Huang Qiang-Min, Lv Jiao-Jiao, Ruanshi Qiong-Mei, Liu Lin
Department of Sport Medicine and the Center of Rehabilitation, School of Sport Science, Shanghai University of Sport, Shanghai, China.
Acupunct Med. 2015 Aug;33(4):319-24. doi: 10.1136/acupmed-2014-010666. Epub 2015 May 13.
Spontaneous electrical activity (SEA) is a feature of myofascial trigger points (MTrPs), which can either be latent or active. However, SEA at different stages of recovery from MTrPs remains unclear.
To investigate the temporal changes in the nature of SEA after generation of MTrPs in a rat model.
32 rats were divided into four groups: 24 rats were assigned to experimental groups (EGs), which underwent the MTrP modelling intervention and 8 were allocated to a control group (CG). All EG rats received a blunt strike to the left vastus medialis combined with eccentric exercise for 8 weeks. After modelling, the EG rats were subdivided into three groups with total recovery times of 4, 8 and 12 weeks (EG-4w, EG-8w and EG-12w, respectively). Taut bands (TBs) with and without the presence of active MTrPs were identified in the left hind limb muscles of all rats, verified by SEA and further examined with electromyography recordings. Myoelectrical signals were also categorised into one of five types.
CG rats had fewer TBs than EG rats and EGs showed variable frequencies of SEA. SEA frequencies were higher in EG-4w than in EG-8w and EG-12w groups (240.57±72.9 vs 168.14±64.5 and 151.63±65.4, respectively, p<0.05) and were significantly greater in all EGs than in the CG (55.75±21.9). Relative to CG rats, amplitudes and durations of electrical potentials in the EG were only increased in the EG-8w and EG-12w groups. Types IV and V myoelectrical signals were never seen in latent MTrPs and type V signals did not occur in EG-4w rats.
Increasing recovery periods following a MTrP modelling intervention in rats are characterised by different frequencies and amplitudes of SEA from TBs.
自发电活动(SEA)是肌筋膜触发点(MTrP)的一个特征,MTrP可分为潜伏性和活动性两种。然而,MTrP恢复不同阶段的SEA情况仍不清楚。
在大鼠模型中研究MTrP产生后SEA性质的时间变化。
32只大鼠分为四组:24只大鼠被分配到实验组(EGs),接受MTrP建模干预,8只被分配到对照组(CG)。所有EG组大鼠均接受对左侧股内侧肌的钝击并结合离心运动,持续8周。建模后,EG组大鼠再细分为三组,总恢复时间分别为4周、8周和12周(分别为EG - 4w、EG - 8w和EG - 12w)。在所有大鼠的左后肢肌肉中识别有无活动性MTrP的紧张带(TBs),通过SEA进行验证,并进一步用电肌图记录进行检查。肌电信号也被分为五种类型之一。
CG组大鼠的TBs比EG组少,且EG组显示出不同频率的SEA。EG - 4w组的SEA频率高于EG - 8w组和EG - 12w组(分别为240.57±72.9对168.14±64.5和151.63±65.4,p<0.05),且所有EG组的SEA频率均显著高于CG组(55.75±21.9)。相对于CG组大鼠,EG组中电位的幅度和持续时间仅在EG - 8w组和EG - 12w组中增加。IV型和V型肌电信号在潜伏性MTrP中从未出现,V型信号在EG - 4w组大鼠中未出现。
大鼠MTrP建模干预后恢复时间的增加,其特征是来自TBs的SEA频率和幅度不同。
2014012。