Effect of knee joint angle on individual hamstrings morphology quantified using free-hand 3D ultrasonography

J Electromyogr Kinesiol. 2022 Feb:62:102619. doi: 10.1016/j.jelekin.2021.102619. Epub 2021 Nov 15.

Abstract

Exercise responses and injury rates differ between individual hamstrings and this may be linked with their morphology. The aim of this study was to compare muscle length and tendon dimensions between the individual hamstrings at two knee joint angles using free hand three-dimensional ultrasound (3D US). Muscle-tendon length and distal tendon cross-sectional area (CSA), volume, length and echogenicity of biceps femoris long (BFlh) and short (BFsh) head, semimembranosus (SM) and semitendinosus (ST) of 16 individuals were measured using free-hand 3D US at 0° (full extension) and 45° of knee flexion. ST showed the greatest length than all muscles and BFsh the lowest (p < 0.05). No difference was observed between SM and BFlh length (p > 0.05). Of the four muscles, ST tendon was longer, with less volume and CSA but greater echogenicity than the other tendons. In contrast, SM and BFlh showed shorter tendons and lower echogenicity but a greater volume and CSA than ST (p < 0.05). Muscle and tendon lengthened from 45° to 0° knee flexion angle (p < 0.05) but this change was not statistically different between individual hamstrings (p > 0.05). Freehand 3D US indicated that hamstring muscle length and distal tendon dimensions differ between individual hamstrings. All muscles and tendons lengthened as the knee was extended but this change was similar for all individual hamstrings.

Keywords: Architecture; Biceps femoris; Free-hand; Imaging; Semimembranosus; Semimetendinosus; Three-dimensional.

MeSH terms

  • Hamstring Muscles* / diagnostic imaging
  • Humans
  • Knee Joint / diagnostic imaging
  • Muscle, Skeletal / diagnostic imaging
  • Tendons / diagnostic imaging
  • Ultrasonography