Jang Jiuk, Ji Sangyoon, Grandhi G Krishnamurthy, Cho Han Bin, Im Won Bin, Park Jang-Ung
Nano Science Technology Institute, Department of Materials Science and Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Division of Materials Science and Engineering, Hanyang University, Seoul, 04763, Republic of Korea.
Adv Mater. 2021 Jul;33(30):e2008539. doi: 10.1002/adma.202008539. Epub 2021 Jun 17.
Visual and tactile information are the key intuitive perceptions in sensory systems, and the synchronized detection of these two sensory modalities can enhance accuracy of object recognition by providing complementary information between them. Herein, multimodal integration of flexible, high-resolution X-ray detectors with a synchronous mapping of tactile pressure distributions for visualizing internal structures and morphologies of an object simultaneously is reported. As a visual-inspection method, perovskite materials that convert X-rays into charge carriers directly are synthesized. By incorporating pressure-sensitive air-dielectric transistors in the perovskite components, X-ray detectors with dual modalities (i.e., vision and touch) are attained as an active-matrix platform for digital visuotactile examinations. Also, in vivo X-ray imaging and pressure sensing are demonstrated using a live rat. This multiplexed platform has high spatial resolution and good flexibility, thereby providing highly accurate inspection and diagnoses even for the distorted images of nonplanar objects.
视觉和触觉信息是感觉系统中的关键直观感知,这两种感觉模态的同步检测可以通过提供它们之间的互补信息来提高物体识别的准确性。在此,报告了柔性、高分辨率X射线探测器与触觉压力分布的同步映射的多模态集成,用于同时可视化物体的内部结构和形态。作为一种视觉检查方法,合成了将X射线直接转换为电荷载流子的钙钛矿材料。通过在钙钛矿组件中纳入压敏空气介电晶体管,获得了具有双模态(即视觉和触觉)的X射线探测器,作为用于数字视觉触觉检查的有源矩阵平台。此外,还使用活大鼠进行了体内X射线成像和压力传感演示。这个多路复用平台具有高空间分辨率和良好的灵活性,从而即使对于非平面物体的扭曲图像也能提供高度准确的检查和诊断。