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- W1970787684 endingPage "300" @default.
- W1970787684 startingPage "288" @default.
- W1970787684 abstract "Abstract Repairing nerve defects with large gaps remains one of the most operative challenges for surgeons. Incomplete recovery from peripheral nerve injuries can produce a diversity of negative outcomes, including numbness, impairment of sensory or motor function, possibility of developing chronic pain, and devastating permanent disability. In the last few years, numerous microsurgical techniques, such as coaptation, nerve autograft, and different biological or polymeric nerve conduits, have been developed to reconstruct a long segment of damaged peripheral nerve. A few of these techniques are promising and have become popular among surgeons. Advancements in the field of tissue engineering have led to development of synthetic nerve conduits as an alternative for the nerve autograft technique, which is the current practice to bridge nerve defects with gaps larger than 30 mm. However, to date, despite significant progress in this field, no material has been found to be an ideal alternative to the nerve autograft. This article briefly reviews major up‐to‐date published studies using different materials as an alternative to the nerve autograft to bridge peripheral nerve gaps in an attempt to assess their ability to support and enhance nerve regeneration and their prospective drawbacks, and also highlights the promising hope for nerve regeneration with the next generation of nerve conduits, which has been significantly enhanced with the tissue engineering approach, especially with the aid of nanotechnology in development of the three‐dimensional scaffold. The goal is to determine potential alternatives for nerve regeneration and repair that are simply and directly applicable in clinical conditions." @default.
- W1970787684 created "2016-06-24" @default.
- W1970787684 creator A5021230385 @default.
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- W1970787684 creator A5068934273 @default.
- W1970787684 creator A5072187543 @default.
- W1970787684 date "2011-09-01" @default.
- W1970787684 modified "2023-10-17" @default.
- W1970787684 title "Nerve regeneration with aid of nanotechnology and cellular engineering" @default.
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