低氧模拟条件下wistar径流大鼠ldl - g分析

F. Alistratova, Y. Toropova, S. Osipova, M. Vasyutina
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Hardware – laser analyzer of capillary circulation «LACC-02» manufactured by LLC NPP «Lasma,» Moscow. The main basal blood flow indicators and microcirculation indicators were revealed when exposed to a 7-day course of interval hypobaric training. The statistical values of PM (constant perfusion parameter, units), σ (mean square deviation of amplitude of perfusion fluctuation, units) and Kv (coefficient of variation, %) provided an opportunity to analyze the general state of blood microcirculation. The amplitude-frequency spectrum of perfusion oscillations was also evaluated. With the help of a wavelet analysis (program 2.2.0.507, NPP Lasma, Russia), normalized amplitudes of blood flow fluctuations in frequency ranges were determined (endothelial due to nitric oxide activity (0.0095–0.02 Hz); neurogenic (0.02–0.06 Hz); myogenic (vasomosis) (0.06–0.2 Hz) and passive frequency range (cardiac (0.6–1.6 Hz), respiratory (0.2–0.6 Hz). 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A seven-day course of hypoxia did not cause significant changes in cutaneous blood flow in animals in group C (control), and in animals in group P (pseudo-hypoxic rats). However, it was found that in rats in group H (hypoxia) there was an increase in the coefficient of variation by 62.5 % (p≤ 0.05) on the 7th day of exposure, this may be due to the launch of adaptation mechanisms, which are necessary to adequately supply blood to cells, tissues and organs. When analyzing LDF-grams in rats of group C (control) and P (pseudo-hypoxed), there was no change in the perfusion parameter in the microcirculatory channel, but in group G (hypoxia) – PM (microcirculation index) significantly decreased by 47 % (p<0.05). In animals of groups C (control) and P (psvedo-hypoxed), there were no significant changes, according to the data of the wavelet analysis. However, in group H rats (hypoxia) on the 1st day of exposure, there was an increase in the frequency of the amplitude of oscillations in the myogenic range (0.06–0.2 Hz) on 18.72 % (p < 0.05) and passive frequency ranges (cardiac modulating factor (0.6–1.6 Hz) in the LDF-gram of the subjects on 14.97 % (p<0.05). Summing up the above, the results of the analysis of LDF-grams and the microcirculation index (PM) made it possible to establish a significant role in the possible use of the LDF-diagnostic method to evaluate the quality of methods for increasing the adaptive capabilities of the vessels of the skin microcirculatory bed and also central vessels. The dynamics of the frequency ranges of the vessels of nutritive blood flow in rats after a weekly course of interval hypobaric changed as follows: the role of passive factors, mainly the pulse wave from the arterial link, was increased by 24 % (p<0.05). 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引用次数: 0

