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An experimental method for investigating the effect of medium boundary on distributions of light in the biological tissue phantom intralipid is presented. Measurements of distributions of light in intralipid-10% suspensions at 633 nm are described, in which a narrow collimated beam is incident on the surface of the phantoms and into the different depths inside of the phantoms. The experimental results show that the effect of the boundary of the medium on the curves geometry of light distributions is trivial, but the effect on intensity of scattering light is obvious, the maximal relative change of the energy fluence reaches 53.8% and the position of the peak of the energy fluence curve has a shift of 1.1 mm in the reverse direction of incident light for the phantom with albedo a=0.998, and the effect of the boundary is decreased with the increase of the absorption coefficients of tissue phantoms. The experimental results were analysed by the diffusion theory. These studies will be helpful for further understandings of the relation between the boundary of biological tissue and the distribution of light in tissue.  相似文献   
2.
以壳聚糖为载体的内毒素吸附剂   总被引:1,自引:0,他引:1  
内毒素血症(Endotoxemia)可出现于多种疾病过程中,导致器官坏死、不可逆休克和死亡。如何及时并有效地清除患者体内的内毒素,是临床医学面临的一个难题.选用高效吸附剂,籍助血液灌流的方法从血液中直接清除内毒素,受到了人们越来越多的关注。  相似文献   
3.
内毒素血症可出现于多种疾病中,如大面积烧伤、重症肝炎、肝硬化等疾病,使机体免疫功能严重受损,引起多器官功能衰竭等一系列严重的病理变化,最终导致不可逆休克和死亡,在美国每年都有超过10万人死于此病,临床上尚无有效的治疗方法,因此,及时、有效地清除或破坏患者体内的内毒素,  相似文献   
4.
以球状壳聚糖为载体,酸性氨基酸为配体,合成了尿毒症中分子毒物吸附剂,并测试了其血液相容性.为了研究吸附剂对尿毒症患者体内多肽蓄积物的吸附性能,选取分子量不同的6种多肽作为体内蓄积多肽的模拟物进行吸附实验.研究表明,吸附剂对多肽模拟物产生一定的吸附作用.在此基础上又对尿毒症患者血清超滤液进行了吸附实验,结果显示,吸附剂对血清中分子级分的清除率为10.3%.  相似文献   
5.
Based on the diffusion approximate theory (DA), a theoretical model about the distribution of the intensity of a narrow collimation beam illuminating on a semi-lnfinite biological tissue is developed. In order to verify the correctness of the model, a novel method of measuring the distributions of the intensity of light in Intralipid-10% suspension at 650 nm is presented and ts of the distributions of the distance-dependent intensity of scattering light in different directions are made. The investigations show that the results from our diffusion model are in good agreement with the experimental results beyond and in the areas around the light source, and the distance-dependent intensity in the incident direction attenuates approximately in the exponential form. Furthermore, our theoretic results indicate the anisotropic characteristics of the intensity in different directions of scattering light inside the biological tissue.  相似文献   
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