Sun Zhenglong, Foong Shaohui, Maréchal Luc, Tan U-Xuan, Teo Tee Hui, Shabbir Asim
Engineering Product Development Pillar, Singapore University of Technology and Design, 8 Somapah Road, Singapore, 487372, Singapore.
Division of General Surgery (Upper Gastrointestinal Surgery), University Surgical Cluster, National University Health System, 5 Lower Kent Ridge Road, Singapore, 119074, Singapore.
Ann Biomed Eng. 2015 Dec;43(12):2941-52. doi: 10.1007/s10439-015-1361-0. Epub 2015 Jun 25.
Nasogastric (NG) intubation is one of the most commonly performed clinical procedures. Real-time localization and tracking of the NG tube passage at the larynx region into the esophagus is crucial for safety, but is lacking in current practice. In this paper, we present the design, analysis and evaluation of a non-invasive real-time localization system using passive magnetic tracking techniques to improve efficacy of the clinical NG intubation process. By embedding a small permanent magnet at the insertion tip of the NG tube, a wearable system containing embedded sensors around the neck can determine the absolute position of the NG tube inside the body in real-time to assist in insertion. In order to validate the feasibility of the proposed system in detecting erroneous tube placement, typical reference intubation trajectories are first analyzed using anatomically correct models and localization accuracy of the system are evaluated using a precise robotic platform. It is found that the root-mean-squared tracking accuracy is within 5.3 mm for both the esophagus and trachea intubation pathways. Experiments were also designed and performed to demonstrate that the system is capable of tracking the NG tube accurately in biological environments even in presence of stationary ferromagnetic objects (such as clinical instruments). With minimal physical modification to the NG tube and clinical process, this system allows accurate and efficient localization and confirmation of correct NG tube placement without supplemental radiographic methods which is considered the current clinical standard.
鼻胃管插管是最常见的临床操作之一。实时定位和追踪鼻胃管在喉部区域进入食管的过程对于安全至关重要,但目前的实践中缺乏相关手段。在本文中,我们展示了一种使用被动磁跟踪技术的非侵入式实时定位系统的设计、分析和评估,以提高临床鼻胃管插管过程的效率。通过在鼻胃管的插入端嵌入一个小的永久磁铁,一个在颈部周围包含嵌入式传感器的可穿戴系统可以实时确定鼻胃管在体内的绝对位置,以辅助插管。为了验证所提出系统在检测错误插管位置方面的可行性,首先使用解剖学正确的模型分析典型的参考插管轨迹,并使用精确的机器人平台评估系统的定位精度。结果发现,食管和气管插管路径的均方根跟踪精度均在5.3毫米以内。还设计并进行了实验,以证明该系统即使在存在固定铁磁物体(如临床器械)的生物环境中也能够准确跟踪鼻胃管。对鼻胃管和临床过程进行最小程度的物理修改,该系统无需目前临床标准的辅助放射学方法,即可实现准确、高效的定位并确认鼻胃管的正确放置。