跳至主要内容
临床试验/NCT02700594
NCT02700594已完成不适用

Effect of Hip Versus Spinal Joint Mobilization on Hip Muscle Strength

NYU Langone Health0 个研究点目标入组 28 人开始时间: 2013年10月最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
28
主要终点
Change in strength from baseline to immediately after intervention (maximum voluntary contraction (MVC) and measured by an electronic hand-held dynamometer)

研究概览

简要总结

Patients with painful knee conditions often present with hip muscle weakness. This weakness can lead to, and perpetuate, knee problems. Diminished strength causes movement impairments that can lead to pathology, functional limitations and disablement. In some cases, this hip muscle weakness is not caused by simple disuse and muscle shrinkage (atrophy). Hip weakness may be caused by an inhibitory mechanism that limits the force output of a muscle. The inhibition is reflexive and is in response to pain or joint dysfunction. Joint mobilization/manipulation can quickly reduce pain and improve joint function, possibly decreasing inhibition and increasing strength. Joint mobilization/manipulation may facilitate strength recovery. By restoring strength sooner, the patient may avoid the deleterious effects of prolonged muscle weakness and achieve quicker or better outcomes.

详细描述

Patients with knee pain often present with hip muscle weakness. Hip muscle weakness can cause faulty hip mechanics that contribute to adverse knee joint kinematics. The gluteus maximus is the largest hip muscle and its primary actions are extension and external rotation of the hip joint. Gluteus muscle weakness was associated with varied knee injuries, including patellofemoral pain syndrome, iliotibial band syndrome and anterior cruciate ligament (ACL) sprains. In 2 systematic reviews that have assessed subjects with anterior knee pain, the authors found strong evidence for impaired hip extensor muscle strength and activation. In a prospective cohort study, weak hip external rotation strength was associated with the development of anterior knee pain and the hip strength further diminished after pain started. There is evidence supporting gluteal muscle strengthening for the management of anterior knee pain. Some authors argue that gluteal muscle weakness may be caused by muscle inhibition and not simple disuse atrophy. This reflexive muscle inhibition is neural-mediated and driven by pain or joint dysfunction. Joint mobilization/manipulation reduces pain and improves joint function and may help maximize strength by reducing inhibition. Yerys et. al. (2002) demonstrated that hip joint mobilization caused an immediate 14% increase gluteus maximus strength and Makofsky (2007) found an immediate 17% increase in gluteus medius strength after hip joint mobilization. Both of these studies, however, used asymptomatic subjects and their results may not translate to symptomatic patients. Chilibeck (2011) found an immediate 14% increase in hip extension strength, and 12% in hip abduction, after lumbar spine thrust joint manipulation. This study also used an asymptomatic sample. In addition, thrust joint manipulation is used less frequently in physical therapy practice compared to nonthrust joint mobilization. The scientific objective for this research is to assess the effect of spine and hip joint mobilization on hip muscle strength in patients with knee pain.

The study aims to answers the following questions:

  1. Does hip joint mobilization immediately improve hip muscle strength in patients with knee pain?
  2. Does spinal joint mobilization immediately improve hip muscle strength in patients with knee pain?
  3. Does hip or spinal joint mobilization create a greater improvement on hip muscle strength in patients with knee pain?

This pilot, prospective clinical trial will use a randomized clinical trial design. The primary dependent variable is isometric muscle strength, measured in pounds, an interval level of measurement. Muscle strength will be determined by the maximum voluntary contraction (MVC) and measured by an electronic hand-held dynamometer. Hand-held dynamometric muscle testing has demonstrated good intrarater reliability and validity when compared to Biodex dynamometry. Although there is no established minimal clinically important change (MCID) score for strength testing, some authors have suggested a 10% change in strength to be clinically significant. Pain will be measured at the ordinal level with the numeric pain rating scale (NRPS). Investigators will recruit subjects from routine clinical practice within the NYULMC-CMC. The outcomes variables (isometric muscle strength and strength) will be measured before and after the intervention at the initial evaluation visit. After these measures are obtained, the participation in the study is complete. There is no follow-up.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Single (Outcomes Assessor)

入排标准

年龄范围
18 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Referred to out-patient physical therapy for evaluation/treatment of a knee condition
  • Agreed to be in the study and signed the informed consent document

排除标准

  • Presence of any medical 'red flags' suggestive of pain that is not of musculoskeletal origin
  • Osteoporosis or recent fracture of the hip or spinal joints
  • Spinal or hip joint surgery or prosthesis
  • Spinal instability (Grade II spondylolithesis or greater), spondyloarthritides, or severe spinal misalignment
  • Nervous system disease or disorder

结局指标

主要结局

Change in strength from baseline to immediately after intervention (maximum voluntary contraction (MVC) and measured by an electronic hand-held dynamometer)

时间窗: 1 Hour

The primary dependent variable is the isometric muscle strength, measured in pounds, an interval level of measurement. Muscle strength will be determined by the maximum voluntary contraction (MVC) and measured by an electronic hand-held dynamometer

次要结局

  • Change in pain from baseline to immediately after intervention (numeric pain rating scale (NRPS)(1 Hour)

研究者

申办方类型
Other
责任方
Sponsor

相似试验