Foley Jessica L, Little James W, Starr Frank L, Frantz Carie, Vaezy Shahram
Department of Bioengineering, University of Washington, Seattle, WA, USA.
Ultrasound Med Biol. 2004 Sep;30(9):1199-207. doi: 10.1016/j.ultrasmedbio.2004.07.004.
Spasticity, a major complication of central nervous system disorders, signified by uncontrollable muscle contractions, is very difficult to treat effectively. We report on the use of ultrasound (US) image-guided high-intensity focused US (HIFU) to target and suppress the function of the sciatic nerve complex of rabbits in vivo, as a possible treatment of spasticity. The image-guided HIFU device included a 3.2-MHz spherically curved transducer and an intraoperative imaging probe. A focal acoustic intensity of 1480 to 1850 W/cm(2), applied using a scanning method, was effective in achieving complete conduction block in 100% of 22 nerve complexes with HIFU treatment times of 36 +/- 14 s (mean +/- SD). Gross examination showed blanching of the nerve at the HIFU treatment site and lesion volumes of 2.8 +/- 1.4 cm(3) encompassing the nerve complex. Histologic examination indicated axonal demyelination and necrosis of Schwann cells as probable mechanisms of nerve block. With accurate localization and targeting of peripheral nerves using US imaging, HIFU could become a promising tool for the suppression of spasticity.
痉挛是中枢神经系统疾病的主要并发症,表现为无法控制的肌肉收缩,很难得到有效治疗。我们报告了利用超声(US)图像引导的高强度聚焦超声(HIFU)在体内靶向并抑制兔坐骨神经复合体的功能,作为治疗痉挛的一种可能方法。图像引导的HIFU设备包括一个3.2兆赫兹的球形弯曲换能器和一个术中成像探头。使用扫描方法施加1480至1850瓦/平方厘米的聚焦声强,在22个神经复合体中,100%实现完全传导阻滞有效,HIFU治疗时间为36±14秒(平均值±标准差)。大体检查显示HIFU治疗部位的神经变白,神经复合体周围的病变体积为2.8±1.4立方厘米。组织学检查表明轴突脱髓鞘和施万细胞坏死可能是神经阻滞的机制。通过超声成像对外周神经进行准确定位和靶向,HIFU可能成为抑制痉挛的一种有前景的工具。