McIlduff C E, Wainger B J, Freeman R L, Samaan S, Yator I, Gutierrez H, Verga S, Rutkove S B
Department of Neurology, Beth Israel Deaconess Medical Center, Boston, MA, USA.
Department of Neurology, Sean M. Healey & AMG Center for ALS, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.
Clin Neurophysiol Pract. 2022 Oct 13;7:319-324. doi: 10.1016/j.cnp.2022.08.003. eCollection 2022.
To 1) explore if clinical electrophysiologists with different degrees of experience performing standard nerve conduction studies could run a threshold tracking nerve conduction study (TTNCS) protocol and 2) learn how clinical users view a research-grade TTNCSs neuronal excitability system.
Five clinical electrophysiologists conducted a TTNCS session using QTracS and then completed a questionnaire describing their impressions.
All of the electrophysiologists completed the QTracS protocol on an initial attempt. Perceived strengths comprised the ease of preparatory steps and quick protocol speed. Identified drawbacks included an unwieldly user-interface. The electrophysiologists indicated that knowledge of TTNCS principles and applications would be critical for incorporation of the method into clinical use.
This pilot study suggests that clinical electrophysiologists can carry out TTNCSs with a research-grade system. The development of a more user-friendly program, along with dedicated education and training, could lead to wider application of the TTNCS technique.
Considered together with clinical presentation and other biomarkers, increased use of TTNCSs could provide improved assessment of neuromuscular disease and treatment response.
1)探讨不同经验程度的临床电生理学家在进行标准神经传导研究时能否执行阈值跟踪神经传导研究(TTNCS)方案,以及2)了解临床用户如何看待研究级TTNCS的神经元兴奋性系统。
五位临床电生理学家使用QTracS进行了一次TTNCS实验,然后完成了一份描述他们印象的问卷。
所有电生理学家在首次尝试时都完成了QTracS方案。感知到的优点包括准备步骤简便和方案速度快。发现的缺点包括用户界面不便于操作。电生理学家表示,了解TTNCS原理和应用对于将该方法纳入临床应用至关重要。
这项初步研究表明,临床电生理学家可以使用研究级系统进行TTNCS。开发更用户友好的程序,以及专门的教育和培训,可能会导致TTNCS技术得到更广泛的应用。
结合临床表现和其他生物标志物,增加TTNCS的使用可以改善对神经肌肉疾病和治疗反应的评估。