Implicit and explicit dosimetry in photodynamic therapy: a New paradigm
- 1 October 1997
- journal article
- Published by Springer Nature in Lasers in Medical Science
- Vol. 12 (3) , 182-199
- https://doi.org/10.1007/bf02765099
Abstract
Dosimetry for photodynamic therapy (PDT) is becoming increasingly complex as more factors are identified which may influence the effectiveness of a given treatment. The simple prescription of a PDT treatment in terms of the administered photosensitizer dose, the incident light and the drug-light time interval does not account for patient-to-patient variability in either the photosensitizer uptake, tissue optical properties or tissue oxygenation, nor for the interdependence of the photosensitizer-light-tissue factors. This interdependence is examined and the implications for developing adequate dosimetry for PDT are considered. The traditional dosimetric approach, measuring each dose factor independently, and termed here ‘explicit dosimetry’, may be contrasted with the recent trend to use photosensitizer photobleaching as an index of the effective delivered dose, termed here ‘implicit dosimetry’. The advantages and limitations of each approach are discussed, and the need to understand the degree to which the photobleaching mechanism is linked, or ‘coupled’, to the photosensitizing mechanism is analysed. Finally, the influence of the tissue-response endpoints on the optimal dosimetry methods is considered.Keywords
This publication has 67 references indexed in Scilit:
- Changes in In Vivo Optical Properties and Light Distributions in Normal Canine Prostate during Photodynamic TherapyRadiation Research, 1997
- Damage Threshold of Normal Rat Brain in Photodynamic TherapyPhotochemistry and Photobiology, 1996
- Photodynamic therapy with pulsed light sources: a theoretical analysisPhysics in Medicine & Biology, 1996
- EVALUATION OF NEW BENZOPORPHYRIN DERIVATIVES WITH ENHANCED PDT EFFICACY*Photochemistry and Photobiology, 1995
- In vivo pH MEASUREMENT AND IMAGING OF TUMOR TISSUE USING A pH‐SENSITIVE FLUORESCENT PROBE (5,6–CARBOXYFLUORESCEIN): INSTRUMENTAL AND EXPERIMENTAL STUDIESPhotochemistry and Photobiology, 1994
- AN EFFICIENT OXYGEN INDEPENDENT TWO‐PHOTON PHOTOSENSITIZATION MECHANISMPhotochemistry and Photobiology, 1994
- Changes in perfusion of mouse tumours after photodynamic therapyInternational Journal of Cancer, 1994
- Effect of photosensitizer concentration in tissue on the penetration depth of photoactivating lightLasers in Medical Science, 1986
- Effect of bleaching of porphyrin sensitizers during photodynamic therapyCancer Letters, 1986
- IN VIVO and POST MORTEM MEASUREMENTS OF THE ATTENUATION SPECTRA OF LIGHT IN MAMMALIAN TISSUESPhotochemistry and Photobiology, 1985