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March 12, 2026Advanced Materials Technologies0 citations

Interfacing Thin‐Film Bioelectronics with Bone Regenerative Cryogel Scaffolds for Transosseous Cortical Access (Adv. Mater. Technol. 5/2026)

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LOLevi M. OlevskyJPJonathan C. PelusiCSCaleb Stewart

Key Points

  • This research aims to explore the integration of bioelectronic devices with cryogel scaffolds to enhance bone regeneration.
  • Developed a bioelectronic neural interfacing device for electrocorticography.
  • Created cryogel scaffolds to promote bone growth and integration with skull.
  • Evaluated the effectiveness of the scaffold–device system for bone regeneration.
  • The bioelectronic device successfully fused with the skull during regeneration.
  • The scaffold eliminated the requirement for secondary bone closure methods.
  • Enhanced bone regrowth was observed through tissue engineering techniques.

Abstract

Bone Regenerative Cryogel Scaffolds The cover features a tissue engineered, bioelectronic neural interfacing device. This system is used as a recording array for electrocorticography. The integrated scaffold system promotes bone regrowth, effectively fusing the device into the skull and eliminating the need for secondary bone closure method. More details can be found in the Research Article by Katherine R. Hixon, Alexander J. Boys, and co-workers (10.1002/admt.202500692).

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Cite This Study

Olevsky et al. (2026) studied this question.

synapsesocial.com/papers/69b2573196eeacc4fcec5c30https://doi.org/10.1002/admt.70583
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