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May 13, 2026Microsystems & Nanoengineering0 citationsOpen Access

Closed-crown packaging system for stable, long-term neural recording in group-housed mice

YHYeonghwa HongGKGiheon KimHLHaeyun Lee

Key Points

  • The aim is to develop a closed-crown neural probe packaging system that enables stable, long-term neural recording in group-housed mice.
  • Developed a closed-crown packaging system integrating NFC for identification and protection.
  • Used an ultra-thin flexible PSR-based cable (~35 μm) for stability and connectivity.
  • Implanted electrodes in the hippocampal CA1 region of mice housed in groups.
  • Mice showed stable impedance and preserved spike waveform over extended periods (low impedance at tens of kiloohms).
  • Behavioral assessments indicated no packaging-induced social stress, with anxiety-related indices improved in group-housed mice.

Abstract

Long-term recording of neural circuit activity in behaving mice is essential for understanding the pathophysiology of neuropsychiatric disorders and developing effective therapies. However, conventional open-crown packaging leaves cables and connectors exposed, making them vulnerable to biting, mechanical impact, and contamination. In group-housing conditions, these weaknesses often cause cable disconnection or probe damage, forcing single housing and undermining the ecological validity of studies on social behavior. To address these limitations, we developed a closed-crown neural probe packaging system that (i) integrates an NFC-enabled crown for simultaneous physical shielding and individual identification, (ii) employs an ultra-thin PSR-based flexible cable (~35 μm) to ensure mechanical flexibility and stable long-term connectivity, and (iii) incorporates black Pt-electroplated electrodes with low impedance (the tens of kiloohms at 1 kHz) for stable neural recording. After implantation into the hippocampal CA1 region, mice maintained under group-housing conditions exhibited stable impedance over extended periods, with preserved spike waveform and signal-to-noise ratio. Behavioral assessments showed no signs of packaging-induced social stress, and anxiety-related indices were improved in group-housed mice compared with isolated ones. In summary, the proposed closed-crown system provides a robust platform for stable, long-term neural recording under naturalistic social conditions. This approach enables precise examination of neural circuit dynamics in socially interacting animals and offers a powerful tool for advancing the study of social behavior and neuropsychiatric disorders.

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Cite This Study

Hong et al. (2026) studied this question.

synapsesocial.com/papers/6a04141c79e20c90b44444e7https://doi.org/10.1038/s41378-026-01293-2
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