N. J. McNaughton
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Also affiliated: Planetary Science Institute (1982); The University of Western Australia (1988–2006); Curtin University (2010–2015); University of Cambridge (1980–1983); Institute of Geology and Geophysics (1998); Mineral Resources (1998); Department of Earth Sciences (1982)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
N. J. McNaughton's research has historically focused on geological and geochemical analyses, particularly in the context of mineral deposit genesis and crustal evolution. Publications span investigations into Archean-Proterozoic geological formations, including studies on Indian Charnockites, Brazilian copper-gold deposits, and the Pilbara Archaean region. A significant portion of this work utilizes geochronological techniques, such as SHRIMP U-Pb and 40Ar/39Ar dating, to constrain the timing of mineralization and geological events, as seen in studies of the Carajas Copper-Gold Belt and the Kalgoorlie Gold Field.
Further research has explored the application of geochronology to sedimentary basins and orogenic gold mineralization, with publications detailing hydrothermal monazite and xenotime dating. McNaughton also has a history of work in geology and geochronology in regions including Northeast Brazil and Cameroon, investigating correlations between geological belts. The researcher's work has resulted in 41 publications, accumulating over 1,510 citations, and an h-index of 21, designating them as a highly cited researcher. Collaborations include shared publications with researchers from Ouachita Baptist University and Harding University Main Campus.
Metrics
- h-index: 21
- Publications: 41
- Citations: 1,510
Selected Publications
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Targeting EZH2 oncogenic splicing: decoding the regulatory network and antisense correction (2026)
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Targeting EZH2 Oncogenic Splicing: Decoding the Regulatory Network and Antisense Correction (2026)
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Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study (2024)
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Enhancing reproducibility and decentralization in single cell research with biocytometry (2024)
Collaboration Network
Top Collaborators
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry