Skip to main content

Contrast mechanisms in pump-probe microscopy of melanin

Preprints
Grass, D; Beasley, GM; Fischer, MC; Selim, MA; Zhou, Y; Warren, WS
July 1, 2022

Pump-probe microscopy of melanin in tumors has been proposed to improve diagnosis of malignant melanoma, based on the hypothesis that aggressive cancers disaggregate melanin structure. However, measured signals of melanin are complex superpositions of multiple nonlinear processes, which makes interpretation challenging. Polarization control during measurement and data fitting is used to decompose signals of melanin into their underlying molecular mechanisms. We then identify the molecular mechanisms that are most susceptible to melanin disaggregation and derive false-coloring schemes to highlight these processes in biological tissue. We exemplary demonstrate that false-colored images of a small set of melanoma tumors correlate with clinical concern. More generally, our systematic approach of decomposing pump-probe signals can be applied to a multitude of different samples.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Publication Date

July 1, 2022
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Grass, D., Beasley, G. M., Fischer, M. C., Selim, M. A., Zhou, Y., & Warren, W. S. (2022). Contrast mechanisms in pump-probe microscopy of melanin.
Grass, David, Georgia M. Beasley, Martin C. Fischer, M Angelica Selim, Yue Zhou, and Warren S. Warren. “Contrast mechanisms in pump-probe microscopy of melanin,” July 1, 2022.
Grass D, Beasley GM, Fischer MC, Selim MA, Zhou Y, Warren WS. Contrast mechanisms in pump-probe microscopy of melanin. 2022.
Grass D, Beasley GM, Fischer MC, Selim MA, Zhou Y, Warren WS. Contrast mechanisms in pump-probe microscopy of melanin. 2022.

Publication Date

July 1, 2022