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Axially symmetric semi-infinite domain models of microdialysis and their application to the determination of nutritive flow in rat muscle

机译:微透析轴对称半无限域模型及其在大鼠肌肉营养流测定中的应用

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摘要

Theoretical models for the description of microdialysis outflow:inflow (O/I) ratio for 3H2O and [14C]ethanol were developed, taking into account the nutritive fraction of total blood flow in muscle. The models yielded an approximately exponential decay expression for the O/I ratio, dependent on the physical dimensions of a linear probe (length and radius), the flow rate through the probe, muscle blood flow (including the nutritive fraction) and the diffusion coefficients for the tracer in the probe and muscle. The models compared favourably with experimental data from the constant-flow perfused rat hindlimb. Estimates of the nutritive fraction of total blood flow from experimental data were determined by minimizing the error between model and experimental data. The nutritive fraction was found to be 0.22 ± 0.04 under basal perfusion conditions. When 70 nm noradrenaline (norepinephrine) was included in the perfusion medium, the nutritive fraction was 0.91 ± 0.06 (P < 0.05). The inclusion of 300 nm serotonin, decreased the nutritive fraction to 0.05 ± 0.01 (P < 0.05). This model can be applied to the determination of nutritive fraction of skeletal muscle blood flow in physiologically relevant microvascular conditions such as during exercise and in disease states.
机译:考虑到总营养成分,建立了用于描述 3 H2O和[ 14 C]乙醇的微透析流出量(O / I)比的理论模型肌肉中的血液流动。根据线性探针的物理尺寸(长度和半径),穿过探针的流速,肌肉血流(包括营养成分)和扩散系数,模型得出O / I比的近似指数衰减表达式用于探针和肌肉中的示踪剂。该模型与恒流灌注大鼠后肢的实验数据相比具有优势。通过最小化模型和实验数据之间的误差,可以确定来自实验数据的总血流营养成分的估算值。在基础灌注条件下,营养分数为0.22±0.04。当70 nm去甲肾上腺素(去甲肾上腺素)被包括在灌注介质中时,营养分数为0.91±0.06(P <0.05)。包含300 nm的5-羟色胺将营养分数降低至0.05±0.01(P <0.05)。该模型可用于确定生理相关的微血管状况(如运动过程中和疾病状态下)的骨骼肌血流营养分数。

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