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物理力在骨愈合中的应用。

Use of physical forces in bone healing.

作者信息

Nelson Fred R T, Brighton Carl T, Ryaby James, Simon Bruce J, Nielson Jason H, Lorich Dean G, Bolander Mark, Seelig John

机构信息

Henry Ford Hospital, Detroit, MI, USA.

出版信息

J Am Acad Orthop Surg. 2003 Sep-Oct;11(5):344-54. doi: 10.5435/00124635-200309000-00007.

Abstract

During the past two decades, a number of physical modalities have been approved for the management of nonunions and delayed unions. Implantable direct current stimulation is effective in managing established nonunions of the extremities and as an adjuvant in achieving spinal fusion. Pulsed electromagnetic fields and capacitive coupling induce fields through the soft tissue, resulting in low-magnitude voltage and currents at the fracture site. Pulsed electromagnetic fields may be as effective as surgery in managing extremity nonunions. Capacitive coupling appears to be effective both in extremity nonunions and lumbar fusions. Low-intensity ultrasound has been used to speed normal fracture healing and manage delayed unions. It has recently been approved for the management of nonunions. Despite the different mechanisms for stimulating bone healing, all signals result in increased intracellular calcium, thereby leading to bone formation.

摘要

在过去二十年中,多种物理治疗方法已被批准用于治疗骨不连和延迟愈合。植入式直流电刺激在治疗已形成的四肢骨不连以及作为实现脊柱融合的辅助手段方面是有效的。脉冲电磁场和电容耦合通过软组织感应电场,在骨折部位产生低幅值的电压和电流。脉冲电磁场在治疗四肢骨不连方面可能与手术效果相当。电容耦合在四肢骨不连和腰椎融合方面似乎都有效。低强度超声已被用于加速正常骨折愈合和治疗延迟愈合。它最近已被批准用于治疗骨不连。尽管刺激骨愈合的机制不同,但所有信号都会导致细胞内钙增加,从而促进骨形成。

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