首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >Durotomy Surrogate and Seals for Intradural Spinal Cord Stimulators: Apparatus and Review of Clinical Methods and Materials
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Durotomy Surrogate and Seals for Intradural Spinal Cord Stimulators: Apparatus and Review of Clinical Methods and Materials

机译:内部脊髓刺激器的杜托米替代和密封:临床方法和材料的仪表和审查

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Introduction We are developing a novel intradural spinal cord stimulator for treatment of neuropathic pain and spasticity. A key feature is the means by which it seals the dura mater to prevent leakage of cerebrospinal fluid (CSF). We have built and employed a test rig that enables evaluation of candidate seal materials. Methods To guide the design of the test rig, we reviewed the literature on neurosurgical durotomies. The test rig has a mock durotomy slot with a dural substitute serving as the surrogate dura mater and water as the CSF. The primary experimental goal was to evaluate the effectiveness of candidate gasket materials as seals against CSF leakage in an implanted prototype device, at both normal and super‐physiologic pressures. A secondary goal was to measure the transmembrane flows in a representative dural substitute material, to establish its baseline aqueous transport properties. Results The seals prevented leakage of water at the implantation site over periods of ≈ ten days, long enough for the scar tissue to form in the clinical situation. The seals also held at water pressure transients approaching 250 mm Hg. The residual volumetric flux of water through the dura substitute membrane (Durepair?) was δV T / A ≈ 0.24 mm 3 /min/cm 2 , consistent with expectations for transport through the porous membrane prior to closure and equalization of internal/external pressures. Conclusions We have demonstrated the workability of obtaining robust seal against leakage at the implantation site of a novel intradural stimulator using a custom‐designed test rig. Extension of the method to in vivo testing in a large animal model will be the next step.
机译:介绍我们正在开发一种新型内部脊髓刺激器,用于治疗神经性疼痛和痉挛。关键特征是其密封Dura Mater以防止脑脊液(CSF)泄漏的方法。我们已经建造并采用了一个测试钻机,使得能够评估候选密封材料。指导试验台设计的方法,我们审查了神经外科杜膜膜的文献。试验台有一个模拟的杜伦蒂槽,具有硬盘替代品,用作CSF的替代硬母和水。主要的实验目标是评估候选垫片材料的有效性作为对植入式原型装置中的CSF泄漏的密封件,在正常和超生理压力下。二级目标是测量代表性多云替代材料中的跨膜流动,以建立其基线水性运输性能。结果密封件在≈10天内,在植入部位泄漏了植入部位,足够长的瘢痕组织在临床情况下形成。密封件也保持在水压瞬变接近250mm Hg。通过Dura替代膜(Durepairα)的水的残余体积通量(Durepair?)是ΔVt/a≈0.24mm3 / min / cm 2,与在闭合和均衡的内/外压之前通过多孔膜运输的期望一致。结论我们已经展示了使用定制设计的试验机的新型内部刺激器的植入部位获得耐漏泄漏的可加工性。在大型动物模型中延伸到体内测试将是下一步。

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