首页> 外文期刊>European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society >Contactless treatment for scoliosis by electromagnetically controlled shape-memory alloy rods: a preliminary study in rabbits
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Contactless treatment for scoliosis by electromagnetically controlled shape-memory alloy rods: a preliminary study in rabbits

机译:电磁控制形状记忆合金棒的循环镜的非接触式处理:兔初步研究

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Purpose To evaluate the safety and efficacy of a system aiming to correct scoliosis called "electromagnetically controlled shape-memory alloy rods" (EC-SMAR) used in a rabbit model. Methods We heat-treated shape-memory alloy (SMA) rods to achieve a transition temperature between 34 and 47 degrees C and a C-shape austenite phase. We then developed a water-cooled generator capable of generating an alternating magnetic field (100 kHz) for induction heating. We next studied the efficacy of this system in vitro and determined some parameters prior to proceeding with animal experiments. We then employed a rabbit model, in which we fixed a straight rod along the spinous processes intraoperatively, and conducted induction heating postoperatively every 4 days for 1 month, while performing periodic X-ray assessments. Results Significant kyphotic deformations with Cobb angles of about 45 degrees (p < 0.01) were created in five rabbits, and no complications occurred throughout the experiment. The rabbits are still very much alive and do not show any signs of discomfort. Conclusions This is the first system that can modulate spinal deformation in a gradual, contactless, noninvasive manner through electromagnetic induction heating applied to SMA alloy rods. Although this study dealt with healthy spines, it provides promising evidence that this device also has the capacity to correct human kyphosis and even scoliosis in the future.
机译:目的是评估旨在纠正兔模型中使用的“电磁控制形状记忆合金棒”(EC-Smar)的脊柱侧凸的安全性和功效。方法采用热处理形状记忆合金(SMA)杆,实现34至47℃的过渡温度和C形奥氏体相。然后,我们开发了一种水冷发电机,其能够产生用于感应加热的交替磁场(100kHz)。我们接下来研究了该系统在体外的功效,并在进行动物实验之前确定了一些参数。然后我们采用兔模型,其中我们术中沿着棘突固定了一根直杆,每4天术后每4天进行感应加热,同时进行周期性X射线评估。结果具有约45度的Cobb角度(P <0.01)的显着性变形,在五只兔子中产生,并且在整个实验中没有发生任何并发症。兔子仍然非常活跃,并没有显示任何不适的迹象。结论这是第一系统,可以通过施加到SMA合金棒的电磁感应加热来调节曲率,非接触式的非侵入性方式的脊柱变形。虽然这项研究涉及健康的刺,但它提供了有希望的证据表明该装置还具有纠正未来人类脊骨菌甚至脊柱侧凸的能力。

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