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Changes in MR Diffusion Properties during Active Muscle Contraction in the Calf

机译:小腿主动肌肉收缩过程中MR扩散特性的变化

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Purpose: To elucidate changes in the diffusion properties of muscle fiber between rest and active contraction. Methods and Materials: In 10 healthy adult volunteers (4 men, 6 women), we obtained diffusion tensor (DT) images (b=500 s/mm2) of bilateral calves using a 1.5-tesla clinical magnetic resonance (MR) imager. We first simultaneously scanned both calves at rest, then obtained scans of bilateral calves with plantar flexion of the right ankle using the same imaging parameters. We measured fractional anisotropy (FA) and λ1, λ2, and λ3 in the gastrocnemius medialis (GCM) and anterior tibialis (AT) muscles of both calves by seeding the region of interest at the thickest part, then calculated the right-to-left ratio of the FA and eigenvalues in each muscle and compared each ratio between rest and contraction by paired t-test. Results: In the GCM, the FA ratio increased from 1.05 at rest to 1.17 after contraction, and contraction elevated the λ1 and 2 ratios from 0.99 in resting muscles to 1.06 (λ1) and 1.07 (λ2). In contrast, the AT showed a decrease of the λ1 ratio from 0.99 at rest to 0.96 at elongation and of the λ2 ratio, from and 1.01 at rest to 0.94 at elongation. Statistically significant differences were observed in the FA ( P 1 and λ2 values of muscles at contraction than rest presumably reflect complicated changes, including microscopic morphological changes of the diffusion-restricting factor, focal temperature, and perfusion. We found that change in perfusion could affect the AT, and changes in focal perfusion and temperature could influence the GCM.
机译:目的:阐明静息和主动收缩之间肌肉纤维扩散特性的变化。方法和材料:在10名健康的成人志愿者(4名男性,6名女性)中,我们使用1.5 tesla临床成像技术获得了双侧小腿的弥散张量(DT)图像(b = 500 s / mm 2 )。磁共振(MR)成像器。我们首先同时扫描静止时的两只小腿,然后使用相同的成像参数对右脚踝plant屈的双侧小腿进行扫描。我们测量了腓肠肌内侧(GCM)和胫骨前胫骨(AT)的分数各向异性(FA)和λ 1 ,λ 2 和λ 3 )通过在最厚的部分播种目标区域来两只小腿的肌肉,然后计算每条肌肉的FA和特征值的左右比率,并通过配对t检验比较静息和收缩之间的比率。结果:在GCM中,FA比率从静止时的1.05增加到收缩后的1.17,收缩将λ1和2的比率从静止肌中的0.99提高到1.06(λ 1 )和1.07(λ< sub> 2 )。相比之下,AT的λ 1 比率从静止时的0.99降低到伸长时的0.96,而λ 2 的比率从静止时的1.01降低到静止时的1.04到0.94。伸长。收缩时肌肉的FA(P 1 和λ 2 值在统计学上有显着差异,推测可能反映了复杂的变化,包括扩散限制因子,焦点温度的微观形态变化我们发现,灌注的变化会影响AT,而局部灌注和温度的变化会影响GCM。

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