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Water jet actuation for ultra-low cost endoscopy: Characterization of miniature nozzles fabricated by rapid prototyping

机译:用于超低成本内窥镜检查的水射流驱动:快速原型制造的微型喷嘴的特征

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Gastric cancer is the second leading cause of cancer death worldwide, accounting for over 10% of incidence cancers. Screening programs have been shown to be effective in reducing the mortality rate through early detection; however, many factors hinder the widespread implementation of these programs in low resource settings due to their high capital cost (associated mainly with cable driven units), limited portability, and reprocessing/contamination concerns. The Hydrojet endoscopic platform was developed as a low-cost alternative for gastric cancer screening in low-income countries. The capsule, completely made of bio-compatible plastic through rapid prototyping, uses pressurized water ejected from miniature nozzles to inspect the stomach. In order to achieve full controllability of the system inside the stomach, force characterization of the water jet actuators is needed. This work aimed to: i) characterize the relationship between thrust (with changes in outer diameter) and flow rate of miniature nozzles fabricated by rapid prototyping and ii) estimate the error due to the fabrication process. Results show that the experimental reaction thrust has a comparable trend to the analytical model hence a shape coefficient can be calculated and the actual thrust estimated at each point. Experimental results show the error due to rapid prototyping to be linear, thereby allowing for algorithmic compensation.
机译:胃癌是全世界癌症死亡的第二个主要原因,占10%的发病癌症。已显示筛选计划通过早期检测降低死亡率;然而,由于其高资本成本(主要与电缆驱动单元相关联),有限的便携性和再加工/污染问题,许多因素阻碍了这些计划的广泛实施这些计划。液压射频内窥镜平台被开发为低收入国家胃癌筛查的低成本替代品。通过快速原型制成的胶囊完全由生物兼容的塑料制成,使用从微型喷嘴喷射的加压水检查胃。为了实现胃内系统的完全可控性,需要水射流执行器的力表征。这项工作旨在:i)表征推力(外径变化)与通过快速原型制造的微型喷嘴的流速和通过快速原型制造的流速和II)估计由于制造过程引起的误差。结果表明,实验反应推力具有与分析模型的相当趋势,因此可以计算形状系数并在每个点处估计的实际推力。实验结果表明,由于快速原型为线性而导致的错误,从而允许算法补偿。

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