Sadick Neil
Dermatology at Weill Cornell Medical College, New York, NY, USA.
Aesthet Surg J. 2008 Mar-Apr;28(2):180-8. doi: 10.1016/j.asj.2007.12.009.
Skin laxity is associated with chronological aging and exposure to solar radiation. The authors summarize the advantages and limitations of current laser, light-, and radiofrequency (RF)-based technologies purported to treat skin laxity by effecting heat-induced collagen contraction and subsequent remodeling during the months after treatment. Although penetration of laser or broadband light to the deep dermal layers is limited because of scattering of the light by epidermal melanin, a new device in which broadband infrared light is minimally scattered may overcome these limitations. RF energy offers a treatment alternative that has not only been proven to promote collagen contraction and remodeling but also is not scattered by epidermal constituents. Recently launched devices that use combinations of optical and RF energy achieve clinical benefits at lower and therefore safer levels of energy, with only mild pain and few adverse effects. A combined infrared-RF device takes maximum advantage of both optical and RF technologies to achieve the desired clinical effect. The electrooptical synergy systems have proven to be safe, effective, reliable, and user-friendly. Other more advanced powerful technologies may also be effective in this setting.
皮肤松弛与自然衰老和暴露于太阳辐射有关。作者总结了当前基于激光、光和射频(RF)技术的优点和局限性,这些技术据称通过在治疗后的数月内引起热诱导的胶原蛋白收缩和随后的重塑来治疗皮肤松弛。尽管由于表皮黑色素对光的散射,激光或宽带光对真皮深层的穿透有限,但一种宽带红外光散射极小的新设备可能会克服这些局限性。射频能量提供了一种治疗选择,它不仅已被证明能促进胶原蛋白收缩和重塑,而且不会被表皮成分散射。最近推出的使用光学和射频能量组合的设备在较低且因此更安全的能量水平下实现了临床益处,只有轻微疼痛且不良反应较少。一种红外 - 射频组合设备充分利用了光学和射频技术的优势,以达到预期的临床效果。电光协同系统已被证明是安全、有效、可靠且用户友好的。其他更先进的强大技术在这种情况下可能也有效。