Kimani C. Toussaint Source Confirmed

Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.

High Impact

Professor

John Brown University

faculty

34 h-index 206 pubs 3,839 cited

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Biography and Research Information

OverviewAI-generated summary

Kimani C. Toussaint is a professor at John Brown University whose research encompasses advanced optical techniques with applications in biomedicine and materials science. His work leverages orbital angular momentum in optics and near-field optical microscopy, alongside spectroscopic methods, to probe the structural and mechanical properties of biological tissues. Toussaint's investigations extend to plasmonic phenomena and the development of advanced fluorescence microscopy techniques. His recent work includes studies of glycosaminoglycans' role in cell communication within collagen networks, assessments of induced pluripotent stem cell-derived cardiomyocyte models, and the development of optomechanograms for tissue analysis. He also explores space-time light sheets to enhance imaging resolution.

Metrics

  • h-index: 34
  • Publications: 206
  • Citations: 3,839

Selected Publications

  • Isoentropic partially coherent optical fields that cannot be interconverted unitarily (2024) DOI
  • Introduction to the special feature: amplify Black voices in optics and photonics (2024) DOI
  • Using flat-top light sheet generated by femtosecond-pulsed laser for optical manipulation of microscopic particles (2023) DOI
  • Reconfigurable opto-chirality enabled by chalcogenide phase change nanomaterials (2023) DOI
  • Confocal reflectance microscopy for mapping collagen fiber organization in the vitreous gel of the eye (2023) DOI
  • Single-wavelength, single-shot pulse oximetry using an LED-generated vector beam (2022) DOI
  • Excitation of surface plasmon polaritons by diffraction-free and vector beams (2022) DOI
  • Multiphoton imaging using a quantitative CMOS camera (2022) DOI
  • Metrology of tissue pathology using optical self-healing (2022) DOI
  • Rapid blood-oxygenation-saturation measurement using radially polarized light from light-emitting diodes (2022) DOI
  • Heterogeneous Microstructural Changes of the Cervix Influence Cervical Funneling (2021) DOI

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