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Updated: Aug 24, 2026

Anatomically Inspired Three-dimensional Micro-tissue Engineered Neural Networks for Nervous System Reconstruction, Modulation, and Modeling
Published on: May 31, 2017
Rehabilitation strategy using enhanced housing environment during neural regeneration
Marcel F Meek1, Martijn A J Koning, Jean-Philippe A Nicolai
1Department of Plastic Surgery, University Hospital Groningen, Hanzeplein 1, 9713GZ Groningen, The Netherlands. meekmf@yahoo.com
Abstract:
The influence of an enriched environment on the recovery of nerve function was studied after a sciatic nerve lesion and repair. A sciatic nerve gap of 15 mm was bridged in 12 rats using autologous nerve grafts. The rats were housed either in an enriched environment or in standard cages. In the enhanced housing environment, the rats were forced to move by dissociating food and water sources, including wire for foot gripping instead of flat plastic floors, and wooden play toys. Locomotor behavior was recorded on tape with a digital videorecorder and behavioral data were compared with those of a group of six unoperated rats. The video-recordings were analyzed for the stance factor (SF) as well as several other aspects of the rat's walking pattern. Walking was evaluated between 10 and 21 weeks after the operation. Differences in walking behavior between rats raised in an enriched environment and rats raised in standard cages could not be demonstrated. Differences in walking behavior between male and female rats were not found either. But data differed significantly at all ages with rats of the control group. Automutilation of parts of the denervated foot revealed a significant difference in both experimental groups, occurring less often in the enriched environment group.
