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1
Blood doping--a literature review.血液兴奋剂——文献综述。
Br J Sports Med. 1989 Jun;23(2):84-8. doi: 10.1136/bjsm.23.2.84.
2
Autologous Blood Transfusion Enhances Exercise Performance-Strength of the Evidence and Physiological Mechanisms.自体输血可提高运动表现——证据强度与生理机制
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3
Development of techniques for the detection of blood doping in sport.体育运动中血液兴奋剂检测技术的发展。
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Blood doping and related issues: a brief review.血液兴奋剂及相关问题:简要综述。
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Blood doping: the flip side of transfusion and transfusion alternatives.血液兴奋剂:输血及输血替代方法的另一面
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American College of Sports Medicine position stand on blood doping as an ergogenic aid.美国运动医学学院关于血液兴奋剂作为一种提高运动成绩辅助手段的立场声明。
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Med Sci Sports Exerc. 1996 Jun;28(6):i-viii.
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Autologous Doping with Cryopreserved Red Blood Cells - Effects on Physical Performance and Detection by Multivariate Statistics.自体使用冷冻保存的红细胞进行血液兴奋剂 doping - 对体能表现的影响及多元统计检测
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本文引用的文献

1
Work capacity after blood donation.献血后的工作能力。
J Appl Physiol. 1954 Nov;7(3):231-8. doi: 10.1152/jappl.1954.7.3.231.
2
Work capacity during 3-wk sojourn at 4,300 m: effects of relative polycythemia.在海拔4300米处停留3周期间的工作能力:相对性红细胞增多症的影响。
J Appl Physiol Respir Environ Exerc Physiol. 1980 Aug;49(2):311-8. doi: 10.1152/jappl.1980.49.2.311.
3
Effect of induced erythrocythemia on aerobic work capacity.诱导性红细胞增多症对有氧工作能力的影响。
J Appl Physiol Respir Environ Exerc Physiol. 1980 Apr;48(4):636-42. doi: 10.1152/jappl.1980.48.4.636.
4
The effect of induced erythrocythemia upon 5-mile treadmill run time.诱导性红细胞增多症对5英里跑步机跑步时间的影响。
Med Sci Sports Exerc. 1981;13(3):169-75.
5
O2 transport during exercise following blood reinfusion.输血后运动期间的氧气运输。
J Appl Physiol Respir Environ Exerc Physiol. 1982 Nov;53(5):1213-9. doi: 10.1152/jappl.1982.53.5.1213.
6
Effect of induced erythrocythemia on hypoxia tolerance during physical exercise.运动期间诱导性红细胞增多症对低氧耐受性的影响。
J Appl Physiol Respir Environ Exerc Physiol. 1982 Aug;53(2):490-5. doi: 10.1152/jappl.1982.53.2.490.
7
Blood doping and related issues: a brief review.血液兴奋剂及相关问题:简要综述。
Med Sci Sports Exerc. 1982;14(3):183-9.
8
Blood volume and hemoglobin concentration as determinants of maximal aerobic power.血容量和血红蛋白浓度作为最大有氧能力的决定因素。
Med Sci Sports Exerc. 1984 Jun;16(3):256-62.
9
Arterial O2 saturation and maximum O2 consumption in moderate-altitude runners exposed to sea level and 3,050 m.暴露于海平面和3050米高度的中度海拔跑步者的动脉血氧饱和度和最大耗氧量
JAMA. 1984;252(20):2867-71.
10
Hemoglobin concentration and aerobic work capacity in women following induced erythrocythemia.诱导性红细胞增多症后女性的血红蛋白浓度与有氧工作能力
J Appl Physiol Respir Environ Exerc Physiol. 1984 Aug;57(2):568-75. doi: 10.1152/jappl.1984.57.2.568.

血液兴奋剂——文献综述。

Blood doping--a literature review.

作者信息

Jones M, Tunstall Pedoe D S

机构信息

London Sports Medicine Institute, Medical College of St Bartholomew's Hospital, London.

出版信息

Br J Sports Med. 1989 Jun;23(2):84-8. doi: 10.1136/bjsm.23.2.84.

DOI:10.1136/bjsm.23.2.84
PMID:2691004
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1478635/
Abstract

There is increasing evidence that the technique of reinfusing an athlete's stored blood prior to competition to improve performance has been used on many occasions. Although early experimental results were controversial and the precise mechanism by which the technique improves performance is still debated, there is now strong evidence that if the blood doping produces a sufficient rise in total red cell mass there are significant improvements in physiological variables such as maximum oxygen uptake, lactate buffering and thermoregulation. These physiological changes are matched by improvements in endurance performance. These may persist in diminishing degree for several weeks, but have to be weighed against the detraining effect produced by the repeated venesection required to obtain an adequate amount of stored blood for autologous reinfusion. Experimental evidence suggests that the transient increase in blood volume and cardiac output following reinfusion is too short lived to be of any real importance and the major effect is related to the increase in total red blood cell mass and haemoglobin enabling an increased transport of oxygen and therefore a potentially greater reserve of blood which can be diverted to non-exercising tissues to improve thermoregulation. The increased red cell mass also improves lactate buffering. Although these benefits have been shown in several studies the increases in performance and measured physiological parameters do not bear a direct relationship to the changes in haematological variables. Blood doping is of considerable importance, not only as an abuse of fair competition, but also because of the light it throws on the physiological limits to endurance performance. It has reawakened controversy as to whether oxygen transport is the limiting factor in endurance.

摘要

越来越多的证据表明,赛前回输运动员储存的血液以提高成绩的技术已被多次使用。尽管早期的实验结果存在争议,且该技术提高成绩的确切机制仍在争论中,但现在有强有力的证据表明,如果血液兴奋剂能使总红细胞量充分增加,那么诸如最大摄氧量、乳酸缓冲能力和体温调节等生理变量会有显著改善。这些生理变化与耐力表现的提高相匹配。这些改善可能会在几周内逐渐减弱,但必须权衡为获得足够量的储存血液用于自体回输而反复采血所产生的去训练效应。实验证据表明,回输后血容量和心输出量的短暂增加持续时间过短,不具有任何实际重要性,其主要作用与总红细胞量和血红蛋白的增加有关,这使得氧气运输增加,从而可能有更多的血液储备可被转移到非运动组织以改善体温调节。红细胞量的增加也改善了乳酸缓冲能力。尽管在多项研究中已显示出这些益处,但成绩的提高和所测量的生理参数与血液学变量的变化并无直接关系。血液兴奋剂不仅作为对公平竞争的滥用而具有相当重要性,还因为它揭示了耐力表现的生理极限。它重新引发了关于氧气运输是否是耐力限制因素的争议。