Olivia I. Kolenc
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Formerly Arkansas Affiliated with University of Arkansas through 2023.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Olivia I. Kolenc's research focuses on advancing cellular metabolic imaging techniques, particularly through the refinement of autofluorescence lifetime decay measurements. Her work aims to improve the accuracy and application of these methods for studying cellular metabolism. Kolenc has published work in this area, including a 2023 publication titled "Improving Autofluorescence Lifetime Decay Accuracy for Cellular Metabolic Imaging Applications."
Her scholarly output includes 6 publications with 469 citations, and she holds an h-index of 4. Kolenc collaborates with Alan E. Woessner at the University of Arkansas at Fayetteville, with whom she shares one publication. Her recent activity indicates ongoing engagement in her research field.
Metrics
- h-index: 4
- Publications: 6
- Citations: 520
Selected Publications
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Improving Autofluorescence Lifetime Decay Accuracy for Cellular Metabolic Imaging Applications (2023)
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Glutamine Metabolism Controls Stem Cell Fate Reversibility and Long-Term Maintenance in the Hair Follicle (2020)
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Label-free metabolic biomarkers for assessing valve interstitial cell calcific progression (2020)
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Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome (2018)
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Rapid quantification of mitochondrial fractal dimension in individual cells (2018)
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Evaluating Cell Metabolism Through Autofluorescence Imaging of NAD(P)H and FAD (2017)
Collaboration Network
Top Collaborators
- Evaluating Cell Metabolism Through Autofluorescence Imaging of NAD(P)H and FAD
- Glutamine Metabolism Controls Stem Cell Fate Reversibility and Long-Term Maintenance in the Hair Follicle
- Label-free metabolic biomarkers for assessing valve interstitial cell calcific progression
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
Showing 5 of 6 shared publications
- Label-free metabolic biomarkers for assessing valve interstitial cell calcific progression
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Rapid quantification of mitochondrial fractal dimension in individual cells
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Creating patient-specific stem cell models and characterizing metabolic changes in Leigh’s Syndrome
- Label-free metabolic biomarkers for assessing valve interstitial cell calcific progression
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