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Louise Finlayson
Louise Finlayson
在 st-andrews.ac.uk 的电子邮件经过验证
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引用次数
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Depth penetration of light into skin as a function of wavelength from 200 to 1000 nm
L Finlayson, IRM Barnard, L McMillan, SH Ibbotson, CTA Brown, E Eadie, ...
Photochemistry and Photobiology 98 (4), 974-981, 2022
1852022
Computer modeling indicates dramatically less DNA damage from far‐UVC krypton chloride lamps (222 nm) than from sunlight exposure
E Eadie, P O’Mahoney, L Finlayson, IRM Barnard, SH Ibbotson, K Wood
Photochemistry and Photobiology 97 (5), 1150-1154, 2021
82021
Simulating photodynamic therapy for the treatment of glioblastoma using Monte Carlo radiative transport
L Finlayson, L McMillan, S Suveges, D Steele, R Eftimie, D Trucu, ...
Journal of Biomedical Optics 29 (2), 025001-025001, 2024
22024
Monte Carlo simulation of intraoperative photodynamic therapy for glioblastoma: investigating dosimetric parameters and treatment efficacy
LA Finlayson
The University of St Andrews, 2024
2024
Simulation of Intraoperative PDT for Glioblastoma using Monte Carlo Radiative Transport
L Finlayson, L McMillan, S Suveges, D Steele, R Eftimie, D Trucu, ...
Photodiagnosis and Photodynamic Therapy 46, 104118, 2024
2024
Simulation of Intraoperative PDT of Glioblastoma using Monte Carlo Radiative Transport
L FINLAYSON, L MCMILLAN, S SUVEGES, D STEELE, R EFTIMIE, ...
Photodiagnosis and Photodynamic Therapy 41, 103420, 2023
2023
Light penetration into a six-layer skin model for 200-1000 nm
L Finlayson, IRM Barnard, L McMillan, E Eadie, K Wood, S Ibbotson, ...
BRITISH JOURNAL OF DERMATOLOGY 185, 89-89, 2021
2021
Research Note Computer Modeling Indicates Dramatically Less DNA Damage from Far-UVC Krypton Chloride Lamps (222 nm) than from Sunlight Exposure
E Eadie, P O’Mahoney, L Finlayson, IRM Barnard, SH Ibbotson, K Wood
2021
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