首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Handheld Real-Time LED-Based Photoacoustic and Ultrasound Imaging System for Accurate Visualization of Clinical Metal Needles and Superficial Vasculature to Guide Minimally Invasive Procedures
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Handheld Real-Time LED-Based Photoacoustic and Ultrasound Imaging System for Accurate Visualization of Clinical Metal Needles and Superficial Vasculature to Guide Minimally Invasive Procedures

机译:基于手持式实时LED的光声和超声成像系统可精确可视化临床金属针和浅层血管以指导微创手术

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摘要

Ultrasound imaging is widely used to guide minimally invasive procedures, but the visualization of the invasive medical device and the procedure’s target is often challenging. Photoacoustic imaging has shown great promise for guiding minimally invasive procedures, but clinical translation of this technology has often been limited by bulky and expensive excitation sources. In this work, we demonstrate the feasibility of guiding minimally invasive procedures using a dual-mode photoacoustic and ultrasound imaging system with excitation from compact arrays of light-emitting diodes (LEDs) at 850 nm. Three validation experiments were performed. First, clinical metal needles inserted into biological tissue were imaged. Second, the imaging depth of the system was characterized using a blood-vessel-mimicking phantom. Third, the superficial vasculature in human volunteers was imaged. It was found that photoacoustic imaging enabled needle visualization with signal-to-noise ratios that were 1.2 to 2.2 times higher than those obtained with ultrasound imaging, over insertion angles of 26 to 51 degrees. With the blood vessel mimicking phantom, the maximum imaging depth was 38 mm. The superficial vasculature of a human middle finger and a human wrist were clearly visualized in real-time. We conclude that the LED-based system is promising for guiding minimally invasive procedures with peripheral tissue targets.
机译:超声成像被广泛用于指导微创手术,但是对有创医疗设备和手术目标的可视化通常具有挑战性。光声成像已显示出指导微创手术的巨大前景,但该技术的临床翻译通常受到笨重且昂贵的激发源的限制。在这项工作中,我们演示了使用双模式光声和超声成像系统在850 nm的紧凑型发光二极管(LED)激发下引导微创程序的可行性。进行了三个验证实验。首先,对插入生物组织的临床金属针进行成像。其次,使用模仿血管的模型对系统的成像深度进行表征。第三,对人类志愿者的表面脉管系统进行了成像。发现在插入角度为26至51度时,光声成像可以使针头可视化,信噪比比超声成像高1.2至2.2倍。血管模拟体模时,最大成像深度为38毫米。实时清晰地可视化人中指和手腕的表面血管。我们得出的结论是,基于LED的系统有望指导周围组织目标的微创手术。

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