首页> 外文会议>International Conference and Exhibition on Integration Issues of Miniaturized Systems >The 'Smart' Needle - A Needle Integrated with an Impedance Sensor for Objective Nerve Localisation during Ultrasound Guided Peripheral Nerve Block
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The 'Smart' Needle - A Needle Integrated with an Impedance Sensor for Objective Nerve Localisation during Ultrasound Guided Peripheral Nerve Block

机译:“智能”针 - 针对在超声引导外周神经块期间具有用于目标神经定位的阻抗传感器的针

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As the world of smart technology advances, insensate objects are being transformed to smart devices by the application of sensors. Our research focuses on applying an impedance sensor to a hypodermic needle to create a smart needle. This novel device will use bioimpedance to determine needle-to-nerve proximity for application in ultrasound guided peripheral nerve block (USgPNB) procedures. Bioimpedance data from the needle tip will allow for real-time tissue identification and will provide the user with accurate information to interpret the exact needle tip location. For anaesthetists this valuable information will prevent harm. Introduction of this new technology to USgPNB will increase associated safety, efficacy and training capacity thereby increasing the use of USgPNB. For selected surgeries, USgPNG is a safer and more time effective alternative to general anaesthesia. The impedance sensor on the smart needle is a miniaturised two electrode set-up. A prototype smart needle, with electrodes directly integrated onto a commercially available needle, has been fabricated and characterisation is underway. Impedance values for different substances including saline solutions and different tissue types in meat will be presented to demonstrate that bioimpedance can be used to identify tissue type at the needle tip. The addition of 'smart' needle technology to USgPNB may provide a solution to a currently unmet clinical need.
机译:随着智能技术的进步世界,通过应用传感器,在智能设备上被转换为智能设备。我们的研究侧重于将阻抗传感器应用于皮下注射针来制造智能针头。这种新颖的装置将使用生物阻抗来确定在超声引导外周神经块(USGPNB)程序中应用的针对神经邻近。来自针尖的生物敏捷数据将允许实时组织识别,并将用户提供准确的信息来解释精确的针尖位置。对于麻醉师来说,这种有价值的信息将防止伤害。将这项新技术引入USGPNB将提高相关的安全性,有效性和培训能力,从而增加USGPNB的使用。对于选定的手术,USGPNG是一般麻醉的更安全且更多的时间有效替代。智能针上的阻抗传感器是小型化的两个电极设置。具有直接集成在市售针上的电极的原型智能针,已经制造和表征正在进行中。将提出包括盐溶液和不同组织类型的不同物质的阻抗值,以证明生物阻抗可用于识别针尖处的组织类型。向USGPNB添加“智能”针技术可以提供目前未满足的临床需求的解决方案。

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