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首页> 外文期刊>Bioelectromagnetics. >Comparison of the Effects of Pulsed Electromagnetic Field and Extracorporeal Shockwave Therapy in a Rabbit Model of Experimentally Induced Achilles Tendon Injury
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Comparison of the Effects of Pulsed Electromagnetic Field and Extracorporeal Shockwave Therapy in a Rabbit Model of Experimentally Induced Achilles Tendon Injury

机译:脉冲电磁场和体外冲击疗法在实验诱导的阿基里斯肌腱损伤兔模型中的影响比较

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摘要

Achilles tendon injuries are a common cause of complications including adhesions and tendon degeneration. As a result of these complications, the biomechanical properties are lost. Extracorporeal shockwave therapy (ESWT) and pulsed electromagnetic field (PEMF) recover the injured tendon structure; however, detailed studies of changes in tendon biomechanical properties are limited. We hypothesized that PEMF application would improve Achilles tendon biomechanical properties similar to ESWT. The curative effects of a PEMF 4-week application (15 Hz, 1 mT, 260 mu s, 1 h/day) and ESWT (3 doses/28 days, 1st dose: 0.12 mJ/mm(2), 15 Hz, 300 impulses; 2nd dose: 0.14 mJ/mm(2), 15 Hz, 500 impulses; 3rd dose: 0.14 mJ/mm(2), 15 Hz, 500 impulses) on rabbits with Achilles tendon injury were investigated in terms of histopathological and biomechanical properties. The clinical feasibility of PEMF application was evaluated by comparing the results of both methods. Fifty New Zealand female rabbits were divided into two groups to be used in either biomechanical or immunohistochemical studies. Each of the two groups was further divided into five groups: C (Control), SH (Sham), TI (tendon injury), TI + ESWT, and TI + PEMF. Biomechanical evaluations revealed that maximum load, toughness, and maximum stress averages of the TI + PEMF group significantly increased (P < 0.05). When immunohistochemical images of the TI + PEMF group were compared with those of the TI group, the amount of fibrous tissue was less, the homogeneity of collagen fibers recovered, and collagen organization was more uniform. We conclude that both ESWT and PEMF are equally efficient for Achilles tendon recovery. PEMF application is effective and can be used in the clinic as a painless alternative treatment method. (c) 2020 Bioelectromagnetics Society
机译:阿基里斯肌腱伤害是并发症的常见原因,包括粘连和肌腱变性。由于这些并发症,生物力学性质丢失。体外冲击波治疗(ESWT)和脉冲电磁场​​(PEMF)恢复受伤的肌腱结构;然而,对肌腱生物力学性质的变化的详细研究受到限制。我们假设PEMF申请将改善与ESWT类似的Achilles肌腱生物力学性质。 PEMF 4周施用的疗效(15Hz,1 mt,260亩,1 h /天)和ESWT(3剂/ 28天,第1剂:0.12mJ / mm(2),15 Hz,300脉冲;第二剂量:0.14mJ / mm(2),15Hz,500次脉冲;第3剂:在组织病理学和生物力学方面研究了患有阿基里斯肌腱损伤的兔子的0.14mJ / mm(2),15Hz,500脉冲)特性。通过比较两种方法的结果来评估PEMF应用的临床可行性。五十个新西兰女性兔子分为两组,可用于生物力学或免疫组化研究。两组中的每一个进一步分为五组:C(对照),SH(假),Ti(肌腱损伤),Ti + ESWT和Ti + PEMF。生物力学评估显示,Ti + PEMF组的最大载荷,韧性和最大应力平均值显着增加(P <0.05)。当与Ti组的Ti + PEMF组的免疫组化图像与Ti组进行比较时,纤维组织的量较少,胶原纤维恢复的均匀性,胶原蛋白组织更均匀。我们得出结论,ESWT和PEMF都对Achilles肌腱恢复同样有效。 PEMF应用是有效的,可用于临床中作为无痛的替代治疗方法。 (c)2020生物电磁学会

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