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临床试验/NCT07297758
NCT07297758招募中不适用

Investigation of Latissimus Dorsi Muscle Activation During Shoulder Extension Exercises

Hacettepe University1 个研究点 分布在 1 个国家目标入组 30 人开始时间: 2025年10月14日最近更新:

试验速览

阶段
不适用
状态
招募中
入组人数
30
试验地点
1
主要终点
Electromyography

研究概览

简要总结

This observational, cross-sectional laboratory study at Hacettepe University will examine surface EMG activation of the latissimus dorsi during resisted, dynamic shoulder extension performed at three shoulder flexion angles (30°,60°, 90°, 120°). The primary objective is to quantify latissimus dorsi activation and to determine how elevation angle influences activation; secondary analyses compare synergists.

详细描述

During shoulder abduction or flexion, narrowing of the subacromial space can lead to subacromial pain syndrome. Weakness or poor coordination of the scapulothoracic and scapulohumeral muscles is among the main causes of subacromial narrowing in individuals with symptomatic rotator cuff tendinopathy. More specifically, insufficient scapular upward rotation and posterior tilt, together with an inadequate ability of the rotator cuff to counter the deltoid's superior pull on the humeral head, may cause impingement of the subacromial soft tissues during overhead dynamic tasks. In young, healthy shoulders, the cranially directed forces that occur during abduction are balanced by co-contraction of the rotator cuff, which prevents superior translation of the humeral head and protects subacromial tissues. When this stabilizing role of the rotator cuff diminishes, the deltoid attempts to compensate; however, this compensation produces a more cranially oriented force, increasing superior migration of the humeral head and the likelihood of subacromial pain.

The latissimus dorsi (LD) originates from the spinous processes of the lower thoracic vertebrae, the thoracolumbar fascia, and the iliac crest, and-together with the teres major-attaches to the medial lip of the intertubercular groove of the humerus. It contributes to shoulder adduction, internal rotation, and extension, and is an important muscle directly linking the upper limb to the trunk. In addition to the rotator cuff, the glenohumeral adductors (pectoralis major and latissimus dorsi) also help limit superior translation of the humeral head; owing to the medio-inferior direction of their tendon force vectors, they act as humeral head depressors. Osteokinematically, the LD can pull the humeral head inferiorly over the glenoid fossa, potentially helping to prevent subacromial impingement.

Various exercises have been recommended for LD rehabilitation, and surface electromyography (sEMG) studies have examined LD activity during movements such as pulldown and pullover. Numerous studies have also sought to determine maximal voluntary isometric contraction (MVIC) of the LD. Prior EMG research indicates that the highest LD MVIC levels are obtained during maximal isometric shoulder extension. A recent study using both surface and fine-wire electrodes also recorded higher LD activation during shoulder extension compared with trunk tasks. Although shoulder extension exercises are widely used at different elevation angles in clinical practice, the effects of performing extension at different angles-particularly on LD activation-have not been clearly delineated. Despite various recommendations for LD rehabilitation, it remains unclear whether different implementations produce different activation profiles, and LD activation during dynamic application of this exercise has not yet been investigated. Therefore, it is important to examine how the highest LD activity obtained during maximal isometric shoulder extension changes when the exercise is performed dynamically. Defining the LD activation profile in dynamic exercise may inform appropriate exercise selection in clinical rehabilitation and help reduce the risk of subacromial impingement.

Aim. To address this gap by examining the level of LD activation during dynamic shoulder extension relative to the reference activity determined by maximal isometric shoulder extension. The study has two specific aims: (1) to determine the EMG activation level of the latissimus dorsi during a shoulder extension exercise, and (2) to investigate the effects of performing shoulder extension at different elevation angles on latissimus dorsi activation.

研究设计

研究类型
Observational
观察模型
Other
时间视角
Cross Sectional

入排标准

年龄范围
18 Years 至 40 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Age between 18 and 40,
  • No restriction of the glenohumeral joint,
  • No complaints related to the shoulder, cervical, or lumbar region in the last 6 months,
  • No systemic or neurological disease,
  • Agreeing to participate in the study,
  • A Tegner Activity Score of 5 or higher,

排除标准

  • A body mass index greater than 25 kg/m2

结局指标

主要结局

Electromyography

时间窗: Baseline (Day 1)

Muscle activation will be assessed with an 8-channel surface EMG system (TeleMyo DTS, Noraxon). Following SENIAM, bipolar Ag/AgCl electrodes (2 cm inter-electrode distance) will be placed over medial and lateral latissimus dorsi, teres major, infraspinatus, posterior deltoid, and triceps brachii, secured with double-sided tape. Before exercise, MVICs will be obtained on the dominant arm by the same assessor (3 × 5 s with 30 s between trials and 2 min between muscles) using standardized, literature-based positions with verbal encouragement.The exercise protocol will consist of elastic-band resisted shoulder extension performed for three repetitions (3 s concentric-3 s isometric-3 s eccentric) with 5 s between repetitions and 2 min rest between conditions, while EMG from all target muscles is recorded and timing is controlled by a metronome.

次要结局

  • Activity Level(Baseline (Day 1))

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Irem Duzgun

Professor, Department of Physiotherapy and Rehabilitation

Hacettepe University

研究点 (1)

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