Wells Jonathon, Konrad Peter, Kao Chris, Jansen E Duco, Mahadevan-Jansen Anita
Vanderbilt University, Department of Biomedical Engineering, 5824 Stevenson Center, Nashville, TN 37235, United States.
J Neurosci Methods. 2007 Jul 30;163(2):326-37. doi: 10.1016/j.jneumeth.2007.03.016. Epub 2007 Mar 31.
Transient optical neural stimulation has previously been shown to elicit highly controlled, artifact-free potentials within the nervous system in a non-contact fashion without resulting in damage to tissue. This paper presents the physiologic validity of elicited nerve and muscle potentials from pulsed laser induced stimulation of the peripheral nerve in a comparative study with the standard method of electrically evoked potentials. Herein, the fundamental physical properties underlying the two techniques are contrasted. Key laser parameters for efficient optical stimulation of the peripheral nerve are detailed. Strength response curves are shown to be linear for each stimulation modality, although fewer axons can be recruited with optically evoked potentials. Results compare the relative transient energy requirements for stimulation using each technique and demonstrate that optical methods result in highly selective functional nerve stimulation. Adjacent stimulation and recording of compound nerve potentials in their entirety from optical and electrical stimulation are presented, with optical responses shown to be free of any stimulation artifact. Thus, use of a pulsed laser exhibits distinct advantages when compared to standard electrical means for excitation of muscle potentials in the peripheral nerve in the research domain and possibly for clinical diagnostics in the future.
瞬时光学神经刺激此前已被证明能够以非接触方式在神经系统内引发高度可控、无伪迹的电位,且不会对组织造成损伤。本文在与电诱发电位的标准方法的对比研究中,展示了脉冲激光诱导刺激外周神经所引发的神经和肌肉电位的生理有效性。在此,对比了这两种技术背后的基本物理特性。详细阐述了有效光学刺激外周神经的关键激光参数。尽管光诱发电位能够募集的轴突较少,但每种刺激方式的强度响应曲线均呈线性。结果比较了使用每种技术进行刺激所需的相对瞬态能量,并证明光学方法可实现高度选择性的功能性神经刺激。展示了从光学和电刺激中完整地相邻刺激和记录复合神经电位的情况,光学响应显示没有任何刺激伪迹。因此,与用于激发外周神经肌肉电位的标准电方法相比,在研究领域以及未来可能用于临床诊断时,使用脉冲激光具有明显优势。