Elliott Andrew M, Schwartz Jon, Wang James, Shetty Anil M, Bourgoyne Chirs, O'Neal D Patrick, Hazle John D, Stafford R Jason
Department of Imaging Physics, Unit 56, The University of Texas, M.D. Anderson Cancer Center, Houston, Texas 77030, USA.
Med Phys. 2009 Apr;36(4):1351-8. doi: 10.1118/1.3056456.
Laser induced thermal therapy combined with the wavelength dependent optical absorption and heating power of gold-coated silica nanoshells can achieve therapeutic heating localized to a tumor volume. Accurate modeling of the spatiotemperal thermal distribution associated with this heating is essential for accurate thermal therapy treatment planning. The optical diffusion approximation (ODA), used in numerous applications of laser fluence in biology, is compared to the delta P1 optical approximation in phantoms containing different concentrations of nanoshells for several laser powers. Results are compared with temperature maps generated by magnetic resonance temperature imaging techniques and show that the delta P1 approximation is more effective than ODA at modeling the thermal distribution. The discrepancy between the two is especially prominent in phantoms with higher nanoshell concentrations where ODA was shown to give unsatisfactory results.
激光诱导热疗法结合金涂层二氧化硅纳米壳的波长依赖性光吸收和加热功率,可以实现局限于肿瘤体积的治疗性加热。准确模拟与这种加热相关的时空热分布对于精确的热疗治疗计划至关重要。在含有不同浓度纳米壳的体模中,针对几种激光功率,将生物学中激光能量密度的众多应用中使用的光扩散近似(ODA)与δP1光学近似进行了比较。将结果与磁共振温度成像技术生成的温度图进行比较,结果表明,在模拟热分布方面,δP1近似比ODA更有效。在纳米壳浓度较高的体模中,两者之间的差异尤为突出,在这种情况下,ODA给出的结果并不理想。