Pathfinder Medical, London SW11 3TZ, UK.
Department of Bioengineering, Imperial College, London SW7 2AZ, UK.
Sensors (Basel). 2022 Jun 29;22(13):4928. doi: 10.3390/s22134928.
Percutaneous procedures to divert blood flow from one blood vessel to another can be performed with intravascular catheters but demand a method to align a crossing needle from one vessel to another. Fluoroscopic imaging alone is not adequate, and it is preferable to have a sensor on one catheter that detects the correct alignment of an incoming needle. This can be implemented by generating dipole electric fields from the crossing catheter which are detected by a receiving catheter in the target vessel and, thus, can calculate and display the degree of alignment, permitting the operator to rotate the crossing catheter to guarantee alignment when deploying a crossing needle. Catheters were built using this concept and evaluated in vitro. The results show that accurate alignment is achieved, and a successful crossing can be made. The concept is being further developed for further clinical evaluation.
经皮血管内导管介入术可将血液从一条血管转移到另一条血管,但需要一种方法将交叉针从一条血管引导到另一条血管。单纯的荧光透视成像并不足够,最好在一个导管上安装一个传感器,以检测进入的针的正确对准情况。这可以通过从交叉导管产生偶极电场来实现,该电场被目标血管中的接收导管检测到,从而可以计算并显示对准程度,允许操作员旋转交叉导管以保证在部署交叉针时的对准。使用该概念构建了导管,并在体外进行了评估。结果表明,实现了精确对准,并成功进行了交叉。该概念正在进一步开发,以进行进一步的临床评估。