Institute of Aerospace Medicine, German Aerospace Center (DLR), Cologne, Germany.
Institute of Material Physics in Space, German Aerospace Center (DLR), Cologne, Germany.
Sci Rep. 2024 Feb 15;14(1):3808. doi: 10.1038/s41598-024-53852-0.
This study aimed to validate the concept of spatial gain sonography for quantifying texture-related echo intensity in B-mode ultrasound of skeletal muscle. Fifty-one bovine muscles were scanned postmortem using B-mode ultrasonography at varying fascicle probe angles (FPA). The relationship between mean gray values (MGV) and FPA was fitted with a sinusoidal and a linear function, the slope of which was defined as tilt echo gain (TEG). Macroscopic muscle cross sections were optically analyzed for intramuscular connective tissue (IMCT) content which was plotted against MGV at 0° FPA (MGV_00). MGV peaked at FPA 0°. Sine fits were superior to linear fits (adjusted r-values 0.647 vs. 0.613), especially for larger FPAs. In mixed models, the pennation angle was related to TEG (P < 0.001) and MGV_00 (P = 0.035). Age was relevant for MGV_00 (P < 0.001), but not TEG (P > 0.10). The correlation between the IMCT percentage and MGV_00 was significant but weak (P = 0.026; adjusted r = 0.103). The relationship between fascicle probe angle and echo intensity in B-mode ultrasound can be modeled more accurately with a sinusoidal but more practically for clinical use with a linear fit. The peak mean gray value MGV_00 can be used to compare echo intensity across muscles without the bias of pennation angle.
本研究旨在验证空间增益声像图概念在骨骼肌 B 型超声中量化与纹理相关的回声强度的可行性。51 块牛肌肉在死后使用 B 型超声以不同的肌束探头角度(FPA)进行扫描。平均灰度值(MGV)与 FPA 之间的关系分别用正弦函数和线性函数拟合,其斜率定义为倾斜回声增益(TEG)。对肌肉的宏观横截面进行光学分析,以确定肌内结缔组织(IMCT)含量,并将其与 0°FPA 下的 MGV(MGV_00)进行绘图。MGV 在 FPA 为 0°时达到峰值。正弦拟合优于线性拟合(调整后的 r 值分别为 0.647 和 0.613),尤其是在较大的 FPA 下。在混合模型中,肌纤维角与 TEG(P < 0.001)和 MGV_00(P = 0.035)相关。年龄与 MGV_00 相关(P < 0.001),但与 TEG 无关(P > 0.10)。IMCT 百分比与 MGV_00 之间的相关性是显著的,但较弱(P = 0.026;调整后的 r = 0.103)。B 型超声中肌束探头角度与回声强度之间的关系可以用正弦函数更准确地建模,但在临床应用中更实用的是线性拟合。平均灰度值 MGV_00 峰值可用于比较不同肌肉的回声强度,而不受肌纤维角的偏差影响。