Center for Comparative Neuroimaging, Department of Psychiatry, University of Massachusetts Medical School, Worcester, MA 01655, USA.
Neuroimage. 2012 Jan 16;59(2):1190-9. doi: 10.1016/j.neuroimage.2011.08.009. Epub 2011 Aug 12.
Resting-state functional connectivity (RSFC) measured by functional magnetic resonance imaging has played an essential role in understanding neural circuitry and brain diseases. The vast majority of RSFC studies have been focused on positive RSFC, whereas our understanding about its conceptual counterpart - negative RSFC (i.e. anticorrelation) - remains elusive. To date, anticorrelated RSFC has yet been observed without the commonly used preprocessing step of global signal correction. However, this step can induce artifactual anticorrelation (Murphy et al., 2009), making it difficult to determine whether the observed anticorrelation in humans is a processing artifact (Fox et al., 2005). In this report we demonstrated robust anticorrelated RSFC in a well characterized frontolimbic circuit between the infralimbic cortex (IL) and amygdala in the awake rat. This anticorrelation was anatomically specific, highly reproducible and independent of preprocessing methods. Interestingly, this anticorrelated relationship was absent in anesthetized rats even with global signal correction, further supporting its functional significance. Establishing negative RSFC independent of data preprocessing methods will significantly enhance the applicability of RSFC in better understanding neural circuitries and brain networks. In addition, combining the neurobiological data of the IL-amygdala circuit in rodents, the finding of the present study will enable further investigation of the neurobiological basis underlying anticorrelation.
静息态功能连接(RSFC)通过功能磁共振成像测量,在理解神经回路和脑部疾病方面发挥了重要作用。绝大多数 RSFC 研究都集中在正 RSFC 上,而我们对其概念对应物——负 RSFC(即负相关)的理解仍然难以捉摸。迄今为止,在没有普遍使用的全局信号校正预处理步骤的情况下,已经观察到了负相关的 RSFC。然而,这一步骤可能会引起人为的负相关(Murphy 等人,2009 年),使得难以确定在人类中观察到的负相关是否是处理伪影(Fox 等人,2005 年)。在本报告中,我们在清醒大鼠的边缘下皮层(IL)和杏仁核之间的一个特征明确的额 - 边缘回路中展示了强大的负相关 RSFC。这种负相关具有解剖特异性,高度可重现,且独立于预处理方法。有趣的是,即使在麻醉大鼠中,即使进行了全局信号校正,这种负相关关系也不存在,这进一步支持了其功能意义。建立独立于数据预处理方法的负 RSFC 将显著提高 RSFC 在更好地理解神经回路和脑网络方面的适用性。此外,结合啮齿动物 IL-杏仁核回路的神经生物学数据,本研究的发现将能够进一步研究负相关的神经生物学基础。