Taheri A, Mansoori P, Sandoval L F, Feldman S R, Williford P M, Pearce D
Department of Dermatology, Center for Dermatology Research, Wake Forest School of Medicine, Winston-Salem, NC, USA.
Skin Res Technol. 2014 Aug;20(3):270-3. doi: 10.1111/srt.12115. Epub 2013 Nov 21.
Fractional resurfacing of the skin using radiofrequency devices has been used for collagen remodeling and rejuvenation.
To determine how radiofrequency current enters and propagates through tissue, and the pattern of the resulting effect.
An electrosurgical device with a 0.4 MHz frequency output was used as the source of radiofrequency current. Current was applied via a metallic needle introduced into a large piece of cow liver, with different amounts of energy delivered at multiple points. Cross-sections of the liver were then studied for tissue effect.
Thermal coagulation of tissue started from the tip of the electrode. With higher energy, a rim of coagulated tissue formed around the entire length of the needle. This rim of coagulated tissue was thicker around the tip of the electrode.
Radiofrequency currents have a tendency to move toward the center of the bulk of tissue. When an electrode of a fractional radiofrequency device enters the skin, maximum heating effect will be around the tip of the electrode in the dermis. This phenomenon can preserve epidermis from injury during dermal heating, reducing post-procedural skin surface side effects seen with many skin rejuvenation procedures.
使用射频设备对皮肤进行分次换肤已用于胶原蛋白重塑和皮肤年轻化。
确定射频电流如何进入并在组织中传播,以及由此产生的效应模式。
使用频率输出为0.4 MHz的电外科设备作为射频电流源。通过一根插入一大块牛肝的金属针施加电流,在多个点输送不同量的能量。然后研究肝脏的横截面以观察组织效应。
组织的热凝从电极尖端开始。能量越高,围绕针的整个长度形成一圈凝固组织。电极尖端周围的这圈凝固组织更厚。
射频电流倾向于向组织主体的中心移动。当分次射频设备的电极进入皮肤时,最大加热效应将出现在真皮层中电极的尖端周围。这种现象可以在真皮加热期间保护表皮免受损伤,减少许多皮肤年轻化手术中出现的术后皮肤表面副作用。