Bispebjerg Hospital Research Unit for Anaesthesia and Intensive Care Bispebjerg Hospital, University of Copenhagen, Copenhagen, Denmark.
Scand J Med Sci Sports. 2013 Feb;23(1):e32-7. doi: 10.1111/sms.12009. Epub 2012 Nov 2.
Running induces characteristic fluctuations in blood pressure (BP) of unknown consequence for organ blood flow. We hypothesized that running-induced BP oscillations are transferred to the cerebral vasculature. In 15 healthy volunteers, transcranial Doppler-determined middle cerebral artery (MCA) blood flow velocity, photoplethysmographic finger BP, and step frequency were measured continuously during three consecutive 5-min intervals of treadmill running at increasing running intensities. Data were analysed in the time and frequency domains. BP data for seven subjects and MCA velocity data for eight subjects, respectively, were excluded from analysis because of insufficient signal quality. Running increased mean arterial pressure and mean MCA velocity and induced rhythmic oscillations in BP and in MCA velocity corresponding to the difference between step rate and heart rate (HR) frequencies. During running, rhythmic oscillations in arterial BP induced by interference between HR and step frequency impact on cerebral blood velocity. For the exercise as a whole, average MCA velocity becomes elevated. These results suggest that running not only induces an increase in regional cerebral blood flow but also challenges cerebral autoregulation.
跑步会引起血压(BP)的特征性波动,但尚不清楚这对器官血流有何影响。我们假设跑步引起的血压波动会传递到脑血管。在 15 名健康志愿者中,在连续三次 5 分钟的跑步机跑步过程中,通过经颅多普勒超声确定大脑中动脉(MCA)血流速度、光体积描记手指血压和步频,并在时间和频率域进行分析。由于信号质量不足,分别排除了七名受试者的血压数据和八名受试者的 MCA 速度数据进行分析。跑步会增加平均动脉压和平均 MCA 速度,并引起血压和 MCA 速度的节律性波动,与步速和心率(HR)频率之间的差异相对应。在跑步过程中,由 HR 和步频干扰引起的动脉血压的节律性波动会影响脑血流速度。对于整个运动过程,平均 MCA 速度升高。这些结果表明,跑步不仅会引起区域性脑血流增加,还会对脑自动调节造成挑战。