首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Optical properties of human prostate at 732 nm measured during motexafin lutetium-mediated photodynamic therapy
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Optical properties of human prostate at 732 nm measured during motexafin lutetium-mediated photodynamic therapy

机译:Motexafin-介导的光动力治疗过程中测得的732 nm处人类前列腺的光学特性

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Characterization of the tissue light penetration in prostate photodynamic therapy (PDT) is important to plan the arrangement and weighting of light sources so that sufficient light fluence is delivered to the treatment volume. The optical properties (absorption [mu(a)], transport scattering [mu(s)'] and effective attenuation [mu(eff)] coefficients) of 13 patients with locally recurrent prostate cancer were measured in situ using interstitial isotropic detectors. Measurements were made at 732 mu before and after motexafin lutetium (MLu)-mediated PDT in four quadrants. Optical properties were derived by applying the diffusion theory to the fluence rates measured at several distances (0.5-5 cm) from a point source. p. and p, varied between 0.07 and 1.62 cm(-1) (mean 0.37 +/- 0.24 cm(-1)) and 1.1 and 44 cm(-1) (mean 14 +/- 11 cm-1), respectively. It. was proportional to the concentration of MLu measured by an ex vivo fluorescence assay. We have observed, on average, a reduction of the MLu concentration after PDT, presumably due to the PDT consumption of MLu. mu(eff) varied between 0.91 and 6.7 cm(-1) (mean 2.9 +/- 0.7 cm(-1)), corresponding to an optical penetration depth (delta = 1/mu(eff)) of 0.1-1.1 cm (mean 0.4 +/- 0.1 cm). The mean penetration depth at 732 run in human prostate is at least two times smaller than that found in normal canine prostates, which can be explained by a four times increase of the mean value of mu(s)' in human prostates. The mean light fluence rate per unit source strength at 0.5 cm from a point source was 1.5 +/- 1.1 cm(-2), excluding situations when bleeding occurs. The total number of measurements was N = 121 for all mean quantities listed above. This study showed significant inter- and intraprostatic differences in the optical properties, suggesting that a real-time dositmetry measurement and feedback system for monitoring light fluences during treatment should be considered for future PDT studies.
机译:前列腺光动力疗法(PDT)中组织光穿透的特性对于规划光源的布置和权重非常重要,这样才能将足够的光通量传递到治疗空间。使用间质各向同性检测器原位测量了13例局部复发性前列腺癌患者的光学特性(吸收率[mu(a)],传输散射[mu(s)']和有效衰减[mu(eff)]系数)。在Motexafin et(MLu)介导的PDT之前和之后的四个象限中,在732亩处进行了测量。光学特性是通过将扩散理论应用于在距点光源数个距离(0.5-5 cm)处测得的注量率得出的。 p。和p分别在0.07和1.62 cm(-1)(平均0.37 +/- 0.24 cm(-1))和1.1和44 cm(-1)(平均14 +/- 11 cm-1)之间变化。它。与通过离体荧光测定法测量的MLu浓度成正比。我们平均观察到,PDT后MLu浓度降低,大概是由于PDT消耗了MLu。 mu(eff)在0.91和6.7 cm(-1)之间变化(平均2.9 +/- 0.7 cm(-1)),对应于0.1-1.1 cm(的光学穿透深度(delta = 1 / mu(eff))(平均0.4 +/- 0.1厘米)。在人的前列腺中732处的平均渗透深度至少比正常犬前列腺中发现的渗透深度小两倍,这可以通过人的前列腺中的mu's平均值的四倍增加来解释。从点光源到0.5 cm处的每单位光源强度的平均光通量率为1.5 +/- 1.1 cm(-2),不包括发生出血的情况。对于上面列出的所有平均数量,测量总数为N = 121。这项研究表明前列腺之间和前列腺内的光学特性存在显着差异,这表明在将来的PDT研究中应考虑使用实时剂量测定和反馈系统来监测治疗期间的光通量。

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