Santana-Blank Luis A, Rodríguez-Santana Elizabeth, Santana-Rodríguez Karin E
Fundalas, Foundation for Interdisciplinary Research and Development, Caracas, Venezuela.
Photomed Laser Surg. 2005 Aug;23(4):416-24. doi: 10.1089/pho.2005.23.416.
The present manuscript describes the non-invasive, long-range, energy transport of a singular infrared pulsed laser device (IPLD) and the upstream components of the original action mechanism, designated photo-infrared pulsed bio-modulation (PIPBM).
Major strides have been taken in recent years towards scientifically acceptable clinical applications of low-energy lasers. Nevertheless, challenges still abound. For instance, the range of potential target tissues for laser therapy in medicine has been, until now, limited by the optical penetration of the beam or to sites accessible by fiberoptics. In addition, much needs to be learned about the action mechanisms of pulsed lasers, which can induce unique biological effects.
We present a review of the IPLD laser technology and the PIPBM mechanism.
The studies reviewed suggest that the PIPBM enhances physiologically reparative processes in a non-toxic and selective manner through the activation and modulation of chaotic dynamics in water. These, in turn, lead not only to local, but also long-distance (systemic) effects.
Though additional studies are necessary to fully explore the biological effects of the PIPBM induced by the IPLD, this mechanism may have multiple potential applications in medicine that are the subject of active current and future investigations.
本论文描述了一种单一红外脉冲激光装置(IPLD)的非侵入性、远距离能量传输以及原始作用机制的上游组件,即光红外脉冲生物调制(PIPBM)。
近年来,在低能量激光的科学可接受临床应用方面已取得重大进展。然而,挑战仍然众多。例如,迄今为止,医学中激光治疗的潜在靶组织范围受到光束光学穿透或光纤可及部位的限制。此外,关于能够诱导独特生物学效应的脉冲激光的作用机制,仍有许多需要了解。
我们对IPLD激光技术和PIPBM机制进行了综述。
所综述的研究表明,PIPBM通过激活和调制水中的混沌动力学,以无毒且选择性的方式增强生理修复过程。这些反过来不仅导致局部效应,还导致远距离(全身)效应。
尽管需要进行更多研究以充分探索IPLD诱导的PIPBM的生物学效应,但这种机制可能在医学中有多种潜在应用,这是当前和未来积极研究的主题。