Tian Ye, Yang Yueying, Wang Jiaxin, Li Na, Pan Zhangqi, Li Yuli, Zhou Mengyuan, Huang Yizhou, Zhang Xiaofeng, Yu Yang, Lei Haotian, Chen Jie, Wang Wei, Yuan Ye, Lu Xiaohuan, Du Zhaokai, Liu Xurui, Qin Lejie, Cui Xinwu, Tang Hanchuan, Zang Jianfeng
School of Integrated Circuits and Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, China.
Department of Urology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Nat Commun. 2025 Aug 25;16(1):7910. doi: 10.1038/s41467-025-63310-8.
Postoperative complications such as intestinal motility disorders and obstructions require regular monitoring following small intestine resection. While imaging techniques like MRI and CT offer high-resolution visualization of internal organs, their use is limited by the need for trained operators and constraints on frequent monitoring. Ultrasonography, although capable of continuous imaging of deep tissues, is challenged by the weak acoustic reflections from soft intestinal tissue. In this work, we present a biodegradable ultrasound contrast tape (BioUCT) designed for robust, conformal adhesion to the intestinal surface to enable high-contrast ultrasound imaging. The soft BioUCT has a strong ultrasound reflection (>90%), generated from periodic air cells sealed in tough hydrogels. The BioUCT achieved ultrasound contrast imaging of the small intestine for 2 weeks and degraded naturally within 12 weeks in a live pig, enabling the regular and wireless monitoring of postoperative intestinal motility.
小肠切除术后的并发症,如肠道动力障碍和梗阻,需要在术后进行定期监测。虽然MRI和CT等成像技术能够提供高分辨率的内部器官可视化图像,但由于需要训练有素的操作人员以及频繁监测的限制,其应用受到了一定的制约。超声检查虽然能够对深部组织进行连续成像,但肠道软组织的声学反射较弱,给超声检查带来了挑战。在这项工作中,我们展示了一种可生物降解的超声造影胶带(BioUCT),它被设计用于牢固、贴合地粘附在肠道表面,以实现高对比度的超声成像。柔软的BioUCT具有很强的超声反射(>90%),这是由密封在坚韧水凝胶中的周期性气室产生的。BioUCT在活体猪体内实现了对小肠的超声造影成像长达2周,并在12周内自然降解,从而能够对术后肠道动力进行定期和无线监测。