实验动物与比较医学 ›› 2014, Vol. 34 ›› Issue (4): 314-318.DOI: 10.3969/j.issn.1674-5817.2014.04.011

• 论著 • 上一篇    下一篇

利用MRI检查建立食蟹猴腓肠肌体积检测方法

杨波1, 韦祝梅1, 邓信宁2, 何乃知2, 李振明1, 杨继红1   

  1. 1.广西玮美生物科技有限公司, 南宁 530105;
    2.武鸣县人民医院放射科, 南宁 530100
  • 收稿日期:2013-07-09 出版日期:2014-08-25 发布日期:2014-08-25
  • 作者简介:杨 波(1985-), 男, 本科, E-mail: cx815661x@163.com
  • 基金资助:
    “重大新药创制”科技重大专项课题子课题资助(2011ZX09307-303-02)

Established Method of Measurement for Gastrocnemius Volume in Cynomolgus Monkeys by MRI Detection

YANG Bo1, WEI Zhu-mei1, DENG Xin-ning2, HE Nai-zhi2, YIN Feng-ri2, LI Zhen-ming1, YANG Ji-hong1   

  1. 1. Guangxi Weimei Bio-tech Co., Ltd, Nanning 530105, China;
    2. Department of Radiology, The People Hospital of Wu Ming County, Guangxi Autonomous Region, Nanning 530100, China
  • Received:2013-07-09 Online:2014-08-25 Published:2014-08-25

摘要: 目的 利用MRI检查方法,建立腓肠肌体积计算方法。探讨所获数据的准确性,进行食蟹猴腓肠肌体积MRI检测方法学研究。方法 采用右下肢制动方法,制作2例食蟹猴肌肉萎缩模型,对其健侧和模型侧肢体在第11周、13周和15周进行MRI平扫后,获取257幅图像。根据MRI影像可视之腓肠肌轮廓,2名人员分别3次手动测量每幅图像腓肠肌冠状位面积,计算其体积。比较相同人员不同时间测量面积的误差范围,不同人员测量面积的误差范围。结果 所有MRI图像获得清晰的腓肠肌图像。相同人员测量面积误差范围为0~3.47 cm2,平均差值占一侧腓肠肌总面积百分比为0.8%,变异系数为1.34%; 不同人员间面积测量误差范围为0~3.47 cm2,平均差值占一侧腓肠肌面积百分比为1.7%,变异系数为1.08%; 不同人员计算同一检查周期同侧腓肠肌体积误差范围为0~1.5 cm3, 平均差值占一侧腓肠肌体积百分比为5.8%,变异系数为6.5%。结论 MRI检查技术为食蟹猴肌肉萎缩模型提供客观诊断依据,采用影像学软件与手动结合计算腓肠肌体积的方法误差小,准确性好。

关键词: 磁共振成像, 食蟹猴, 腓肠肌, 体积

Abstract: Objective To evaluate the measurement of the gastrocnemius voulme by MRI detection in Cynomolgus monkeys. Methods Right lower limbs of two Cynomolgus monkeys were fixed with fiber polymer bandages (from knee to ankle) for 15 weeks. By performing MRI examinations on the gastrocnemiuses of both legs at week 11, 13 and 15Ł¬257 images were obtained. After measuring the coronal area of the gastrocnemius for 3 times by the same person and different persons, the volume of gastrocnemius was determined. Areas in all images detected by the same person at different time and areas in all images detected by different persons were compared, respectively. Result The gastrocnemiuses were all clearly detected in the MRI images. The measurement error of the area of the gastrocnemius in all images by the same person was 0 ~3.47 cm2. The percentage of the mean difference in the total area of one leg was 0.8%, and the CV was 1.34%. The measurement error by different persons was 0 ~3.47 cm2. The percentage of the mean difference in the total area of one leg was 1.7%, and the CV was 1.08%. The measurement error by different persons at the same period was 0 ~1.5 cm3. The percentage of the mean difference in one leg volume was 5.8%, and the CV was 6.5%. Conclusion MRI examination may be used as a valuable method in evaluating the muscle atrophy model in Cynomolgus monkeys with comparatively higher accuracy and lower error by combining the manual operation and software control.

Key words: Magnetic Resonance Imaging (MRI), Cynomolgus Monkeys, Gastrocnemius, Volume

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