• search hit 2 of 2
Back to Result List

The Grasping Test Revisited: A Systematic Review of Functional Recovery in Rat Models of Median Nerve Injury

  • The rat median nerve model is a well-established and frequently used model for peripheral nerve injury and repair. The grasping test is the gold-standard to evaluate functional recovery in this model. However, no comprehensive review exists to summarize the course of functional recovery in regard to the lesion type. According to PRISMA-guidelines, research was performed, including the databases PubMed and Web of Science. Groups were: (1) crush injury, (2) transection with end-to-end or with (3) end-to-side coaptation and (4) isogenic or acellular allogenic grafting. Total and respective number, as well as rat strain, type of nerve defect, length of isogenic or acellular allogenic allografts, time at first signs of motor recovery (FSR) and maximal recovery grasping strength (MRGS), were evaluated. In total, 47 articles met the inclusion criteria. Group I showed earliest signs of motor recovery. Slow recovery was observable in group III and in graft length above 25 mm. Isografts recovered faster compared to other grafts. The onset and course of recovery is heavily dependent from the type of nerve injury. The grasping test should be used complementary in addition to other volitional and non-volitional tests. Repetitive examinations should be planned carefully to optimize assessment of valid and reliable data.

Export metadata

Additional Services

Share in Twitter Search Google Scholar
Metadaten
Author:Henrik Lauer, Cosima Prahm, Johannes Tobias Thiel, Jonas Kolbenschlag, Adrien Daigeler, David Hercher, Johannes Christoph Heinzel
Parent Title (English):Biomedicines
Document Type:Article
Language:English
Completed Date:2022/08/03
Responsibility for metadata:Fachhochschule Technikum Wien
Release Date:2023/01/22
GND Keyword:Median Nerve Injury; Nerve Regeneration; Tissue Engineering
Volume:2022
Issue:10(8)
First Page:1878
Publish on Website:1
Open Access:1
Reviewed:1
Link to Publication:https://doi.org/10.3390/biomedicines10081878
Department:Department Life Science Engineering
Research Focus:Tissue Engineering & Molecular Life Science Technologies
Projects:FWF
Studienjahr:2021/2022
Licence (German):License LogoCreative Commons - CC BY - Namensnennung 4.0 International