Asci Cihan, Del-Rio-Ruiz Ruben, Sharma Atul, Sonkusale Sameer
Nanolab, Advanced Technology Laboratory, Electrical and Computer Engineering, Tufts University, Medford, MA, USA 02155.
Proc IEEE Sens. 2022 Oct-Nov;2022. doi: 10.1109/sensors52175.2022.9967347. Epub 2022 Dec 8.
Existing techniques for diagnosing gastrointestinal disorders in stomach, small and large intestines, and colon depend on biopsy, endoscopy or colonoscopy methods which are invasive, expensive and time-consuming. In fact, such methods also lack the ability to access large parts of the small intestine. In this article, we demonstrate a smart ingestible biosensing capsule that is capable of monitoring pH activity in small and large intestines. pH is a known biomarker for several gastrointestinal disorders such as inflammatory bowel disease. Functionalized threads utilized as pH sensing mechanism are integrated with front-end readout electronics and 3D-printed case. This paper demonstrates a modular sensing system design that alleviates the sensor fabrication difficulties as well as the overall assembly of the ingestible capsule.
现有的用于诊断胃、小肠、大肠和结肠等胃肠道疾病的技术依赖于活检、内窥镜检查或结肠镜检查方法,这些方法具有侵入性、成本高且耗时。事实上,这些方法还无法检测小肠的大部分区域。在本文中,我们展示了一种智能可吞咽生物传感胶囊,它能够监测小肠和大肠中的pH值活动。pH值是几种胃肠道疾病(如炎症性肠病)的已知生物标志物。用作pH传感机制的功能化细丝与前端读出电子设备和3D打印外壳集成在一起。本文展示了一种模块化传感系统设计,该设计减轻了传感器制造难度以及可吞咽胶囊的整体组装难度。