摘要

本研究的目的是评估皮肤微循环床血管外周血流参数变化的动力学,并通过激光多普勒血流仪分析皮肤血流频率范围振幅的变化,在每日间隔低压训练的条件下。研究了间歇低压训练(持续7天,暴露时间为60分钟)对皮肤微循环床状态的影响,以研究微回路血管中适应性反应的形成和过程的特殊性。利用LDF诊断法对微循环指标进行了分析。硬件-毛细管循环激光分析仪«LACC-02»制造的LLC NPP«Lasma,»莫斯科。在连续7天的间歇低压训练后,观察主要的基础血流指标和微循环指标。PM(恒定灌注参数,单位)、σ(灌注波动幅度均方差,单位)和Kv(变异系数,%)的统计值提供了分析血液微循环总体状态的机会。并对灌注振荡的幅频谱进行了评价。在小波分析(程序2.2.0.507,NPP Lasma,俄罗斯)的帮助下,确定了频率范围内血流波动的归一化幅度(内皮由于一氧化氮活性(0.0095-0.02 Hz);神经源性(0.02-0.06 Hz);肌源性(血管收缩)(0.06-0.2 Hz)和被动频率范围(心脏(0.6-1.6 Hz),呼吸(0.2-0.6 Hz)。在缺氧暴露前0点(8分钟)、缺氧暴露后第1天(8分钟)、缺氧后第7天(8分钟)进行3次微循环参数测量。测量区域为骨盆下肢内表面,LDF传感器位于皮肤表面。录音时长为360秒。研究中使用的缺氧效果是通过硬件实现的-一个实验性低压摄像机,其中创建了必要的条件(负压(- 0.306kg/cm2))。舱内压力分阶段降低:第一阶段-高度为1000米,空气稀释(- 0.1 kg/cm2),持续180秒;第二阶段- 2000 m的稀释(- 0.21 kg/cm2),持续时间相同;最后一级高度为3000 m,对应于真空(-0.306 kg/cm2)。7天的缺氧疗程没有引起C组(对照组)和P组(假性缺氧大鼠)动物皮肤血流量的显著变化。然而,我们发现H组(缺氧)大鼠在暴露第7天变异系数增加了62.5% (p≤0.05),这可能是由于启动了适应机制,这是向细胞、组织和器官充分供应血液所必需的。分析C组(对照组)和P组(假性缺氧组)大鼠的ldl - G图,微循环通道灌注参数无变化,而G组(缺氧组)- PM(微循环指数)显著降低47% (P <0.05)。根据小波分析数据,C组(对照组)和P组(psvedo-hypoxed)动物无明显变化。H组(缺氧)暴露第1天,心肌源性范围(0.06 ~ 0.2 Hz)振荡幅度频率增加18.72% (p<0.05), ldl -gram被动频率范围(心脏调节因子(0.6 ~ 1.6 Hz)振幅频率增加14.97% (p<0.05)。综上所述,ldf图和微循环指数(PM)的分析结果使得ldf诊断方法在评估提高皮肤微循环床血管和中央血管适应能力的方法质量方面发挥了重要作用。经过一周间歇低压治疗后,大鼠营养血流血管频率范围的动态变化如下:被动因子的作用,主要是动脉链脉波的作用增加了24% (p<0.05)。观察到的变化可能与皮肤微循环系统动脉血管壁上肌肉细胞的增强有关,从而增强了循环系统的功能。采用激光多普勒血流仪观察大鼠外周血循环指标的动态变化,评估大鼠的变化,研究皮肤血液的频率范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF LDF-GRAMS IN WISTAR RUNOFF RATS UNDER HYPOXIA MODELING CONDITIONS
The aim of the study was to assess the dynamics of the change in peripheral blood flow parameters of the blood vessels of the microcirculatory bed of the skin, with an additional analysis of the change in the amplitude of the frequency ranges of cutaneous blood flow, in the conditions of daily interval hypobaric training by laser Doppler flowmetry. The effect of interval hypobaric training course (seven days duration, exposure duration was 60 minutes) on the state of the microcirculatory bed of the skin was investigated to study the peculiarities of the formation and course of adaptive reactions in the vessels of the microcircuit. An analysis of microcirculation indicators using LDF diagnostics was carried out. Hardware – laser analyzer of capillary circulation «LACC-02» manufactured by LLC NPP «Lasma,» Moscow. The main basal blood flow indicators and microcirculation indicators were revealed when exposed to a 7-day course of interval hypobaric training. The statistical values of PM (constant perfusion parameter, units), σ (mean square deviation of amplitude of perfusion fluctuation, units) and Kv (coefficient of variation, %) provided an opportunity to analyze the general state of blood microcirculation. The amplitude-frequency spectrum of perfusion oscillations was also evaluated. With the help of a wavelet analysis (program 2.2.0.507, NPP Lasma, Russia), normalized amplitudes of blood flow fluctuations in frequency ranges were determined (endothelial due to nitric oxide activity (0.0095–0.02 Hz); neurogenic (0.02–0.06 Hz); myogenic (vasomosis) (0.06–0.2 Hz) and passive frequency range (cardiac (0.6–1.6 Hz), respiratory (0.2–0.6 Hz). Measurement of microcirculation parameters was carried out 3 times at the following stages of the experiment: before hypoxic exposure – point 0 (8 minutes), on the 1st day immediately after hypoxia exposure (8 minutes), and on the 7th day immediately after hypoxia session (8 minutes). The measurement area was the inner surface of the lower pelvic limb, the LDF sensor was located on the surface of the skin. The recording duration was 360 seconds. The hypoxic effect used in the study was implemented using hardware – an experimental hypobarocamera, in which the necessary conditions were created (negative pressure (–0.306kg/cm2)). The pressure in the chamber was reduced in stages: the first stage – a height of 1000 m with air dilution (–0.1 kg/cm2), duration 180 seconds; second stage – 2000 m rarefaction was (–0.21 kg/cm2) with the same duration; and the last stage is 3000 m high, which corresponds to a vacuum (–0.306 kg/cm2). A seven-day course of hypoxia did not cause significant changes in cutaneous blood flow in animals in group C (control), and in animals in group P (pseudo-hypoxic rats). However, it was found that in rats in group H (hypoxia) there was an increase in the coefficient of variation by 62.5 % (p≤ 0.05) on the 7th day of exposure, this may be due to the launch of adaptation mechanisms, which are necessary to adequately supply blood to cells, tissues and organs. When analyzing LDF-grams in rats of group C (control) and P (pseudo-hypoxed), there was no change in the perfusion parameter in the microcirculatory channel, but in group G (hypoxia) – PM (microcirculation index) significantly decreased by 47 % (p<0.05). In animals of groups C (control) and P (psvedo-hypoxed), there were no significant changes, according to the data of the wavelet analysis. However, in group H rats (hypoxia) on the 1st day of exposure, there was an increase in the frequency of the amplitude of oscillations in the myogenic range (0.06–0.2 Hz) on 18.72 % (p < 0.05) and passive frequency ranges (cardiac modulating factor (0.6–1.6 Hz) in the LDF-gram of the subjects on 14.97 % (p<0.05). Summing up the above, the results of the analysis of LDF-grams and the microcirculation index (PM) made it possible to establish a significant role in the possible use of the LDF-diagnostic method to evaluate the quality of methods for increasing the adaptive capabilities of the vessels of the skin microcirculatory bed and also central vessels. The dynamics of the frequency ranges of the vessels of nutritive blood flow in rats after a weekly course of interval hypobaric changed as follows: the role of passive factors, mainly the pulse wave from the arterial link, was increased by 24 % (p<0.05). The observed changes can be related to the enhancement of muscle cells in the vascular wall of the arterial vessels of the skin microcirculatory system, and as a result, the enhancement of the functioning of the circulatory system. By laser Doppler flowmetry, the dynamics of changes in peripheral circulatory indices were investigated with the assessment of changes in rats, with the study of the frequency ranges of cutaneous blood.
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