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Translational Biomedicine

  • ISSN: 2172-0479
  • Journal h-index: 18
  • Journal CiteScore: 5.91
  • Journal Impact Factor: 4.11
  • Average acceptance to publication time (5-7 days)
  • Average article processing time (30-45 days) Less than 5 volumes 30 days
    8 - 9 volumes 40 days
    10 and more volumes 45 days
Awards Nomination 20+ Million Readerbase
Indexed In
  • Open J Gate
  • Genamics JournalSeek
  • JournalTOCs
  • ResearchBible
  • The Global Impact Factor (GIF)
  • China National Knowledge Infrastructure (CNKI)
  • CiteFactor
  • Scimago
  • Electronic Journals Library
  • Directory of Research Journal Indexing (DRJI)
  • OCLC- WorldCat
  • Proquest Summons
  • Publons
  • MIAR
  • University Grants Commission
  • Geneva Foundation for Medical Education and Research
  • Euro Pub
  • Google Scholar
  • SHERPA ROMEO
  • Secret Search Engine Labs
  • ResearchGate
  • International Committee of Medical Journal Editors (ICMJE)
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Articles published in Translational Biomedicine have been cited by esteemed scholars and scientists all around the world. Translational Biomedicine has got h-index 18, which means every article in Translational Biomedicine has got 18 average citations.

Following are the list of articles that have cited the articles published in Translational Biomedicine.

  2022 2021 2020 2019 2018

Year wise published articles

37 58 23 9 14

Year wise citations received

195 200 233 230 237
Journal total citations count 1591
Journal Impact Factor 4.11
Journal 5 years impact factor 7.65
Journal CiteScore 5.91
Journal h-index 18
Journal Impact Factor 2020 formula
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year
Journal 5-year Impact Factor 2020 formula
Citations(2016 + 2017 + 2018 + 2019 + 2020)/
{Published articles(2016 + 2017 + 2018 + 2019 + 2020)}
Journal CiteScore
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3
Important citations
Tahura S, Selimuzzaman M, Khan WA. Thalassaemia Prevention: Bangladesh Perspective-A Current Update. Bangladesh Journal of Child Health.;40(1):31-8.
Mudiyanse RM. Teaching beyond knowledge and skills for the needs of the society. Sri Lanka Journal of Medicine. 2017 Feb 13;25(2).
Goonasekera HW, Paththinige CS, Dissanayake VH. Population Screening for Hemoglobinopathies. Annual review of genomics and human genetics. 2018 May 11(0).
Mahara MA, Ramayani OR, Effendy E, Lubis M, Siregar R, Siregar B, Ramayanti R. Habitual snoring and primary enuresis in children. Paediatrica Indonesiana. 2018 May 31;58(3):116-22.
Abler LL, Vezina CM. Links between lower urinary tract symptoms, intermittent hypoxia and diabetes: Causes or cures?. Respiratory physiology & neurobiology. 2017 Sep 17.
Фотев ЮВ, Кукушкина ТА, Чанкина ОВ, Белоусова ВП. ХАУТТЮЙНИЯ (HOUTTUYNIA CORDATA THUNB.)–НОВАЯ ДЛЯ РОССИИ ОВОЩНАЯ И ЛЕКАРСТВЕННАЯ КУЛЬТУРА (МОРФОЛОГИЧЕСКИЕ ОСОБЕННОСТИ И БИОХИМИЧЕСКИЙ СОСТАВ). Овощи России. 2018 Feb 6(5):57-61.
Salim B, Said AH. First Study on Anti-diabetic Effect of Rosemary and Salvia by Using Molecular Docking. Arabian Journal of Medicinal and Aromatic Plants. 2017 Jan 1;4(1):56-71.
Nderitu KW, Mwenda NS, Macharia NJ, Barasa SS, Ngugi MP. Antiobesity Activities of Methanolic Extracts of Amaranthus dubius, Cucurbita pepo, and Vigna unguiculata in Progesterone-Induced Obese Mice. Evidence-Based Complementary and Alternative Medicine. 2017;2017.
Van Thuoc D, Mai NT, Le Thi Viet Ha LD, Hung DH, Hung NK, Hung NP. Evaluation of Antibacterial, Antioxidant and Antiobese Activities of the Fruit Juice of Crabapple Mangrove Sonneratia caseolaris (Linn.). International Journal of Agricultural Sciences and Natural Resources. 2018;5(2):25-9.
Wanjiku NK, Mwenda NS, Macharia NJ, Stephen B, Piero NM. ANTI-OBESITY ACTIVITIES OF METHANOLIC EXTRACTS OF Amaranthus dubious, Curcurbita pepo, Vigna unguiculata IN PROGESTERONE-INDUCED OBESE MICE.
Herath KH, Cho J, Kim A, Eom TK, Kim JS, Kim JB, Doh YH, Jee Y. Phenolic acid and flavonoid-rich fraction of Sasa quelpaertensis Nakai leaves prevent alcohol induced fatty liver through AMPK activation. Journal of ethnopharmacology. 2018 Jun 12.
Mansuri JI, Paranjape AN. Pharmacological Evaluation of Dopamine containing plants in obesity.
Ramezani M, Changizi-Ashtiyani S, Sadeghzadeh F, Hosseini SS, Zarei A, Hosseini N. Effect of Hydroalcoholic Extract of Some Medicinal Plants on Obesity.
Kumar SG, Manekshah YR, Merish S, Walter TM. Potentiality of Pidangunaari Kudineer (Polyherbal decoction) for Palmitic acid induced Hepatic Steatosis in the Chang Liver Cells.
Sharma T, Kanwar SS. Phytomolecules for Obesity and Body Weight Management. J Biochem Cell Biol. 2018;1(10.4172):2.
Calvo-Irabien LM. Native Mexican aromatic flora and essential oils: Current research status, gaps in knowledge and agro-industrial potential. Industrial Crops and Products. 2018 Jan 31;111:807-22.
Shang W, Si X, Zhou Z, Wang J, Strappe P, Blanchard C. Studies on the unique properties of resistant starch and chito-oligosaccharide complexes for reducing high-fat diet-induced obesity and dyslipidemia in rats. Journal of Functional Foods. 2017 Nov 1;38:20-7.
Kaliaraj GS, Subramaniyan B, Manivasagan P, Kim SK. Green Synthesis of Metal Nanoparticles Using Seaweed Polysaccharides. InSeaweed Polysaccharides 2017 (pp. 101-109).
Kalsoom Khan A, Saba AU, Nawazish S, Akhtar F, Rashid R, Mir S, Nasir B, Iqbal F, Afzal S, Pervaiz F, Murtaza G. Carrageenan based bionanocomposites as drug delivery tool with special emphasis on the influence of ferromagnetic nanoparticles. Oxidative Medicine and Cellular Longevity. 2017;2017.
Kraus TF. Emergence of exosomal DNA in molecular neuropathology. LaboratoriumsMedizin. 2018 Apr 25;42(1-2):9-22.