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常见视觉任务下的血流变化:一、皮质下结构和小脑增加,但非视觉皮质无变化。

Common Blood Flow Changes across Visual Tasks: I. Increases in Subcortical Structures and Cerebellum but Not in Nonvisual Cortex.

机构信息

Washington University School of Medicine.

出版信息

J Cogn Neurosci. 1997 Fall;9(5):624-47. doi: 10.1162/jocn.1997.9.5.624.

Abstract

Nine positron emission tomography (PET) studies of human visual information processing were reanalyzed to determine the consistency across experiments of blood flow increases during active tasks relative to passive viewing of the same stimulus array. No consistent blood flow increases were found in cerebral cortex outside of the visual system, but increases were seen in the thalamus and cerebellum. Although most tasks involve increases in arousal, establishing an intention or behavioral goal, setting up control structures for sequencing task operations, detecting targets, etc., these operations do not produce blood flow increases, detectable with the present methods, in localized cortical regions that are common across tasks. Common subcortical regions, however, may be involved. A left cerebellar and a medial cerebellar focus reflected motor-related processes. Blood flow increases in these regions only occurred in experiments in which the subject made an overt response and were largest when the response was made in the active but not passive condition. These motor-related processes were more complex than simple motor execution, however, since increases were still present when the response was made in both the active and passive conditions. These cerebellar increases may reflect processes related to response selection.Blood flow increases in a right cerebellar region were not motor-related. Increases were not modulated by the presence or absence of motor responses during either the active or passive conditions, and increases were sensitive to within-experiment variables that held the motor response constant. Increases occurred in both language and nonlanguage tasks and appeared to involve a general nonmotor process, but the nature of that process was difficult to specify. A right thalamic focus was sensitive to variables related to focal attention, suggesting that this region was involved in attentional engagement. Right thalamic increases were also correlated over conditions with increases in the left and medial cerebellum, perhaps reflecting additional contributions from motor-related nuclei receiving cerebellar projections. Blood flow increases in a left thalamic focus were completely uncorrelated over conditions with increases in the right thalamus, indicating that it was involved in different functions. Both the left thalamus and right cerebellum yielded larger blood flow increases when subjects performed a complex rather than simple language task, possibly reflecting a language-related pathway. Blood flow increases in the left thalamus were also observed, however, during nonlanguage tasks.

摘要

对 9 项人类视觉信息处理的正电子发射断层扫描(PET)研究进行了重新分析,以确定在主动任务期间相对于相同刺激阵列的被动观察,大脑皮层中血流量增加的实验一致性。在视觉系统之外的大脑皮层中未发现一致的血流量增加,但在丘脑和小脑中观察到了增加。尽管大多数任务都涉及唤醒、设定意图或行为目标、为任务操作的顺序设置控制结构、检测目标等,但使用当前方法在跨任务共有的局部皮质区域中,无法检测到这些操作会产生可检测的血流量增加。然而,可能涉及常见的皮质下区域。左小脑和内侧小脑焦点反映了与运动相关的过程。仅在被试做出明显反应的实验中,这些区域的血流增加最大,并且仅在主动而非被动条件下做出反应时最大。然而,这些与运动相关的过程比简单的运动执行更为复杂,因为即使在主动和被动条件下都做出反应时,仍会出现增加。这些小脑的增加可能反映了与反应选择相关的过程。右小脑区域的血流增加与运动无关。在主动或被动条件下,无论是有运动反应还是没有运动反应,都不会调节增加,并且增加对保持运动反应恒定的实验内变量敏感。增加发生在语言和非语言任务中,似乎涉及一般的非运动过程,但该过程的性质难以具体说明。右丘脑焦点对与焦点注意力相关的变量敏感,这表明该区域参与了注意力的投入。右丘脑的增加也与左和内侧小脑的增加在条件下相关,可能反映了来自接收小脑投射的运动相关核的额外贡献。在条件下,左丘脑焦点的血流量增加与右丘脑的增加完全不相关,这表明它涉及不同的功能。当被试执行复杂而非简单的语言任务时,左丘脑和右小脑的血流量增加幅度更大,这可能反映了与语言相关的途径。然而,在非语言任务期间也观察到了左丘脑的血流量增加。

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