Department of Kinesiology, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.
BMC Neurosci. 2013 Aug 23;14:89. doi: 10.1186/1471-2202-14-89.
Temporal order judgement (TOJ) is the ability to detect the order of occurrence of two sequentially delivered stimuli. Previous research has shown that TOJ in the presence of synchronized periodic conditioning stimuli impairs TOJ performance, and this phenomenon is suggested to be mediated by GABAergic interneurons that cause perceptual binding across the two skin sites. Application of continuous theta-burst repetitive TMS (cTBS) over primary somatosensory cortex (SI) alters temporal and spatial tactile perception. The purpose of this study was to examine TOJ perception in the presence and absence of synchronized periodic conditioning stimuli before and after cTBS applied over left-hemisphere SI. A TOJ task was administered on the right index and middle finger (D2 and D3) in two separate sessions in the presence and absence of conditioning stimuli (a background low amplitude sinusoidal vibration).
CTBS reduced the impact of the conditioning stimuli on TOJ performance for up to 18 minutes following stimulation while sham cTBS did not affect TOJ performance. In contrast, the TOJ task performed in the absence of synchronized conditioning stimulation was unaltered following cTBS.
We conclude that cTBS suppresses inhibitory networks in SI that mediate perceptual binding during TOJ synchronization. CTBS offers one method to suppress cortical excitability in the cortex and potentially benefit clinical populations with altered inhibitory cortical circuits. Additionally, TOJ measures with conditioning stimuli may provide an avenue to assess sensory processing in neurologically impaired patient populations.
时间顺序判断(TOJ)是检测两个连续呈现的刺激发生顺序的能力。先前的研究表明,在同步周期性条件刺激存在的情况下,TOJ 会损害 TOJ 性能,这一现象被认为是由 GABA 能中间神经元介导的,这些神经元导致两个皮肤部位的知觉绑定。应用连续 theta 爆发重复 TMS(cTBS)于初级体感皮层(SI)会改变时间和空间触觉感知。本研究的目的是在左半球 SI 应用 cTBS 前后,检查存在和不存在同步周期性条件刺激时的 TOJ 感知。在两个单独的会话中,在存在和不存在条件刺激(背景低幅度正弦振动)的情况下,在右食指和中指(D2 和 D3)上进行 TOJ 任务。
cTBS 降低了条件刺激对 TOJ 性能的影响,持续时间长达刺激后 18 分钟,而 sham cTBS 则不影响 TOJ 性能。相比之下,在没有同步条件刺激的情况下进行的 TOJ 任务在 cTBS 后没有改变。
我们得出结论,cTBS 抑制了 SI 中的抑制性网络,这些网络在 TOJ 同步期间介导知觉绑定。cTBS 提供了一种抑制皮层兴奋性的方法,并可能使具有改变的抑制性皮层回路的临床人群受益。此外,带有条件刺激的 TOJ 测量可能为评估神经受损患者群体的感觉处理提供一种途径。