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在图像引导导航支气管镜检查中使用片上磁传感进行3D位置跟踪

3D Position Tracking Using On-Chip Magnetic Sensing in Image-Guided Navigation Bronchoscopy.

作者信息

Srivastava Manish, ODonoghue Kilian, Sidun Aleksandr, Jaeger Herman Alexander, Ferro Alessandro, Crowley Daragh, Bosch Christian van den, Kennedy Marcus, OHare Daniel, Cantillon-Murphy Padraig

出版信息

IEEE Trans Biomed Circuits Syst. 2024 Oct;18(5):1123-1139. doi: 10.1109/TBCAS.2024.3384016. Epub 2024 Sep 26.

Abstract

This paper presents a compact and low-cost on-chip sensor and readout circuit. The sensor achieves high-resolution 5-degrees-of-freedom (DoF) tracking (x, y, z, yaw, and pitch). With the help of an external wire wound sensor, it can also achieve high-resolution 6-degrees-of-freedom (DoF) tracking (x, y, z, yaw, pitch, and roll angles). The sensor uses low-frequency magnetic fields to detect the position and orientation of instruments, providing a viable alternative to using X-rays in image-guided surgery. To measure the local magnetic field, a highly miniaturised on-chip magnetic sensor capable of sensing the magnetic field has been developed incorporating an on-chip magnetic sensor coil, analog-front end, continuous-time ∆Σ analog-to-digital converter (ADC), LVDS transmitter, bandgap reference, and voltage regulator. The microchip is fabricated using 65 nm CMOS technology and occupies an area of 1.06 mm , the smallest reported among similar designs to the best of our knowledge. The 5-DoF system accurately navigates with a precision of 1.1 mm within the volume-of-interest (VOI) of 15 ×15 ×15 cm . The 6-DoF system achieves a navigation accuracy of 0.8 mm and an angular error of 1.1 degrees in the same VOI. These results were obtained at a 20 Hz update rate in benchtop characterisation. The prototype sensor demonstrates accurate position tracking in real-life pre-clinical in-vivo settings within the porcine lung of a live swine, achieving a reported worst-case registration accuracy of 5.8 mm.

摘要

本文介绍了一种紧凑且低成本的片上传感器及读出电路。该传感器可实现高分辨率的五自由度(DoF)跟踪(x、y、z、偏航和俯仰)。借助外部绕线传感器,它还能实现高分辨率的六自由度(DoF)跟踪(x、y、z、偏航、俯仰和滚转角)。该传感器利用低频磁场来检测器械的位置和方向,为图像引导手术中使用X射线提供了一种可行的替代方案。为了测量局部磁场,已开发出一种高度小型化的片上磁传感器,它集成了片上磁传感器线圈、模拟前端、连续时间∆Σ模数转换器(ADC)、LVDS发射器、带隙基准和电压调节器。该微芯片采用65纳米CMOS技术制造,面积为1.06平方毫米,据我们所知,在类似设计中是已报道的最小面积。五自由度系统在15×15×15厘米的感兴趣体积(VOI)内以1.1毫米的精度精确导航。六自由度系统在相同的VOI内实现了0.8毫米的导航精度和1.1度的角度误差。这些结果是在台式表征中以20赫兹的更新速率获得的。该原型传感器在活猪的猪肺内的实际临床前体内环境中展示了精确的位置跟踪,实现了报道的最坏情况下5.8毫米的配准精度。

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