such hybrid structures are also called engineered living materials (ELMs)
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engineered living materials
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ELMs
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Engineered living materials have the potential to realize self-powered, self-healing, biosignal-responsive, and self-sustainable properties.
Quoted textsource-backed
ELMs have the potential to realize many highly-desired properties, which are usually only found in biological systems, such as self-powered, self-healing, biosignal-responsive, and self-sustainable.
Hybrid structures integrating functional synthetic materials and living biological entities are called engineered living materials.
Quoted textsource-backed
The integration of functional synthetic materials and living biological entities has emerged as a new and powerful approach to create adaptive and functional structures with unprecedented performance and functionalities, and such hybrid structures are also called engineered living materials (ELMs).
Within engineered living materials applications, sensing and actuation is described as the area with the most progress.
Quoted textsource-backed
researchers have started to explore the use of ELMs in many areas, among them, sensing and actuation is the area that has the most progress