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在逐渐增加外部负荷的深蹲过程中髌股关节运动学的振动关节造影分析。

Vibroarthrographic analysis of patellofemoral joint arthrokinematics during squats with increasing external loads.

作者信息

Ołowiana Ewelina, Selkow Noelle, Laudner Kevin, Puciato Daniel, Bączkowicz Dawid

机构信息

Faculty of Physical Education and Physiotherapy, Opole University of Technology, Prószkowska 76, PL-45-578 Opole, Poland.

Illinois State University, School of Kinesiology and Recreation, Normal, IL USA.

出版信息

BMC Sports Sci Med Rehabil. 2020 Aug 27;12:51. doi: 10.1186/s13102-020-00201-z. eCollection 2020.

Abstract

BACKGROUND

The patellofemoral joint (PFJ) provides extremely low kinetic friction, which results in optimal arthrokinematic motion quality. Previous research showed that these friction-reducing properties may be diminished due to the increase in articular contact forces. However, this phenomenon has not been analyzed in vivo during functional daily-living activities The aim of this study was the vibroarthrographic assessment of changes in PFJ arthrokinematics during squats with variated loads.

METHODS

114 knees from 57 asymptomatic subjects (23 females and 34 males) whose ages ranged from 19 to 26 years were enrolled in this study. Participants were asked to perform 3 trials: 4 repetitions of bodyweight squats (L0), 4 repetitions of 10 kg barbell back loaded squats (L10), 4 repetitions of 20 kg barbell back loaded squats (L20). During the unloaded and loaded (L10, L20) squats, vibroarthrographic signals were collected using an accelerometer placed on the patella and were described by the following parameters: variation of mean square (VMS), mean range (R4), and power spectral density for frequency of 50-250 Hz (P1) and 250-450 Hz (P2).

RESULTS

Obtained results showed that the lowest values were noted in the unloaded condition and that the increased applied loads had a significant concomitant increase in all the aforementioned parameters bilaterally ( < 0.05).

CONCLUSION

This phenomenon indicates that the application of increasing knee loads during squats corresponds to higher intensity of vibroacoustic emission, which might be related to higher contact stress and kinetic friction as well as diminished arthrokinematic motion quality.

摘要

背景

髌股关节(PFJ)的动摩擦系数极低,从而实现了最佳的关节运动学运动质量。先前的研究表明,这些减少摩擦的特性可能会因关节接触力的增加而减弱。然而,这一现象尚未在日常功能活动的体内实验中得到分析。本研究的目的是通过振动关节造影评估不同负荷深蹲过程中髌股关节运动学的变化。

方法

本研究纳入了57名无症状受试者(23名女性和34名男性)的114个膝关节,年龄在19至26岁之间。参与者被要求进行3组试验:4次自重深蹲(L0)、4次10公斤杠铃后负荷深蹲(L10)、4次20公斤杠铃后负荷深蹲(L20)。在无负荷和有负荷(L10、L20)深蹲过程中,使用置于髌骨上的加速度计收集振动关节造影信号,并通过以下参数进行描述:均方变化(VMS)、平均范围(R4)以及50 - 250Hz频率的功率谱密度(P1)和250 - 450Hz频率的功率谱密度(P2)。

结果

所得结果表明,无负荷状态下各参数值最低,且双侧施加负荷增加时,所有上述参数均显著随之增加(<0.05)。

结论

这一现象表明,深蹲过程中膝关节负荷增加与更高强度的振动声发射相对应,这可能与更高的接触应力、动摩擦以及关节运动学运动质量下降有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f3d/7457288/e6982471c33d/13102_2020_201_Fig1_HTML.jpg

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