Gogulski Juha, Cline Christopher C, Ross Jessica M, Parmigiani Sara, Keller Corey J
bioRxiv. 2023 Sep 5:2023.09.04.556283. doi: 10.1101/2023.09.04.556283.
We currently lack a robust and reliable method to probe cortical excitability noninvasively from the human dorsolateral prefrontal cortex (dlPFC), a region heavily implicated in psychiatric disorders. We recently found that the strength of and dlPFC single pulse transcranial magnetic stimulation (TMS)-evoked potentials (EL-TEPs) varied widely depending on the anatomical subregion probed, with more medial regions eliciting stronger responses than anterolateral sites. Despite these differences in of response, the at each target is not known.
To evaluate the reliability of EL-TEPs across the dlPFC.
In 15 healthy subjects, we quantified within-session reliability of dlPFC EL-TEPs after single pulse TMS to six dlPFC subregions. We evaluated the concordance correlation coefficient (CCC) across targets and analytical parameters including time window, quantification method, region of interest, sensor-vs. source-space, and number of trials.
At least one target in the anterior and posterior dlPFC produced reliable EL-TEPs (CCC>0.7). The medial target was most reliable (CCC = 0.78) and the most anterior target was least reliable (CCC = 0.24). ROI size and type (sensor vs. source space) did not affect reliability. Longer (20-60 ms, CCC = 0.62) and later (30-60 ms, CCC = 0.61) time windows resulted in higher reliability compared to earlier and shorter (20-40 ms, CCC 0.43; 20-50 ms, CCC = 0.55) time windows. Peak-to-peak quantification resulted in higher reliability than the mean of the absolute amplitude. Reliable EL-TEPs (CCC up to 0.86) were observed using only 25 TMS trials for a medial dlPFC target.
Medial TMS location, wider time window (20-60ms), and peak-to-peak quantification improved reliability. Highly reliable EL-TEPs can be extracted from dlPFC after only a small number of trials.
Medial dlPFC target improved EL-TEP reliability compared to anterior targets.After optimizing analytical parameters, at least one anterior and one posterior target was reliable (CCC>0.7).Longer (20-60 ms) and later (30-60 ms) time windows were more reliable than earlier and shorter (20-40 ms or 20-50 ms) latencies.Peak-to-peak quantification resulted in higher reliability compared to the mean of the absolute amplitude.As low as 25 trials can yield reliable EL-TEPs from the dlPFC.
目前,我们缺乏一种强大且可靠的方法来无创探测人类背外侧前额叶皮质(dlPFC)的皮质兴奋性,该区域与精神疾病密切相关。我们最近发现,dlPFC单脉冲经颅磁刺激(TMS)诱发的电位(EL-TEPs)的强度因探测的解剖亚区域不同而有很大差异,内侧区域比前外侧部位诱发的反应更强。尽管反应强度存在这些差异,但每个靶点的变异性尚不清楚。
评估dlPFC中EL-TEPs的可靠性。
在15名健康受试者中,我们对单脉冲TMS刺激dlPFC的六个亚区域后,dlPFC的EL-TEPs在单次实验中的可靠性进行了量化。我们评估了不同靶点以及包括时间窗、量化方法、感兴趣区域、传感器空间与源空间以及试验次数等分析参数之间的一致性相关系数(CCC)。
dlPFC前后部至少有一个靶点能产生可靠的EL-TEPs(CCC>0.7)。内侧靶点最可靠(CCC = 0.78),最前部靶点最不可靠(CCC = 0.24)。感兴趣区域的大小和类型(传感器空间与源空间)不影响可靠性。与更早和更短的时间窗(20 - 40 ms,CCC 0.43;20 - 50 ms,CCC = 0.55)相比,更长(20 - 60 ms,CCC = 0.62)和更晚(30 - 60 ms,CCC = 0.61)的时间窗具有更高的可靠性。峰峰值量化比绝对振幅的平均值具有更高的可靠性。对于内侧dlPFC靶点,仅使用25次TMS试验就观察到了可靠的EL-TEPs(CCC高达0.86)。
TMS位于内侧、更宽的时间窗(20 - 60ms)以及峰峰值量化提高了可靠性。仅经过少量试验就能从dlPFC中提取出高度可靠的EL-TEPs。
与前部靶点相比,内侧dlPFC靶点提高了EL-TEP的可靠性。优化分析参数后,至少一个前部和一个后部靶点是可靠的(CCC>0.7)。更长(20 - 60 ms)和更晚(30 - 60 ms)的时间窗比更早和更短(20 - 40 ms或20 - 50 ms)的潜伏期更可靠。与绝对振幅的平均值相比,峰峰值量化具有更高的可靠性。低至25次试验就能从dlPFC中产生可靠的EL-TEPs。