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METHOD FOR QUANTITATIVE EVALUATION OF FUNCTIONAL STATE OF ESSENTIAL BODY SYSTEMS

机译:基本身体系统功能状态定量评估方法

摘要

1. A method for quantifying the functional state of body systems, in which the process of developing sterile inflammation of a tissue site caused by ultraviolet (UV) radiation (UVI) of various spectral composition, intensity and dose, evaluated by the severity of hyperemia (erythema) of the UV irradiated area, is studied the fact that to measure the activity of the apoptosis system induced by UVI, the slope (k) and the point of intersection with the abscissa axis (maximum Non-Erythematic Dose - NED) are measured Depending on the degree of redness of the UV irradiated portion of the test body in various tissues (up to 48 h after UV irradiation) points vremeni.2. The method according to claim 1, characterized in that, in order to study the activity of drugs modulating apoptosis, compare the values of k and NED with systemic and / or local pharmacological effects modulating apoptosis activity and without them for fast and for delayed UV-B erythema. . The method according to claim 1, characterized in that, in order to study the functional state of the immune system, the kinetics of the development of redness caused by UV-C (250-280 nm) and UV-B (280-320 nm) irradiation with systemic and / or local pharmacological effects and without them. 4. The method according to claim 1, characterized in that, in order to study the intracellular repair systems, the degree of redness from the same doses of UV radiation obtained by UV irradiation of different intensities is compared. The method according to p. 1, characterized in that for measuring the trigger threshold of apoptosis induced by ultraviolet radiation, the kinetics of UV-B erythema obtained using microfraction irradiation is investigated in comparison with the kinetics of erythema obtained with p
机译:1.一种量化身体系统功能状态的方法,其中由充血的严重程度评估由各种光谱组成,强度和剂量的紫外线(UVI)辐射引起的组织部位无菌炎症的发展过程研究了紫外线照射区域的红斑(红斑)这一事实,要测量由紫外线引起的凋亡系统的活性,斜率(k)和与横坐标轴的交点(最大非营养剂量-NED)为根据测试体在各种组织中的紫外线照射部分的发红程度(在紫外线照射后长达48小时)进行测量。 2.根据权利要求1所述的方法,其特征在于,为了研究调节细胞凋亡的药物的活性,比较k和NED的值与调节细胞凋亡活性的全身和/或局部药理作用,而对于快速和延迟的UV-红斑。 。 2.根据权利要求1所述的方法,其特征在于,为了研究免疫系统的功能状态,由UV-C(250-280nm)和UV-B(280-320nm)引起的发红发展的动力学。 )具有全身和/或局部药理作用的辐射,而没有它们。 4.根据权利要求1所述的方法,其特征在于,为了研究细胞内修复系统,比较了通过不同强度的紫外线照射获得的相同剂量的紫外线照射的发红程度。根据p的方法。如图1所示,其特征在于,为了测量由紫外线辐射引起的细胞凋亡的触发阈值,与使用p获得的红斑的动力学进行比较,研究了使用微级分照射获得的UV-B红斑的动力学。

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