Orthopedic Biomechanics Research Laboratory, Department of Orthopedics & Sports Medicine, Houston Methodist Hospital, Houston, TX, USA.
Orthopedic Biomechanics Research Laboratory, Department of Orthopedics & Sports Medicine, Houston Methodist Hospital, Houston, TX, USA.
J Shoulder Elbow Surg. 2023 Jun;32(6):e279-e292. doi: 10.1016/j.jse.2023.02.116. Epub 2023 Mar 17.
Recent evidence indicates that combined upper extremity blood flow restriction (BFR, applied distally to the shoulder) and low-load resistance exercise (LIX) augments clinically meaningful responses in shoulder region tissues proximal to the occlusion site. The purpose of this investigation was to determine the efficacy of BFR-LIX for the shoulder when added to standard offseason training in Division IA collegiate baseball pitchers. We hypothesized that BFR-LIX would augment training-induced increases in shoulder-region lean mass, rotator cuff strength, and endurance. As secondary outcomes, we sought to explore the impact of BFR-LIX rotator cuff training on pitching mechanics.
Twenty-eight collegiate baseball pitchers were randomized into 2 groups (BFR and non-BFR [NOBFR]) that, in conjunction with offseason training, performed 8 weeks of shoulder LIX (Throwing arm only; 2/week, 4 sets [30/15/15/fatigue], 20% isometric max) using 4 exercises (cable external and internal rotation [ER/IR], dumbbell scaption, and side-lying dumbbell ER). The BFR group also trained with an automated tourniquet on the proximal arm (50% occlusion). Regional lean mass (dual-energy x-ray absorptiometry), rotator cuff strength (dynamometry: IR 0 & 90, ° ER 0 & 90, ° Scaption, Flexion), and fastball biomechanics were assessed pre and post-training. Achievable workload (sets × reps × resistance) was also recorded. An ANCOVA (covaried on baseline measures) repeated on training timepoint was used to detect within-group and between-group differences in outcome measures (α = 0.05). For significant pairwise comparisons, effect size (ES) was calculated using a Cohen's d statistic and interpreted as: 0-0.1, negligible; 0.1-0.3, small; 0.3-0.5, moderate; 0.5-0.7, large; >0.7, and very large (VL).
Following training, the BFR group experienced greater increases in shoulder-region lean mass (BFR: ↑ 227 ± 60g, NOBFR: ↑ 75 ± 37g, P = .018, ES = 1.0 VL) and isometric strength for IR 90 ° (↑ 2.4 ± 2.3 kg, P = .041, ES = 0.9VL). The NOBFR group experienced decreased shoulder flexion ↓ 1.6 ± 0.8 kg, P = .007, ES = 1.4VL) and IR at 0 ° ↓ 2.9 ± 1.5 kg, P = .004, ES = 1.1VL). The BFR group had a greater increase in achievable workload for the scaption exercise (BFR: ↑ 190 ± 3.2 kg, NOBFR: ↑ 90 ± 3.3 kg, P = .005, ES = 0.8VL). Only the NOBFR group was observed to experience changes in pitching mechanics following training with increased shoulder external rotation at lead foot contact (↑ 9.0° ± 7.9, P = .028, ES = 0.8VL) as well as reduced forward ↓ 3.6° ± 2.1, P = .001, ES = 1.2VL) and lateral ↓ 4.6° ± 3.4, P = .007, ES = 1.0VL) trunk tilt at ball release.
BFR-LIX rotator cuff training performed in conjunction with a collegiate offseason program augments increases in shoulder lean mass as well as muscular endurance while maintaining rotator cuff strength and possibly pitching mechanics in a manner that may contribute to favorable outcomes and injury prevention in baseball pitching athletes.
最近的证据表明,上肢血流限制(应用于肩部远端)与低负荷阻力训练(LIX)相结合,可以增强肩部区域组织的临床意义上的反应,这些组织位于闭塞部位的近端。本研究的目的是确定在 IA 级大学棒球投手中,在淡季训练中加入 BFR-LIX 对肩部的效果。我们假设 BFR-LIX 会增加肩部区域的瘦体重、肩袖力量和耐力的训练效果。作为次要结果,我们试图探讨 BFR-LIX 肩袖训练对投球力学的影响。
28 名大学棒球投手被随机分为 2 组(BFR 和非 BFR [NOBFR]),与淡季训练一起,进行 8 周的肩部 LIX(仅投掷臂;每周 2 次,4 组[30/15/15/疲劳],20%等长最大),使用 4 种运动(电缆外旋和内旋[ER/IR]、哑铃上举和侧卧位哑铃 ER)。BFR 组还在近端手臂上使用自动止血带(50%闭塞)进行训练。在训练前后评估区域瘦体重(双能 X 射线吸收法)、肩袖力量(测力计:IR 0 和 90°、ER 0 和 90°、上举、屈臂)和快球生物力学。还记录了可实现的工作量(组数×次数×阻力)。使用协方差分析(以基线测量为协变量)对训练时间点进行重复分析,以检测组内和组间差异(α=0.05)。对于显著的两两比较,使用 Cohen's d 统计量计算效应大小(ES),并解释为:0-0.1,微不足道;0.1-0.3,小;0.3-0.5,中等;0.5-0.7,大;>0.7,非常大(VL)。
训练后,BFR 组肩部区域的瘦体重增加(BFR:↑227±60g,NOBFR:↑75±37g,P=0.018,ES=1.0 VL)和等长力量(IR 90°:↑2.4±2.3 kg,P=0.041,ES=0.9VL)增加。NOBFR 组的肩屈(↓1.6±0.8 kg,P=0.007,ES=1.4VL)和 IR 在 0°(↓2.9±1.5 kg,P=0.004,ES=1.1VL)减少。BFR 组在 scaption 运动中实现的工作量增加(BFR:↑190±3.2 kg,NOBFR:↑90±3.3 kg,P=0.005,ES=0.8VL)更大。只有 NOBFR 组在训练后观察到 pitching 力学的变化,包括 lead foot contact 时的肩部外旋增加(↑9.0°±7.9,P=0.028,ES=0.8VL),以及球释放时的前向↓3.6°±2.1,P=0.001,ES=1.2VL)和侧向↓4.6°±3.4,P=0.007,ES=1.0VL)躯干倾斜增加。
在淡季训练中加入 BFR-LIX 肩袖训练可以增强肩部的瘦体重和肌肉耐力,同时保持肩袖力量,并可能以有利于棒球投手运动员的方式影响投球力学,从而预防受伤。