The Relationship Between Training Load and Injury, Illness and Soreness: A Systematic and Literature Review

被引:357
作者
Drew, Michael K. [1 ,2 ,3 ]
Finch, Caroline F. [2 ]
机构
[1] Australian Inst Sport, Dept Phys Therapies, Canberra, ACT, Australia
[2] Federat Univ Australia, ACRISP, Ballarat, Vic, Australia
[3] Australian Inst Sport, AIS Phys Therapies, Leverrier Cr, Bruce, ACT 2614, Australia
基金
英国医学研究理事会;
关键词
PROFESSIONAL FOOTBALL PLAYERS; DATA-COLLECTION PROCEDURES; RISK-FACTORS; BOWLING WORKLOAD; CONSENSUS STATEMENT; OVERUSE INJURIES; RUNNING LOADS; SHOULDER PAIN; JUMPERS KNEE; RUGBY UNION;
D O I
10.1007/s40279-015-0459-8
中图分类号
G8 [体育];
学科分类号
04 ; 0403 ;
摘要
Background Clinically it is understood that rapid increases in training loads expose an athlete to an increased risk of injury; however, there are no systematic reviews to qualify this statement. Objective The aim of this systematic review was to determine training and competition loads, and the relationship between injury, illness and soreness. Methods The MEDLINE, SPORTDiscus, CINAHL and EMBASE databases were searched using a predefined search strategy. Studies were included if they analysed the relationship between training or competition loads and injury or illness, and were published prior to October 2015. Participants were athletes of any age or level of competition. The quality of the studies included in the review was evaluated using the Newcastle-Ottawa Scale (NOS). The level of evidence was defined as strong, 'consistent findings among multiple high-quality randomised controlled trials (RCTs)'; moderate, 'consistent findings among multiple low-quality RCTs and/or non-randomised controlled trials (CCTs) and/or one high-quality RCT'; limited, 'one low-quality RCT and/or CCTs, conflicting evidence'; conflicting, 'inconsistent findings among multiple trials (RCTs and/or CCTs)'; or no evidence, 'no RCTs or CCTs'. Results A total of 799 studies were identified; 23 studies met the inclusion criteria, and a further 12 studies that were not identified in the search but met the inclusion criteria were subsequently added to the review. The largest number of studies evaluated the relationship between injuries and training load in rugby league players (n = 9) followed by cricket (n = 5), football (n = 3), Australian Football (n = 3), rugby union (n = 2), volleyball (n = 2), baseball (n = 2), water polo (n = 1), rowing (n = 1), basketball (n = 1), swimming (n = 1), middle-distance runners (n = 1) and various sports combined (n = 1). Moderate evidence for a significant relationship was observed between training loads and injury incidence in the majority of studies (n = 27, 93 %). In addition, moderate evidence exists for a significant relationship between training loads and illness incidence (n = 6, 75 %). Training loads were reported to have a protective effect against injury (n = 9, 31 %) and illness (n = 1, 13 %). The median (range) NOS score for injury and illness was 8 (5-9) and 6 (5-9), respectively. Limitations A limitation of this systematic review was the a priori search strategy. Twelve further studies were included that were not identified in the search strategy, thus potentially introducing bias. The quality assessment was completed by only one author. Conclusions The results of this systematic review highlight that there is emerging moderate evidence for the relationship between the training load applied to an athlete and the occurrence of injury and illness. Implications The training load applied to an athlete appears to be related to their risk of injury and/or illness. Sports science and medicine professionals working with athletes should monitor this load and avoid acute spikes in loads. It is recommended that internal load as the product of the rate of perceived exertion (10-point modified Borg) and duration be used when determining injury risk in team-based sports. External loads measured as throw counts should also be monitored and collected across a season to determine injury risk in throwing populations. Global positioning system-derived distances should be utilised in team sports, and injury monitoring should occur for at least 4 weeks after spikes in loads.
引用
收藏
页码:861 / 883
页数:23
相关论文
共 69 条
[31]   RELATIONSHIP BETWEEN RUNNING LOADS AND SOFT-TISSUE INJURY IN ELITE TEAM SPORT ATHLETES [J].
Gabbett, Tim J. ;
Ullah, Shahid .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2012, 26 (04) :953-960
[32]   Relationship between training load and injury in professional rugby league players [J].
Gabbett, Tim J. ;
Jenkins, David G. .
JOURNAL OF SCIENCE AND MEDICINE IN SPORT, 2011, 14 (03) :204-209
[33]   THE DEVELOPMENT AND APPLICATION OF AN INJURY PREDICTION MODEL FOR NONCONTACT, SOFT-TISSUE INJURIES IN ELITE COLLISION SPORT ATHLETES [J].
Gabbett, Tim J. .
JOURNAL OF STRENGTH AND CONDITIONING RESEARCH, 2010, 24 (10) :2593-2603
[34]   Risk factors for injury in subelite rugby league players [J].
Gabbett, TJ ;
Domrow, N .
AMERICAN JOURNAL OF SPORTS MEDICINE, 2005, 33 (03) :428-434
[35]   Reductions in pre-season training loads reduce training injury rates in rugby league players [J].
Gabbett, TJ .
BRITISH JOURNAL OF SPORTS MEDICINE, 2004, 38 (06) :743-749
[36]   Influence of training and match intensity on injuries in rugby league [J].
Gabbett, TJ .
JOURNAL OF SPORTS SCIENCES, 2004, 22 (05) :409-417
[37]  
Gamble P., 2013, N Z J Sports Med, V40, P34
[38]   Influence of training load on upper respiratory tract infection incidence and antigen-stimulated cytokine production [J].
Gleeson, M. ;
Bishop, N. ;
Oliveira, M. ;
Tauler, P. .
SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS, 2013, 23 (04) :451-457
[39]   Methods for epidemiological study of injuries to professional football players:: developing the UEFA model [J].
Hägglund, M ;
Waldén, M ;
Bahr, R ;
Ekstrand, J .
BRITISH JOURNAL OF SPORTS MEDICINE, 2005, 39 (06) :340-346
[40]   Injuries affect team performance negatively in professional football: an 11-year follow-up of the UEFA Champions League injury study [J].
Hagglund, Martin ;
Walden, Markus ;
Magnusson, Henrik ;
Kristenson, Karolina ;
Bengtsson, Hakan ;
Ekstrand, Jan .
BRITISH JOURNAL OF SPORTS MEDICINE, 2013, 47 (12) :738-742