Shanghai Frontiers Science Research Base of Intelligent Optoelectronics and Perception, Institute of Optoelectronics, Department of Materials Science, Fudan University, Shanghai, China.
International Institute for Intelligent Nanorobots and Nanosystems, Fudan University, Shanghai 200438, China.
Sci Adv. 2024 Oct 11;10(41):eadp8804. doi: 10.1126/sciadv.adp8804. Epub 2024 Oct 9.
Monitoring soft-tissue biomechanics is of interest in biomedical research and clinical treatment of diseases. An important focus is biointegrated strain gauges that track time-dependent mechanics of targeted tissues with deforming surfaces over multidirections. Existing methods provide limited gauge factors, tailored for sensing within specific directions under quasi-static conditions. We present development and applicability of implantable/wearable strain gauges that integrate multiple ultrathin monocrystalline silicon-based sensors aligned with different directions, in stretchable formats for dynamically monitoring direction angle-sensitive strain. We experimentally and computationally establish operational principles, with theoretical systems that enable determination of intensities and direction of applied strains at an omnidirectional scale. Wearable evaluations range from cardiac pulse to intraocular pressure monitoring of eyeballs. The device can evaluate cardiac disorders of myocardial infarction and hypoxia of living rats and locate the pathological orientation associated with infarction, in designs with possibilities as biodegradable implants for stable operation. These findings create clinical significance of the devices for monitoring complex dynamic biomechanics.
监测软组织生物力学在生物医学研究和疾病的临床治疗中具有重要意义。生物集成应变计是一个重要的研究重点,它可以跟踪具有变形表面的靶向组织在多方向上的时变力学。现有的方法提供了有限的应变计因子,这些因子是针对准静态条件下特定方向的传感而定制的。我们提出了一种可植入/可穿戴应变计的开发和适用性,该应变计集成了多个与不同方向对齐的超薄单晶硅基传感器,以可拉伸的格式动态监测方向角敏感应变。我们通过实验和计算建立了操作原理,理论系统可以在全方位尺度上确定施加应变的强度和方向。可穿戴评估范围从心脏脉冲到眼球的眼内压监测。该设备可评估心肌梗死和活鼠缺氧引起的心脏疾病,并定位与梗死相关的病理方向,在具有稳定运行可能性的可生物降解植入物设计中。这些发现为监测复杂动态生物力学的设备创造了临床意义。