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Ultrasound Needle Guidance System for Precision Vaccinations and Drug Deliver

机译:用于精密疫苗接种和药物的超声针引导系统

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摘要

Image-guided needles are currently used for drug delivery in bodies, but the additional time associated with aligning and maintaining the needle's position results in increased patient discomfort or risk of invasion of the human body. In this paper, a needle guidance system using piezoelectric materials is designed and analyzed for precise drug delivery without damaging parts of the body and improving processing time. A piezoelectric generates an ultrasound wave that can propagate through different mediums, and a second piezoelectric crystal can receive that energy and convert it into voltage. A 1D-real-time image represents the changes of the voltage induced in the double piezoelectric crystal. Extensive data analysis and visualization are done using different obstacles and location of the needle verified for other mediums. The presence of obstacles in between those crystals can be identified in the real-time grayscale image. The needle can reach its destination using this image information as directional guidance. This guided drug delivery improves patient recovery time and eliminates extra injuries that can be caused due to wrong needle injections, such as lumbar puncture-related nerve damage.
机译:图像引导针目前用于体内的药物递送,但与对齐和保持针头的额外时间相关,导致患者不适或侵袭人体的风险。在本文中,设计并分析了使用压电材料的针引导系统,用于精确药物递送,而不会损坏身体部位并改善处理时间。压电产生超声波,可以通过不同介质传播,第二压电晶体可以接收能量并将其转换为电压。 1D实时图像表示双压电晶体中诱导的电压的变化。使用不同的障碍物和针对其他媒体验证的针的位置进行广泛的数据分析和可视化。可以在实时灰度图像中识别这些晶体之间的障碍物的存在。针可以使用该图像信息作为方向指导来达到其目的地。这种引导的药物递送改善了患者恢复时间,并消除了由于错误的针注射而可能引起的伤害,例如腰椎穿刺相关的神经损伤。

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