Seluianov V N, Kalinin E M, Pak G D, Maevskaia V I, Konrad A H
Fiziol Cheloveka. 2011 Nov-Dec;37(6):106-10.
The aim of this work is to develop methods for determining the anaerobic threshold according to the rate of ventilation and cardio interval variability during the test with stepwise increases load on the cycle ergometer and treadmill. In the first phase developed the method for determining the anaerobic threshold for lung ventilation. 49 highly skilled skiers took part in the experiment. They performed a treadmill ski-walking test with sticks with gradually increasing slope from 0 to 25 degrees, the slope increased by one degree every minute. In the second phase we developed a method for determining the anaerobic threshold according dynamics ofcardio interval variability during the test. The study included 86 athletes of different sports specialties who performed pedaling on the cycle ergometer "Monarch" in advance. Initial output was 25 W, power increased by 25 W every 2 min. The pace was steady--75 rev/min. Measurement of pulmonary ventilation and oxygen and carbon dioxide content was performed using gas analyzer COSMED K4. Sampling of arterial blood was carried from the ear lobe or finger, blood lactate concentration was determined using an "Akusport" instrument. RR-intervals registration was performed using heart rate monitor Polar s810i. As a result, it was shown that the graphical method for determining the onset of anaerobic threshold ventilation (VAnP) coincides with the accumulation of blood lactate 3.8 +/- 0.1 mmol/l when testing on a treadmill and 4.1 +/- 0.6 mmol/1 on the cycle ergometer. The connection between the measure of oxygen consumption at VAnP and the dispersion of cardio intervals (SD1), derived regression equation: VO2AnT = 0.35 + 0.01SD1W + 0.0016SD1HR + + 0.106SD1(ms), l/min; (R = 0.98, error evaluation function 0.26 L/min, p < 0.001), where W (W)--Power, HR--heart rate (beats/min), SD1--cardio intervals dispersion (ms) at the moment of registration of cardio interval threshold.
这项工作的目的是开发在自行车测力计和跑步机上逐步增加负荷的测试过程中,根据通气率和心搏间期变异性来确定无氧阈的方法。在第一阶段,开发了确定肺通气无氧阈的方法。49名技术高超的滑雪者参与了实验。他们使用滑雪杖在跑步机上进行滑雪行走测试,坡度从0度逐渐增加到25度,每分钟增加1度。在第二阶段,我们根据测试过程中心搏间期变异性的动态变化开发了一种确定无氧阈的方法。该研究包括86名不同运动专项的运动员,他们预先在“Monarch”自行车测力计上进行蹬踏。初始功率为25瓦,每2分钟功率增加25瓦。节奏稳定——75转/分钟。使用COSMED K4气体分析仪测量肺通气以及氧气和二氧化碳含量。从耳垂或手指采集动脉血样本,使用“Akusport”仪器测定血乳酸浓度。使用心率监测仪Polar s810i记录RR间期。结果表明,在跑步机上测试时,用于确定无氧阈通气起始点(VAnP)的图形方法与血乳酸积累量3.8±0.1毫摩尔/升相符,在自行车测力计上为4.1±0.6毫摩尔/升。VAnP时的耗氧量测量值与心搏间期离散度(SD1)之间的联系,得出回归方程:VO2AnT = 0.35 + 0.01SD1W + 0.0016SD1HR + 0.106SD1(毫秒),升/分钟;(R = 0.98,误差评估函数0.26升/分钟,p < 0.001),其中W(瓦)——功率,HR——心率(次/分钟),SD1——心搏间期阈值记录时刻的心搏间期离散度(毫秒)。