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Bioinspired electronics for intelligent soft robots

  • Junhyuk Bang,
  • Seok Hwan Choi,
  • Kyung Rok Pyun,
  • Yeongju Jung,
  • Sangwoo Hong,
  • Dohyung Kim,
  • Youngseok Lee,
  • Daeyeon Won,
  • Seongmin Jeong,
  • Wooseop Shin,
  • Seung Hwan Ko

摘要

Soft robots, capable of safe interaction with delicate objects through their flexibility and compliance, are attracting attention in various real-world applications as manipulators, biomedical devices and wearable tools. As these technologies advance, the ability to perform complex tasks in a robust and reliable way becomes essential. Thus, the incorporation of embedded intelligence in soft robots, which enables them to perceive external environments and generate appropriate actions, is increasingly important. Inspiration from sophisticated biological systems, which exhibit optimized behaviours through the acquisition of external information, promotes the development of intelligent soft robots. Here, we introduce biomimicry strategies for intelligent soft robotics and highlight progress in how soft robots interact with their environment and perform tasks. First, we discuss sensors inspired by the sensory nervous systems and soft actuators inspired by the musculoskeletal systems. Furthermore, we investigate various applications such as manipulation, exploration, wearable devices, biomedical devices and imperceptible devices. We conclude discussing the challenges and offering a perspective on the future direction of this field.