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How tissue optics affect dosimetry of photodynamic therapy

机译:组织光学如何影响光动力疗法的剂量学

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摘要

We describe three lessons learned about how tissue optics affect the dosimetry of red to near-infrared treatment light during PDT, based on working with Dr. Tayyaba Hasan. Lesson 1—The optical fluence rate ϕ near the tissue surface exceeds the delivered irradiance (E). A broad beam penetrates into tissue to a depth (z) as ϕ=Eke−μz, with an attenuation constant μ and a backscatter term k. In tissues, k is typically in the range 3–5, and 1∕μ equals δ, the 1∕e optical penetration depth. Lesson 2—Edge losses at the periphery of a uniform treatment beam extend about 3δ from the beam edge. If the beam diameter exceeds 6δ, then there is a central zone of uniform fluence rate in the tissue. Lesson 3—The depth of treatment is linearly proportional to δ (and the melanin content of pigmented epidermis in skin) while proportional to the logarithm of all other factors, such as irradiance, exposure time, or the photosensitizer properties (concentration, extinction coefficient, quantum yield for oxidizing species). The lessons illustrate how tissue optics play a dominant role in specifying the treatment zone during PDT.
机译:在与Tayyaba Hasan博士合作的基础上,我们描述了三个有关组织光学如何在PDT期间影响红色至近红外治疗光剂量的经验教训。第1课-组织表面附近的光学通量率exceeds超过所传递的辐照度(E)。宽光束以ϕ = Eke -μz的深度穿透组织(z),衰减常数为μ,反向散射项为k。在组织中,k通常在3-5范围内,1 ∕μ等于δ,即1 ∕ e光学穿透深度。第2课-均匀处理光束外围的边缘损耗从光束边缘延伸约3δ。如果光束直径超过6δ,则在组织中会有一个均匀注量速率的中心区域。第3课-治疗深度与δ(以及皮肤中色素表皮的黑色素含量)成线性比例,而与所有其他因素(例如辐照度,曝光时间或光敏剂特性(浓度,消光系数,氧化物质的量子产率)。这些课程说明了组织光学在PDT中如何在指定治疗区域中起主要作用。

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