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Hypercapnia-Driven Skeletal Muscle Dysfunction in an Animal Model of Pulmonary Emphysema Suggests a Complex Phenotype

Frontiers in Physiology(2020)10.3389/fphys.2020.600290Source: DataRank Database

Hypercapnia-Driven Skeletal Muscle Dysfunction in an Animal Model of Pulmonary Emphysema Suggests a Complex Phenotype is a research paper published in Frontiers in Physiology (2020). On theSindex it has a DataRank of 0. It has been cited 16 times.

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0DataRank · unranked

Scored on demand from live citation data

Open Access16 citations
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Methodology & internals
datarank_citation_only_1hop_v6· scope data_onlyMethodology
Pipeline:MetadataData-paper checkEnrichmentCitation networkScoring
Enrichment:Funding (4 grants)Impact (FWCI 1.10)OA: goldTopics (19)IDs (PubMed, PMC, OpenAlex)Annotations (2)SDGs (1)

FAIR Checklist

Context only (not used in score)
Findable (1/2)
  • Has DOI
Accessible (1/2)
  • Open Access
Interoperable (0/2)
    Reusable (0/3)

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      Live enrichment

      NHLBI NIH HHS

      Grant: R01 HL115813

      NHLBI NIH HHS

      Grant: K01 HL130704

      NHLBI NIH HHS

      Grant: P01 HL114501

      National Heart, Lung, and Blood Institute

      FWCI

      1.10

      Citation Percentile

      0.8%

      Citation Trend

      2021
      2022
      2023
      2024
      2025
      2026

      Fields of Study

      Chronic Obstructive Pulmonary Disease (COPD) ResearchMuscle Physiology and DisordersRespiratory Support and Mechanisms

      Keywords

      HypercapniaCOPDSkeletal muscleMedicineAMPKMuscle atrophyInternal medicineEndocrinologyCardiologyRespiratory systemProtein kinase ABiologyCell biologyKinasePulmonary emphysemaMuscle Dysfunction

      Sustainable Development Goals

      SDG 0: Good health and well-being

      Related Papers (9)