prognosis and early diagnosis. asian pacific journal of cancer prevention: apjcp, 21(4), 975.

Pereira, j. d., tosatti, j. a. g., simões, r., luizon, m. r., gomes, k. b., & alves, m. t. (2020). micrornas associated to anthracycline-induced cardiotoxicity in women with breast cancer: a systematic review and pathway analysis. biomedicine & pharmacotherapy, 131, 110709.

Edelstein, l. c., & bray, p. f. (2017). noncoding rnas in platelet biology. in platelets in thrombotic and non-thrombotic disorders (pp. 239-252). springer, cham.

Zhou, y., liu, m., li, j., wu, b., tian, w., shi, l., ... & sun, z. (2018). the inverted pattern of circulating mir-221-3p and mir-222-3p associated with isolated low hdl-c phenotype. lipids in health and disease, 17(1), 1-9.

Shi, f. l., & ren, l. x. (2020). up-regulated mir-374a-3p relieves lipopolysaccharides induced injury in chon-001 cells via regulating wingless-type mmtv integration site family member 5b. molecular and cellular probes, 51, 101541.

Clancy, l., & freedman, j. e. (2016). blood-derived extracellular rna and platelet pathobiology: adding pieces to a complex circulating puzzle.

Vanchin, b., offringa, e., friedrich, j., brinker, m. g., kiers, b., pereira, a. c., ... & krenning, g. (2019). microrna?374b induces endothelial?to?mesenchymal transition and early lesion formation through the inhibition of mapk7 signaling. the journal of pathology, 247(4), 456-470.

Bertoia, m. l., bertrand, k. a., sawyer, s. j., rimm, e. b., & mukamal, k. j. (2015). reproducibility of circulating micrornas in stored plasma samples. plos one, 10(8), e0136665.

Liao, j., liu, y., & wang, j. (2016). identification of more objective biomarkers for blood-stasis syndrome diagnosis. bmc complementary and alternative medicine, 16(1), 1-10.

Bijak, m., dzieciol, m., rywaniak, j., saluk, j., & zielinska, m. (2016). platelets mirna as a prediction marker of thrombotic episodes. dis markers, 2872507.

Stojkovic, s., nossent, a. y., haller, p., jäger, b., vargas, k. g., wojta, j., & huber, k. (2019). micrornas as regulators and biomarkers of platelet function and activity in coronary artery disease. thrombosis and haemostasis, 119(10), 1563-1572.

Schmidt, r. a., morrell, c. n., ling, f. s., simlote, p., fernandez, g., rich, d. q., ... & cameron, s. j. (2018). the platelet phenotype in patients with st-segment elevation myocardial infarction is different from non–st-segment elevation myocardial infarction. translational research, 195, 1-12.

Elgheznawy, a., & fleming, i. (2018). platelet-enriched micrornas and cardiovascular homeostasis. antioxidants & redox signaling, 29(9), 902-921.

Emanueli, c., & angelini, t. (2015). micrornas as clinical biomarkers?. frontiers in genetics, 6, 240.

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