Sharma Saransh, Ramadi Khalil B, Poole Nikhil H, Srinivasan Shriya S, Ishida Keiko, Kuosmanen Johannes, Jenkins Josh, Aghlmand Fatemeh, Swift Margaret B, Shapiro Mikhail G, Traverso Giovanni, Emami Azita
Department of Electrical Engineering, California Institute of Technology, Pasadena, CA, USA.
These authors contributed equally: Saransh Sharma, Khalil B. Ramadi.
Nat Electron. 2023 Mar;6(3):242-256. doi: 10.1038/s41928-023-00916-0. Epub 2023 Feb 13.
Localization and tracking of ingestible microdevices in the gastrointestinal (GI) tract is valuable for the diagnosis and treatment of GI disorders. Such systems require a large field-of-view of tracking, high spatiotemporal resolution, wirelessly operated microdevices and a non-obstructive field generator that is safe to use in practical settings. However, the capabilities of current systems remain limited. Here, we report three dimensional (3D) localization and tracking of wireless ingestible microdevices in the GI tract of large animals in real time and with millimetre-scale resolution. This is achieved by generating 3D magnetic field gradients in the GI field-of-view using high-efficiency planar electromagnetic coils that encode each spatial point with a distinct magnetic field magnitude. The field magnitude is measured and transmitted by the miniaturized, low-power and wireless microdevices to decode their location as they travel through the GI tract. This system could be useful for quantitative assessment of the GI transit-time, precision targeting of therapeutic interventions and minimally invasive procedures.
胃肠道中可摄入微型设备的定位与追踪对于胃肠道疾病的诊断和治疗具有重要价值。此类系统需要具备大视野追踪、高时空分辨率、可无线操作的微型设备以及在实际应用中安全使用的无阻碍场发生器。然而,当前系统的功能仍然有限。在此,我们报告了对大型动物胃肠道内无线可摄入微型设备进行实时三维(3D)定位与追踪,且分辨率达到毫米级。这是通过使用高效平面电磁线圈在胃肠道视野内生成3D磁场梯度来实现的,该线圈用独特的磁场强度对每个空间点进行编码。当微型设备在胃肠道中移动时,其磁场强度由小型化、低功耗且无线的微型设备进行测量和传输,以解码它们的位置。该系统可用于定量评估胃肠道传输时间、治疗干预的精准靶向以及微创操作。