De la Cruz Jonathan, Benzecry Almeida Daniel, Silva Marques Mayara, Ramina Ricardo, Fortes Kubiak Rodolfo Jorge
Neurological Surgery, University of Antioquia, Medellín, COL.
Neurological Surgery, Neurological Institute of Curitiba, Curitiba, BRA.
Cureus. 2023 Sep 8;15(9):e44922. doi: 10.7759/cureus.44922. eCollection 2023 Sep.
Pulsed radiofrequency is a well-documented treatment option for multiple painful conditions where pulses of energy are delivered close to neural elements. Since its earliest adoption, this technique has gained increasing acceptance as a minimally invasive procedure, and new applications are evolving. Studies have shown microscopic and biochemical changes that reflect beneficial effects; however, the exact mechanism of action is not yet completely understood. To redress this paucity, 11,476 articles of scientific relevance published between 1980 and November 2022 were mined through a search of the PubMed database, arriving at 49 studies both in animals and humans. In general, the experimental studies examined have shown that pulsed radiofrequency induces multiple changes with antinociceptive and neuromodulatory effects. These modifications include changes in neural and glial cells, synaptic transmission, and perineural space. Studies also reveal that pulsed radiofrequency regulates inflammatory responses, cellular signaling proteins, and the expression of genes related to pain transmission, acting in biological processes in structures such as myelin, mitochondria, axons, glial cells, connective tissue, regulation of proteins, ion channels, and neurotransmitters.
脉冲射频是一种记录充分的治疗选择,适用于多种疼痛性疾病,通过向神经元件附近输送能量脉冲来发挥作用。自最早应用以来,这项技术作为一种微创手术已越来越被接受,并且新的应用也在不断发展。研究已经显示出反映有益效果的微观和生化变化;然而,确切的作用机制尚未完全明确。为了弥补这一不足,通过检索PubMed数据库,对1980年至2022年11月期间发表的11476篇具有科学相关性的文章进行了挖掘,最终得到49项关于动物和人类的研究。总体而言,所审查的实验研究表明,脉冲射频会引发多种具有抗伤害感受和神经调节作用的变化。这些改变包括神经细胞和神经胶质细胞、突触传递以及神经周围间隙的变化。研究还表明,脉冲射频调节炎症反应、细胞信号蛋白以及与疼痛传递相关的基因表达,作用于诸如髓鞘、线粒体、轴突、神经胶质细胞、结缔组织、蛋白质调节、离子通道和神经递质等结构中的生物学过程。