University of Ferrara, Via Vigne 4, 44121, Ferrara, Italy.
IRCCS Foundation "San Matteo" Hospital, University of Pavia, 27100, Pavia, Italy.
Int Orthop. 2019 Mar;43(3):539-551. doi: 10.1007/s00264-018-4274-3. Epub 2019 Jan 15.
Biophysical stimulation is a non-invasive therapy used in orthopaedic practice to increase and enhance reparative and anabolic activities of tissue.
A sistematic web-based search for papers was conducted using the following titles: (1) pulsed electromagnetic field (PEMF), capacitively coupled electrical field (CCEF), low intensity pulsed ultrasound system (LIPUS) and biophysical stimulation; (2) bone cells, bone tissue, fracture, non-union, prosthesis and vertebral fracture; and (3) chondrocyte, synoviocytes, joint chondroprotection, arthroscopy and knee arthroplasty.
Pre-clinical studies have shown that the site of interaction of biophysical stimuli is the cell membrane. Its effect on bone tissue is to increase proliferation, synthesis and release of growth factors. On articular cells, it creates a strong A and A adenosine-agonist effect inducing an anti-inflammatory and chondroprotective result. In treated animals, it has been shown that the mineralisation rate of newly formed bone is almost doubled, the progression of the osteoarthritic cartilage degeneration is inhibited and quality of cartilage is preserved. Biophysical stimulation has been used in the clinical setting to promote the healing of fractures and non-unions. It has been successfully used on joint pathologies for its beneficial effect on improving function in early OA and after knee surgery to limit the inflammation of periarticular tissues.
The pooled result of the studies in this review revealed the efficacy of biophysical stimulation for bone healing and joint chondroprotection based on proven methodological quality.
The orthopaedic community has played a central role in the development and understanding of the importance of the physical stimuli. Biophysical stimulation requires care and precision in use if it is to ensure the success expected of it by physicians and patients.
生物物理刺激是一种非侵入性治疗方法,用于骨科实践中,以增加和增强组织的修复和合成代谢活动。
使用以下标题进行了系统的基于网络的文献搜索:(1)脉冲电磁场(PEMF)、电容耦合电场(CCEF)、低强度脉冲超声系统(LIPUS)和生物物理刺激;(2)骨细胞、骨组织、骨折、骨不连、假体和椎体骨折;(3)软骨细胞、滑膜细胞、关节软骨保护、关节镜检查和膝关节置换术。
临床前研究表明,生物物理刺激的相互作用部位是细胞膜。它对骨组织的作用是增加生长因子的增殖、合成和释放。在关节细胞上,它会产生强烈的 A 和 A 腺苷激动剂效应,从而产生抗炎和软骨保护作用。在接受治疗的动物中,已表明新形成骨的矿化率几乎增加了一倍,抑制了骨关节炎软骨退化的进展,并保留了软骨的质量。生物物理刺激已在临床环境中用于促进骨折和骨不连的愈合。它已成功用于关节病变,因为它对改善早期 OA 和膝关节手术后关节周围组织炎症具有有益作用。
本综述中研究的综合结果显示,生物物理刺激在骨愈合和关节软骨保护方面具有疗效,这基于已证明的方法学质量。
骨科界在开发和理解物理刺激的重要性方面发挥了核心作用。如果要确保医生和患者所期望的成功,生物物理刺激需要谨慎和精确地使用。