Wilson Tony W, Slason Erin, Hernandez Olivia O, Asherin Ryan, Reite Martin L, Teale Peter D, Rojas Donald C
The MEG Center, Department of Neurological Sciences, University of Nebraska Medical Center, Omaha, NE 68198-2045, USA.
Psychiatry Res. 2009 Oct 30;174(1):47-56. doi: 10.1016/j.pscychresns.2009.03.009. Epub 2009 Sep 23.
Sensorimotor integration deficits are routinely observed in both schizophreniform and mood-disordered psychoses. Neurobiological theories of schizophrenia and related psychoses have proposed that aberrations in large-scale cortico-thalamic-cerebellar-thalamic-cortical loops may underlie integration abnormalities, and that such dysfunctional connectivity may be central to the pathophysiology. In this study, we utilized a basic mechanoreception task to probe cortical-cerebellar circuitry in early-onset psychosis. Ten adolescents with psychosis and 10 controls completed unilateral tactile stimulation of the right and left index finger, as whole-head magnetoencephalography (MEG) data were acquired. MEG data were imaged in the frequency domain, using spatial filtering, and the resulting event-related synchronizations and desynchronizations (ERS/ERD) were subjected to voxel-wise analyses of group and task effects using statistical parametric mapping. Our results indicated bilateral ERD activation of cerebellar regions and postcentral gyri in both groups during stimulation of either hand. Interestingly, during left finger stimulations, adolescents with psychosis exhibited greater alpha and gamma ERD activity in right cerebellar cortices relative to controls. Subjects with psychosis also showed greater ERD in bilateral cerebellum and the right postcentral gyrus during right finger stimulation, and these differences were statistically stronger for higher frequency bins. Lastly, controls exhibited greater alpha ERS of the right postcentral gyrus during right finger stimulation. These findings provide new data on the neurodevelopmental trajectory of basic mechanoreception in adolescents, and also indicate aberrant cerebellar functioning in early-onset psychoses, especially in the right cerebellum, which may be the crucial dysfunctional node in cortico-thalamic-cerebellar-thalamic-cortical circuits.
感觉运动整合缺陷在精神分裂症样精神病和心境障碍性精神病中均很常见。精神分裂症及相关精神病的神经生物学理论提出,大规模皮质-丘脑-小脑-丘脑-皮质环路的异常可能是整合异常的基础,而这种功能失调的连接可能是病理生理学的核心。在本研究中,我们利用一项基本的机械感觉任务来探究早发性精神病中的皮质-小脑回路。10名患有精神病的青少年和10名对照组完成了对右手和左手食指的单侧触觉刺激,同时采集全脑磁脑电图(MEG)数据。MEG数据在频域中成像,使用空间滤波,然后使用统计参数映射对所得的事件相关同步化和去同步化(ERS/ERD)进行体素水平的组效应和任务效应分析。我们的结果表明,在刺激任一只手时,两组的小脑区域和中央后回均出现双侧ERD激活。有趣的是,在刺激左手食指时,患有精神病的青少年相对于对照组在右侧小脑皮质表现出更大的α和γ ERD活动。在刺激右手食指时,患有精神病的受试者在双侧小脑和右侧中央后回也表现出更大的ERD,并且这些差异在较高频率频段上在统计学上更为显著。最后,对照组在刺激右手食指时右侧中央后回表现出更大的α ERS。这些发现为青少年基本机械感觉的神经发育轨迹提供了新的数据,也表明早发性精神病中存在小脑功能异常,尤其是在右侧小脑,这可能是皮质-丘脑-小脑-丘脑-皮质回路中关键的功能失调节点。