School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.
Department of Critical Care Medicine, The First Affiliated Hospital of Harbin Medical University, Harbin, 150001, P. R. China.
Adv Sci (Weinh). 2023 Nov;10(33):e2303418. doi: 10.1002/advs.202303418. Epub 2023 Sep 8.
The properly applied pressure between the skin and hemostasis devices is an essential parameter for preventing bleeding and postoperative complications after a transradial procedure. However, this parameter is usually controlled based on the subjective judgment of doctors, which might cause insufficient hemostatic effect or thrombosis. Here this study develops a compact and wireless sensing system for continuously monitoring the pressure applied on the radial artery and wrist skin in clinical practice. A liquid metal (LM)-based all-soft pressure sensor is fabricated to enable conformal attachment between the device and skin even under large deformation conditions. The linear sensitivity of 0.007 kPa among the wide pressure range of 0-100 kPa is achieved and the real-time detection data can be wirelessly transmitted to mobile clients as a reference pressure value. With these devices, detailed pressure data can be collected, analyzed, and stored for medical assistance as well as to improve surgery quality.
皮肤和止血设备之间的适当压力是预防经桡动脉手术后出血和并发症的一个重要参数。然而,该参数通常基于医生的主观判断来控制,这可能导致止血效果不足或血栓形成。在这里,本研究开发了一种紧凑、无线的传感系统,用于在临床实践中连续监测施加在桡动脉和手腕皮肤上的压力。制造了一种基于液态金属 (LM) 的全软压力传感器,即使在大变形条件下,也能使设备与皮肤之间实现紧密贴合。在 0-100kPa 的宽压力范围内实现了 0.007kPa 的线性灵敏度,并且实时检测数据可以无线传输到移动客户端作为参考压力值。有了这些设备,可以收集、分析和存储详细的压力数据,以提供医疗援助和提高手术质量。