Pan A X, Hai Y, Liu Y Z, Zhang Y P, Zhang L M, Li W J, Yin L, Guo R J
Department of Orthopedics, Beijing Chaoyang Hospital, Capital Medical University, Beijing 100020, China.
Zhonghua Yi Xue Za Zhi. 2018 Nov 20;98(43):3485-3489. doi: 10.3760/cma.j.issn.0376-2491.2018.43.005.
To assess the bio-mechanical properties of paraspinal muscles in adolescent idiopathic scoliosis (AIS). The MyotonPro® device and shear wave elasticity imaging(SWEI) technique were applied to detect the paraspinal muscle tone (F), stiffness (S), relaxation time (R), Deborah number (C) and elasticity (D) of paravertebral muscles on the concave side and convex side of scoliosis curvature at several points: apex of the curve (a), upper (b) and lower (c) limits of the curve in 23 cases of AIS treated from October to December 2017 in Beijing Chaoyang Hospital.Cobb angle of the main curve was measured on the standing anteroposterior whole spine radiograph.Pearson correlation analysis was applied to detect the relation between the bio-mechanical properties and Cobb angle of the main curve. A total of 23 AIS patients [3 males and 20 females, mean age was (15±4) years] were assessed in this study.The mean Cobb angle was (66±33) degrees.The MyotonPro® data showed that the muscle tone on the concave side were all significantly greater than those on the convex side [a: (18.9±2.2) Hz vs (17.4±1.6) Hz, =4.435, <0.05; b: (18.2±2.0) Hz vs (16.7±1.7) Hz, =4.183, <0.05; c: (18.0±2.3) Hz vs (16.8±1.7) Hz, =4.520, <0.05]. The muscle stiffness on the concave side were all significantly greater than those on the convex side at the three points (=1.974, 2.048, 1.749, all <0.05). The relaxation time were all longer on the convex side (=-3.422, -2.713, -2.380, all <0.05). The Deborah number were greater on the convex side at a and b points (=-2.939, -2.466, both <0.05). No significant difference in elasticity was found between the muscles of the two sides.The SWEI results also indicated that the elasticity of the paraspinal muscles of the two sides were similar.The Pearson correlation analysis showed that stiffness on the concave side was moderate positively correlated with Cobb angle of the main curve (=0.582, <0.05). Deborah number on the two sides and relaxation time on the concave were moderate negatively correlated with Cobb angle of the main curve (=-0.632, -0.432, -0.611, all <0.05). The bio-mechanical properties of paraspinal muscles in AIS are different significantly between the concave and convex side and affected by the severity of scoliosis.
评估青少年特发性脊柱侧凸(AIS)患者椎旁肌肉的生物力学特性。应用MyotonPro®设备和剪切波弹性成像(SWEI)技术,在2017年10月至12月在北京朝阳医院接受治疗的23例AIS患者的脊柱侧凸曲线凹侧和凸侧的几个点处检测椎旁肌肉的肌张力(F)、刚度(S)、松弛时间(R)、德博拉数(C)和弹性(D):曲线顶点(a)、曲线的上(b)限和下(c)限。在站立位全脊柱前后位X线片上测量主曲线的Cobb角。采用Pearson相关分析检测生物力学特性与主曲线Cobb角之间的关系。本研究共评估了23例AIS患者[3例男性和20例女性,平均年龄为(15±4)岁]。平均Cobb角为(66±33)度。MyotonPro®数据显示,凹侧的肌张力均显著高于凸侧[a:(18.9±2.2)Hz对(17.4±1.6)Hz,=4.435,<0.05;b:(18.2±2.0)Hz对(16.7±1.7)Hz,=4.183,<0.05;c:(18.0±2.3)Hz对(16.8±1.7)Hz,=4.520,<0.05]。在这三个点处,凹侧的肌肉刚度均显著高于凸侧(=1.974、2.048、1.749,均<0.05)。凸侧的松弛时间均较长(=-3.422、-2.713、-2.380,均<0.05)。在a和b点处,凸侧的德博拉数较大(=-2.939、-2.466,均<0.05)。两侧肌肉的弹性未发现显著差异。SWEI结果也表明两侧椎旁肌肉的弹性相似。Pearson相关分析显示,凹侧的刚度与主曲线的Cobb角呈中度正相关(=0.582,<0.05)。两侧的德博拉数和凹侧的松弛时间与主曲线的Cobb角呈中度负相关(=-0.632、-0.432、-0.611,均<0.05)。AIS患者椎旁肌肉的生物力学特性在凹侧和凸侧之间存在显著差异,并受脊柱侧凸严重程度的影响。