卸力器、髌股关节和膝关节套筒矫形器的功能和效果:综述。

IF 2.2 Q3 ENGINEERING, BIOMEDICAL Regenerative Engineering and Translational Medicine Pub Date : 2024-06-01 Epub Date: 2023-07-28 DOI:10.1007/s40883-023-00313-1
Godwin K Dzidotor, Jeffrey B Moorhead, Chinedu C Ude, Kenneth S Ogueri, Debolina Ghosh, Cato T Laurencin
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引用次数: 0

摘要

背景:膝关节矫形器已被广泛用作改善膝关节缺陷的非手术方法。目前,膝关节炎仍是导致残疾的主要原因,而且这一数字预计还会增加。由于膝关节矫形器的使用情况千差万别,其有效性也不尽相同,这在很大程度上还存在争议。在此,我们将介绍三种最主要的膝关节矫形器--卸载器、髌股关节矫形器和膝关节套筒--的功能和有效性:考虑到迄今为止发表的许多临床研究和实验室记录报告的深度和多样性,本文献综述旨在向临床医生、患者和研究人员介绍用于治疗膝关节炎的常见膝关节矫形器。在此过程中,我们讨论了这些矫形器的设计、生物力学效应、临床疗效以及更广泛的结果、局限性和使用建议:本文讨论的膝关节矫形器专门用于保护膝关节免受可能影响膝关节髌股关节和胫股关节的剧烈压缩负荷。由于膝关节有多个运动轴和关节面,在功能活动中会承受不同的负荷,因此膝关节矫形器的设计在很大程度上会有很大差异。无负重膝关节矫形器旨在降低胫股关节和髌股关节的压力。髌骨矫形器的设计目的是减少髌骨和股四头肌腱的压力,同时稳定髌骨。膝关节套筒旨在稳定运动、减轻关节疼痛并改善整个膝关节的本体感觉:尽管患者经常报告佩戴矫形器的好处,但这些好处尚未得到临床医生和科学研究人员的证实。这三种矫形器的研究结果表明,由于研究人员使用的方法不同,临床疗效仍然难以捉摸。外行人总结:膝关节矫形器又称膝关节支架,通常用于支撑和稳定膝关节。无负重膝关节支架旨在通过改善膝关节骨性关节炎患者的肢体功能障碍和减轻疼痛,为其提供缓解和支持。髌骨股骨护膝旨在帮助患者控制髌骨股骨疼痛综合症。康复压力袖套也称为膝关节袖套,通常用于帮助膝关节疼痛和松弛的患者。关于所讨论的三种膝关节护套的重要研究结果显示出结果上的差异。它们的有效性和有效性还有待了解。
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Functions and Effectiveness of Unloader, Patellofemoral, and Knee Sleeve Orthoses: A Review.

Background: Knee orthoses have been extensively used as a nonsurgical approach to improving knee deficiencies. Currently, arthritic knee conditions remain the leading cause of disability, and this number is expected to increase. As the use of knee orthoses varies widely, so has their effectiveness which is still largely debatable. Here, we present the functions and effectiveness of the three most prominent knee orthotic models dedicated to supporting knee osteoarthritis-unloader, patellofemoral, and knee sleeves.

Purpose/research question: Considering the depth and diversity of the many clinical studies and documented laboratory reports published to date, this literature review was created to educate the clinician, patient, and researcher on common knee orthoses used for the management of arthritic knee conditions. In doing so, we discuss their design, biomechanical effects, and clinical efficacy, as well as broader outcomes, limitations, and recommendations for use.

Results/synthesis: The knee orthoses discussed within the scope of this paper are dedicated to protecting the knee against strenuous compressive loads that may affect the patellofemoral and tibiofemoral joints of the knee. Since the knee has multiple axes of motion and articulating surfaces that experience different loads during functional activities, it can be implied that, to a large extent, knee brace designs can differ drastically. Unloader knee orthoses are designed to decrease tibiofemoral and patellofemoral joint pressures. Patellofemoral knee orthoses are designed to decrease strain on the patellofemoral and quadriceps tendons while stabilizing the patella. Knee sleeves are designed to stabilize movements, reduce pain in joints, and improve proprioception across the knee joint.

Conclusion: Although patients often report benefits from wearing braces, these benefits have not been confirmed by clinicians and scientific investigators. Results from these three orthosis types show that clinical efficacy is still elusive due to the different methodologies used by researchers.

Layman summary: Knee orthoses also referred to as knee brace are commonly used for support and stability of the knee. Unloader knee braces are designed to relieve and support those suffering from knee osteoarthritis by improving physical impairment and reducing pain. Patellofemoral knee braces aim to help patients manage patellofemoral pain syndrome. Rehabilitative compression sleeves, also known as knee sleeves, are often used to assist patients suffering from knee pain and laxity. Important findings on the three knee braces discussed show discrepancies in results. Their effectiveness and validity are yet to be understood.

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来源期刊
CiteScore
4.90
自引率
11.50%
发文量
41
期刊介绍: Regenerative Engineering is an international journal covering convergence of the disciplines of tissue engineering, advanced materials science, stem cell research, the physical sciences, and areas of developmental biology. This convergence brings exciting opportunities to translate bench-top research into bedside methods, allowing the possibility of moving beyond maintaining or repairing tissues to regenerating them. The journal encourages both top-down engineering approaches and bottom-up strategies integrating materials science with stem cell research and developmental biology. Convergence papers on instructive biomaterials, stimuli-responsive biomaterials, micro- and nano-patterning for regenerative engineering, elastomeric biomaterials, hydrogels for tissue engineering, and rapid prototyping and bioprinting approaches are particularly welcome. The journal provides a premier, single-blind peer-reviewed forum for the publication of original papers, authoritative reviews, rapid communications, news and views, and opinion papers addressing the most important issues and efforts toward successfully regenerating complex human tissues and organs. All research articles feature a lay abstract highlighting the relevance and future impact for patients, government and other health officials, and members of the general public. Bridging the gap between the lab and the clinic, the journal also serves as a dedicated platform for showcasing translational research that brings basic scientific research and discoveries into clinical methods and therapies, contributing to the improvement of human health care. Topics covered in Regenerative Engineering and Translational Medicine include: Advanced materials science for regenerative and biomedical applicationsStem cells for tissue regenerationDrug delivery for tissue regenerationNanomaterials and nanobiotechnology for tissue regenerationStudies combining tissue engineering/regeneration with developmental biologyConvergence research in pre-clinical and clinical phases
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