Delamarche P, Gratas A, Beillot J, Dassonville J, Rochcongar P, Lessard Y
Int J Sports Med. 1987 Feb;8(1):55-9. doi: 10.1055/s-2008-1025641.
The authors investigated lactic anaerobic metabolism in handball players during practice games. Seven players aged 18-21, belonging to second division league clubs, took part in the study. In the laboratory, VO2 max and the onset of blood lactate accumulation (OBLA) were determined with progressive maximal ergocycle tests. On the field, video recordings, cardiotelemetry, and rectal temperature measurements made during the first half of the game were used to quantify exertion. An intravenous catheter worn permanently was used to draw blood for lactate measurements at the 5th, 10th, 15th, 20th, and 30th min of play and after a 10-min rest period. The results confirmed earlier observations showing the need for an excellent maximal aerobic power and capacity in handballers. However, the maximal lactate levels observed (4-9 mmol X l-1) were above those that could be expected from samples drawn only at the end of play. These findings indicate that players must be trained to tolerate high lactate levels to preserve their maximal efficiency throughout the game. Finally, lactate production increased with player exertion and with increasing OBLA.
作者们研究了手球运动员在练习赛中的乳酸无氧代谢情况。七名年龄在18 - 21岁、隶属于二级联赛俱乐部的运动员参与了此项研究。在实验室中,通过递增式最大运动负荷测试来测定最大摄氧量(VO2 max)和血乳酸堆积起始点(OBLA)。在赛场上,比赛上半场期间进行的视频记录、心电图遥测以及直肠温度测量用于量化运动强度。一根永久性佩戴的静脉导管用于在比赛的第5、10、15、20和30分钟以及10分钟休息期后采集血液以测量乳酸。结果证实了先前的观察结果,表明手球运动员需要具备出色的最大有氧能力和容量。然而,观察到的最大乳酸水平(4 - 9 mmol·L-1)高于仅在比赛结束时采集的样本所预期的水平。这些发现表明,运动员必须接受训练以耐受高乳酸水平,从而在整场比赛中保持最大效率。最后,乳酸生成量随着运动员运动强度以及OBLA的增加而增加。