共 35 条
Optical property measurements establish the feasibility of photodynamic therapy as a minimally invasive intervention for tumors of the kidney
被引:15
作者:
Baran, Timothy M.
[2
]
Wilson, Jeremy D.
[3
]
Mitra, Soumya
Yao, Jorge L.
[4
]
Messing, Edward M.
[5
]
Waldman, David L.
Foster, Thomas H.
[1
,2
,3
]
机构:
[1] Univ Rochester, Med Ctr, Dept Imaging Sci, Rochester, NY 14642 USA
[2] Univ Rochester, Inst Opt, Rochester, NY 14642 USA
[3] Univ Rochester, Dept Phys & Astron, Rochester, NY 14642 USA
[4] Univ Rochester, Dept Pathol, Rochester, NY 14642 USA
[5] Univ Rochester, Dept Urol, Rochester, NY 14642 USA
关键词:
optical properties;
tissues;
reflectance;
Monte Carlo simulations;
photodynamic therapy;
RENAL-CELL CARCINOMA;
RADIOFREQUENCY ABLATION;
THERMAL ABLATION;
METHYLENE-BLUE;
CANCER;
REFLECTANCE;
TISSUES;
LIGHT;
SPECTROSCOPY;
NEPHRECTOMY;
D O I:
10.1117/1.JBO.17.9.098002
中图分类号:
Q5 [生物化学];
学科分类号:
071010 ;
081704 ;
摘要:
We measured the optical properties of freshly excised kidneys with renal parenchymal tumors to assess the feasibility of photodynamic therapy (PDT) in these patients. Kidneys were collected from 16 patients during surgical nephrectomies. Spatially resolved, white light, steady-state diffuse reflectance measurements were performed on normal and neoplastic tissue identified by a pathologist. Reflectance data were fit using a radiative transport model to obtain absorption (mu(a)) and transport scattering coefficients (mu'(s)), which define a characteristic light propagation distance, delta. Monte Carlo (MC) simulations of light propagation from cylindrical diffusing fibers were run using the optical properties extracted from each of the kidneys. Interpretable spectra were obtained from 14 kidneys. Optical properties of human renal cancers exhibit significant inter-lesion heterogeneity. For all diagnoses, however, there is a trend toward increased light penetration at longer wavelengths. For renal cell carcinomas (RCC), mean values of delta increase from 1.28 to 2.78 mm as the PDT treatment wavelength is increased from 630 to 780 nm. MC simulations of light propagation from interstitial optical fibers show that fluence distribution in tumors is significantly improved at 780 versus 630 nm. Our results support the feasibility of PDT in selected renal cancer patients, especially with photosensitizers activated at longer wavelengths. (C) 2012 Society of Photo-Optical Instrumentation Engineers (SPIE). [DOI:10.1117/1.JBO.17.9.098002]
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