Expression and Localization of Messenger Ribonucleic Acid for the Vitellogenin Receptor in Ovarian Follicles Throughout Oogenesis in the Rainbow Trout, Oncorhynchus mykiss1
Expression and Localization of Messenger Ribonucleic Acid for the Vitellogenin Receptor in Ovarian Follicles Throughout Oogenesis in the Rainbow Trout, Oncorhynchus mykiss1 is a research paper published in Biology of Reproduction (1999). On theSindex it has a DataRank of 3.3. It has been cited 74 times, with 65 citing works in its 1-hop citation network.
›Data sources & pipeline
FAIR Checklist
Context only (not used in score)- Has DOI
FAIR checklist signals are shown for context only and do not affect DataRank scoring.
DataRank Breakdown
Base Score Contribution
0.648
From this paper's citation signal
Citation Network Contribution
2.7
From 59 citing papers with measurable signal
Top 1 citer driving the network score
Ranked by citation count — the same ordering the engine uses when summing log1p(Cq) over citers.
- Uptake of vitellogenin into oocytes during early vitellogenic development in the rainbow trout, <i>Oncorhynchus mykiss</i> (Walbaum)Journal of Fish Biology199142 citationsDataRank 2.5
Why this DataRank?
DataRank blends this paper's own citation count with the influence of the papers that cite it. Here, roughly 19% comes from its base citations and 81% from the citation network (59 citing papers contributed measurable signal).
- Base score B(p)
- log1p(citation_count) — grows sub-linearly, so a paper with 1,000 citations is not 10× a paper with 100.
- Network N(p)
- Σ over citers of log1p(Cq) ÷ max(outdegreeq, 1). Being cited by a highly-cited paper with few references counts most.
- Damping factor d = 0.85
- DataRank = (1−d)·B(p) + d·N(p) — the two cards above are each already multiplied by their share.
- Self-citations excluded
- Citers sharing any OpenAlex author ID with this paper are filtered out before the network sum.
Citers are pulled from OpenAlex sorted by cited_by_count:descand capped per paper, so when the cap binds we keep the highest-signal references and the score is reproducible across reruns.
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