Lee Sugun, Kim Hee-Jin, Park Hyun Jun, Kim Hyoung Moon, Lee So Hyun, Cho Sung Bin
Department of Biomedical Engineering, Jeju National University, Jeju, South Korea.
Division of Anatomy and Developmental Biology, Department of Oral Biology, Human Identification Research Center, Yonsei University College of Dentistry, Seoul, South Korea.
Lasers Med Sci. 2017 Jul;32(5):1143-1151. doi: 10.1007/s10103-017-2220-z. Epub 2017 Apr 27.
Non-focused ultrasound and high-intensity focused ultrasound (HIFU) devices induce lipolysis by generating acoustic cavitation and coagulation necrosis in targeted tissues. We aimed to investigate the morphometric characteristics of immediate tissue reactions induced by 2 MHz, 13-mm focused HIFU via two-dimensional ultrasound images and histologic evaluation of cadaveric skin from the abdomen and thigh. Acoustic fields of a 2 MHz, 38-mm HIFU transducer were characterized by reconstruction of the fields using acoustic intensity measurement. Additionally, abdominal and thigh tissues from a fresh cadaver were treated with a HIFU device for a single, two, and three pulses at the pulse energy of 130 J/cm and a penetration depth of 13 mm. Acoustic intensity measurement revealed characteristic focal zones of significant thermal injury at the depth of 38 mm. In both the abdomen and thigh tissue, round to oval ablative thermal injury zones (TIZs) were visualized in subcutaneous fat layers upon treatment with a single pulse of HIFU treatment. Two to three HIFU pulses generated larger and more remarkable ablative zones throughout subcutaneous fat layers. Finally, experimental treatment in a tumescent infiltration-like setting induced larger HIFU-induced TIZs of an oval or columnar shape, compared to non-tumescent settings. Although neither acoustic intensity measurement nor cadaveric tissue exactly reflects in vivo HIFU-induced reactions in human tissue, we believe that our data will help guide further in vivo studies in investigating the therapeutic efficacy and safety of HIFU-induced lipolysis.
非聚焦超声和高强度聚焦超声(HIFU)设备通过在目标组织中产生声空化和凝固性坏死来诱导脂肪分解。我们旨在通过二维超声图像和腹部及大腿尸体皮肤的组织学评估,研究2MHz、13mm聚焦HIFU诱导的即时组织反应的形态学特征。通过使用声强测量重建声场,对2MHz、38mm HIFU换能器的声场进行了表征。此外,使用HIFU设备对新鲜尸体的腹部和大腿组织进行单脉冲、双脉冲和三脉冲治疗,脉冲能量为130J/cm,穿透深度为13mm。声强测量显示在38mm深度处有明显热损伤的特征性聚焦区。在腹部和大腿组织中,用单脉冲HIFU治疗后,在皮下脂肪层中可见圆形至椭圆形的消融热损伤区(TIZ)。两到三个HIFU脉冲在整个皮下脂肪层产生更大、更显著的消融区。最后,与非肿胀状态相比,在肿胀浸润样状态下的实验治疗诱导出更大的椭圆形或柱状HIFU诱导TIZ。尽管声强测量和尸体组织都不能准确反映人体组织中HIFU诱导的体内反应,但我们相信我们的数据将有助于指导进一步的体内研究,以调查HIFU诱导脂肪分解的治疗效果和安全性。