Department of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan.
Medical Device Innovation Center, National Cheng Kung University, Tainan, Taiwan.
Med Phys. 2024 Nov;51(11):8060-8073. doi: 10.1002/mp.17372. Epub 2024 Sep 3.
The skin is the largest organ of the human body and serves distinct functions in protecting the body. The viscoelastic properties of the skin play a key role in supporting the skin-healing process, also it may be changed due to some skin diseases.
In this study, high-frequency ultrasound (HFUS) elastography based on a Lamb wave model was used to noninvasively assess the viscoelastic anisotropy of human skin.
Elastic waves were generated through an external vibrator, and the wave propagation velocity was measured through 40 MHz ultrafast HFUS imaging. Through the use of a thin-layer gelatin phantom, HFUS elastography was verified to produce highly accurate estimates of elasticity and viscosity. In a human study involving five volunteers, viscoelastic anisotropy was assessed by rotating an ultrasound transducer 360°.
An oval-shaped pattern in the elasticity of human forearm skin was identified, indicating the high elastic anisotropy of skin; the average elastic moduli were 24.90 ± 6.63 and 13.64 ± 2.67 kPa along and across the collagen fiber orientation, respectively. The average viscosity of all the recruited volunteers was 3.23 ± 0.93 Pa·s.
Although the examined skin exhibited elastic anisotropy, no evident viscosity anisotropy was observed.
皮肤是人体最大的器官,具有保护身体的独特功能。皮肤的黏弹性特性在支持皮肤愈合过程中起着关键作用,也可能因某些皮肤病而改变。
本研究采用基于兰姆波模型的高频超声(HFUS)弹性成像技术,无创评估人体皮肤的黏弹性各向异性。
弹性波通过外部振动器产生,通过 40MHz 超快 HFUS 成像测量波传播速度。通过使用薄层明胶体模,HFUS 弹性成像被验证可以产生非常准确的弹性和粘性估计值。在涉及五名志愿者的人体研究中,通过旋转超声换能器 360°来评估黏弹性各向异性。
识别出人前臂皮肤的弹性呈椭圆形图案,表明皮肤具有高弹性各向异性;沿和垂直于胶原纤维方向的平均弹性模量分别为 24.90±6.63kPa 和 13.64±2.67kPa。所有招募志愿者的平均粘度为 3.23±0.93Pa·s。
尽管所检查的皮肤表现出弹性各向异性,但未观察到明显的粘性各向异性。