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一种用于原位评估小鼠后肢踝关节屈肌等长收缩性能的磁共振兼容设备。

An MR-compatible device for the in situ assessment of isometric contractile performance of mouse hind-limb ankle flexors.

作者信息

Drost Maarten R, Heemskerk Anneriet M, Strijkers Gustav J, Dekkers Erwin C, van Kranenburg Gerrit, Nicolay Klaas

机构信息

Dept. Movement Sciences, Nutrition and Toxicology Research Institute Maastricht, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

出版信息

Pflugers Arch. 2003 Dec;447(3):371-5. doi: 10.1007/s00424-003-1181-1. Epub 2003 Oct 7.

Abstract

The goal of the present study was to develop and evaluate an isometric dynamometer for measuring mouse ankle flexor torque after electric stimulation of the nerve. The dynamometer was to be used within an magnetic resonance (MR) apparatus and should require minimal surgical intervention. To quantify the effect of the magnetic field on contractile parameters, measurements were performed both outside and inside the MR apparatus. The effect of magnetic field gradient switching that accompanies rapid MR scanning was tested also. The set-up required no surgical intervention except for chronic implantation of an electrode. The dynamometer has a high mechanical frequency response (270 Hz). Measured muscle strengths were identical outside and inside the MR scanner. However, during fast magnetic field gradient switching, the variability increased and the measured strength decreased slightly (7%). The noise level of the dynamometer (0.02-0.03 N.mm) was low compared with the strength of the dorsal flexors (2 N.mm). Fast gradient switching increased the noise level (0.07 N.mm). The dynamometer had no observable adverse effects on the quality of the MR images of the mouse hind limb. We conclude that the dynamometer enables accurate measurements of mechanical muscle performance during exercise protocols within an MR apparatus under physiological conditions.

摘要

本研究的目的是开发并评估一种等长测力计,用于测量神经电刺激后小鼠踝关节屈肌扭矩。该测力计将在磁共振(MR)设备内使用,且应尽量减少手术干预。为了量化磁场对收缩参数的影响,在MR设备外部和内部均进行了测量。还测试了快速MR扫描时伴随的磁场梯度切换的影响。除了长期植入电极外,该装置无需手术干预。该测力计具有较高的机械频率响应(270Hz)。在MR扫描仪外部和内部测得的肌肉力量相同。然而,在快速磁场梯度切换期间,变异性增加,测得的力量略有下降(7%)。与背屈肌力量(2N.mm)相比,测力计的噪声水平较低(0.02 - 0.03N.mm)。快速梯度切换会增加噪声水平(0.07N.mm)。该测力计对小鼠后肢MR图像的质量没有明显的不利影响。我们得出结论,该测力计能够在生理条件下,在MR设备内的运动方案期间准确测量肌肉的机械性能。

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