首页> 外文会议>IEEE International Conference on Robotics and Automation;ICRA '09 >Development of pressure-driven micro active catheter using membrane micro emboss following excimer laser ablation (MeME-X) process
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Development of pressure-driven micro active catheter using membrane micro emboss following excimer laser ablation (MeME-X) process

机译:在准分子激光烧蚀(MeME-X)工艺之后使用膜微压纹开发压力驱动的微型主动导管

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The world''s smallest micro active catheter of φ∼300µm was successfully fabricated using membrane micro emboss following excimer laser ablation (MeME-X) process. The catheter has a one-sided hollow bellows at the tip made of thin polymer membrane. The bellows is composed of a series of folded micro-chambers and microchannels connecting the micro-chambers. The folded-chambers expand on one side by increasing inner water pressure using a syringe, thus the whole bellows bends toward one direction within 0 to 180 degree. This micro active catheter should be useful for safe intravascular surgery in narrow and complicated blood vessels. Moreover, the nonelectrical actuation mechanism of this catheter can be widely applied to micro-actuators and micro-robots which need high safety.
机译:在受激准分子激光烧蚀(MeME-X)工艺的作用下,使用膜微压纹成功制造了世界上最小的φ〜300μm微型有源导管。导管的尖端有一层薄的聚合物膜制成的中空波纹管。波纹管由一系列折叠的微腔和连接微腔的微通道组成。折叠腔室通过使用注射器增加内部水压而在一侧膨胀,因此,整个波纹管在0到180度内朝一个方向弯曲。这种微型主动导管应可用于狭窄和复杂血管中的安全血管内手术。此外,该导管的非电致动机构可以广泛应用于需要高安全性的微致动器和微型机器人。

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