Litcius/Paper detail

3D Interfacing between Soft Electronic Tools and Complex Biological Tissues

Hegeng Li, Hongzhen Liu, Mingze Sun, YongAn Huang, Lizhi Xu

2020Advanced Materials76 citationsDOI

Abstract

Recent developments in soft functional materials have created opportunities for building bioelectronic devices with tissue-like mechanical properties. Their integration with the human body could enable advanced sensing and stimulation for medical diagnosis and therapies. However, most of the available soft electronics are constructed as planar sheets, which are difficult to interface with the target organs and tissues that have complex 3D structures. Here, the recent approaches are highlighted to building 3D interfaces between soft electronic tools and complex biological organs and tissues. Examples involve mesh devices for conformal contact, imaging-guided fabrication of organ-specific electronics, miniaturized probes for neurointerfaces, instrumented scaffold for tissue engineering, and many other soft 3D systems. They represent diverse routes for reconciling the interfacial mismatches between electronic tools and biological tissues. The remaining challenges include device scaling to approach the complexity of target organs, biological data acquisition and processing, 3D manufacturing techniques, etc., providing a range of opportunities for scientific research and technological innovation.

Topics & Concepts

InterfacingElectronicsNanotechnologyStretchable electronicsInterface (matter)Materials scienceComputer scienceSystems engineeringEngineeringComputer hardwareElectrical engineeringComposite materialCapillary numberCapillary actionAdvanced Sensor and Energy Harvesting MaterialsNeuroscience and Neural EngineeringAdvanced Materials and Mechanics