Lima Kelly, Rouffaud Remi, Pereira Wagner, Oliveira Liliam F
Laboratory of Biomechanics of the Biomedical Engineering Program, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.
Laboratory of Ultrasound of the Biomedical Engineering Program , Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.
J Ultrasound Med. 2019 Jan;38(1):81-90. doi: 10.1002/jum.14664. Epub 2018 Apr 30.
To verify a relationship between the pennation angle of synthetic fibers and muscle fibers with the shear modulus (μ) generated by Supersonic shear imaging (SSI) elastography and to compare the anisotropy of synthetic and in vivo pennate muscle fibers in the x -x plane (probe perpendicular to water surface or skin).
First, the probe of Aixplorer ultrasound scanner (v.9, Supersonic Imagine, Aix-en-Provence, France) was placed in 2 positions (parallel [aligned] and transverse to the fibers) to test the anisotropy in the x -x plane. Subsequently, it was inclined (x -x plane) in relation to the fibers, forming 3 angles (18.25 °, 21.55 °, 36.86 °) for synthetic fibers and one (approximately 0 °) for muscle fibers.
On the x -x plane, μ values of the synthetic and vastus lateralis fibers were significantly lower (P < .0001) at the transverse probe position than the longitudinal one. In the x -x plane, the μ values were significantly reduced (P < .0001) with the probe angle increasing, only for the synthetic fibers (approximately 0.90 kPa for each degree of pennation angle).
The pennation angle was not related to the μ values generated by SSI elastography for the in vivo lateral head of the gastrocnemius and vastus lateralis muscles. However, a μ reduction with an angle increase in the synthetic fibers was observed. These findings contribute to increasing the applicability of SSI in distinct muscle architecture at normal or pathologic conditions.
验证合成纤维和肌肉纤维的羽状角与超声剪切成像(SSI)弹性成像所产生的剪切模量(μ)之间的关系,并比较合成纤维和体内羽状肌纤维在x - x平面(探头垂直于水面或皮肤)的各向异性。
首先,将Aixplorer超声扫描仪(版本9,Supersonic Imagine,法国普罗旺斯地区艾克斯)的探头置于两个位置(与纤维平行[对齐]和垂直),以测试x - x平面的各向异性。随后,将探头相对于纤维倾斜(x - x平面),合成纤维形成3个角度(18.25°、21.55°、36.86°),肌肉纤维形成1个角度(约0°)。
在x - x平面上,横向探头位置的合成纤维和股外侧肌纤维的μ值显著低于纵向位置(P <.0001)。在x - x平面上,仅合成纤维的μ值随探头角度增加而显著降低(P <.0001)(羽状角每增加一度约降低0.90 kPa)。
腓肠肌外侧头和股外侧肌体内的羽状角与SSI弹性成像所产生的μ值无关。然而,观察到合成纤维的μ值随角度增加而降低。这些发现有助于提高SSI在正常或病理条件下不同肌肉结构中的适用性。