- Q1 0 %0.0
- Q2 0 %0.0
- Q3 1 %50.0
- Q4 1 %50.0
Academician
MELTEM YILMAZ COŞAR
Öğretim Görevlisi (ders Vermekle Görevli)
İstinye Üniversitesi Sağlık Hizmetleri Meslek Yüksekokulu Tıbbi Hizmetler Ve Teknikler Bölümü
- Ana Dal Sağlık Bilimleri Temel Alanı
- Yan Dal Fizyoloji
Citation impact
OpenAlex YÖKSİS articles matched in OpenAlex: 2- i10-index
- 0
- Total citations
- 4 Top 80% in Türkiye
- Per article
- 2.0
- FWCI
- 0.28 1.00 = world average
- World top 1%
- 0
- World top 10%
- 0
Most cited articles
h-index and citations are computed from the citation counts of this academic’s YÖKSİS articles matched in OpenAlex (not Google Scholar, WoS or Scopus). Unmatched articles are not included.
Field ranking
YÖKSİS ?-
Main field Sağlık Bilimleri Temel AlanıPoints rank #29,489/ 39,745 top 74.2% At university #284/ 363Score 1.2 journal 1.2 · OA add 0
- Article rank29,852/39,745
- Scopus rank27,484/39,745
- WoS rank27,299/39,745
- YÖKSİS2
- Scopus2
- WoS2
-
Side field FizyolojiPoints rank #521/ 638 top 81.7% At university #6/ 6Score 1.2 journal 1.2 · OA add 0
- Article rank521/638
- Scopus rank493/638
- WoS rank491/638
- YÖKSİS2
- Scopus2
- WoS2
Collaboration network
From the author lists of YÖKSİS publication records. Duplicate records of a work count once; institutions are co-authors’ current YÖKSİS affiliations.
- Co-authors
- 2
- With an akaturk profile
- 2
- Turkish institutions
- 2
- Co-authored works
- %100
Academic co-authors 2
- MÜMİN ALPER ERDOĞAN Profesör · İzmir Katip Çelebi Üniversitesi 2
- ÖZLEM YILMAZ Profesör · Ege Üniversitesi 2
National collaboration 2 institutions
- Ege Üniversitesi 2 works · 1 academics
- İzmir Katip Çelebi Üniversitesi 2 works · 1 academics
Index quartiles
?- Q1 0 %0.0
- Q2 1 %100.0
- Q3 0 %0.0
- Q4 0 %0.0
Other counts
Scopus (SJR)
- YÖKSİS rows 2
WoS (JCR)
- YÖKSİS rows 1
Articles
Articles with YÖKSİS and OpenAlex source split; narrow by quartile or TR Index.
Journals with publications
2 journals
Narrow down
Article list
- 2024 Modulation of apoptotic pathways by curcumin and resveratrol conveys neuroprotection against rotenone-induced toxicity in SH-SY5Y cells YÖKSİS SJR Q4 OpenAlex 5.8%
- 2023 Epigallocatechin-3-gallate and resveratrol attenuate hydrogen peroxide induced damage in neuronal cells YÖKSİS SJR Q3 JCR Q2 OpenAlex 60.3%