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肌肉交感神经爆发大小和爆发模式对交感神经传递达峰时间的影响。

Effects of muscle sympathetic burst size and burst pattern on time-to-peak sympathetic transduction.

机构信息

Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.

Department of Kinesiology, University of Guelph-Humber, Toronto, Canada.

出版信息

Appl Physiol Nutr Metab. 2021 Jul;46(7):790-796. doi: 10.1139/apnm-2020-0721. Epub 2021 Jan 11.

Abstract

The current study evaluated the influence of resting muscle sympathetic nerve activity (MSNA) burst size and firing pattern on time-to-peak sympathetic transduction in 36 young healthy men and women. Participants underwent a 5-10 min resting baseline with beat-to-beat measures of heart rate, mean arterial pressure (MAP), and MSNA (microneurography). Cardiac output and total vascular conductance were calculated using the Modelflow algorithm. Sympathetic transduction was quantified using the burst-triggered signal averaging technique to examine the changes in MAP, cardiac output, and total vascular conductance for 15 cardiac cycles after each MSNA burst or non-burst. A stepwise increase in the peak MAP (i.e., sympathetic transduction) was observed throughout all quartiles of normalized MSNA burst area (quartile 1 (Q1): 1.7 ± 1.3 mm Hg; Q2: 2.1 ± 1.3 mm Hg; Q3: 2.6 ± 1.4 mm Hg; Q4: 3.5 ± 1.4 mm Hg; < 0.01). The largest quartile of normalized MSNA burst area demonstrated faster time-to-peak MAP responses (5.7 ± 2.5 s) than both Q1 (10.1 ± 3.9 s, < 0.01) and Q2 (9.3 ± 4.1 s, < 0.01), as well as, faster time-to-peak cardiac output and time-to-nadir total vascular conductance compared with Q1 and Q2 (All < 0.05). Larger clusters of sympathetic bursts (i.e., triplets and ≥ quadruplets) did not have increased time-to-peak transduction compared with singlets and doublet bursts across all MSNA quartiles. These results highlight intraindividual variability in the time-course of sympathetic transduction and reveal an intrinsic property of larger sympathetic bursts to increase time-to-peak sympathetic transduction in humans. Muscle sympathetic burst size can modulate time-to-peak sympathetic transduction in young healthy men and women. These observations appear independent of the pattern of sympathetic firing.

摘要

当前的研究评估了静息状态下肌肉交感神经活动 (MSNA) 爆发大小和发放模式对 36 名年轻健康男性和女性的交感神经传递达峰时间的影响。参与者进行了 5-10 分钟的静息基线测量,包括心率、平均动脉压 (MAP) 和 MSNA(微神经记录)的逐拍测量。心输出量和总血管传导率使用 Modelflow 算法计算。使用爆发触发信号平均技术来量化交感神经传递,以检查在每个 MSNA 爆发或非爆发后的 15 个心动周期中 MAP、心输出量和总血管传导率的变化。在整个标准化 MSNA 爆发面积的四分位数中观察到 MAP 峰值(即交感神经传递)逐渐增加(四分位 1 (Q1):1.7±1.3mmHg;Q2:2.1±1.3mmHg;Q3:2.6±1.4mmHg;Q4:3.5±1.4mmHg;<0.01)。最大的标准化 MSNA 爆发面积四分位数表现出更快的达峰 MAP 反应时间(5.7±2.5s),明显快于 Q1(10.1±3.9s,<0.01)和 Q2(9.3±4.1s,<0.01),以及更快的达峰心输出量和达峰总血管传导率时间,与 Q1 和 Q2 相比(均<0.05)。与单发性和双发性爆发相比,较大的交感爆发簇(即三联和≥四联)并没有增加在所有 MSNA 四分位数中的达峰传递时间。这些结果突出了交感神经传递时程的个体内变异性,并揭示了较大的交感神经爆发增加人类达峰交感神经传递的内在特性。肌肉交感神经爆发大小可以调节年轻健康男性和女性的达峰交感神经传递时间。这些观察结果似乎与交感神经放电模式无关。

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