Holschneider D P, Maarek J-M I, Yang J, Harimoto J, Scremin O U
Department of Psychiatry and the Behavioral Sciences, University of Southern California, Keck School of Medicine, Los Angeles, California, U.S.A.
J Cereb Blood Flow Metab. 2003 Aug;23(8):925-32. doi: 10.1097/01.WCB.0000072797.66873.6A.
A dilemma in functional neuroimaging is that immobilization of the subject, necessary to avoid movement artifact, extinguishes all but the simplest behaviors. Recently, we developed an implantable microbolus infusion pump (MIP) that allows bolus injection of radiotracers by remote activation in freely moving, nontethered animals. The MIP is examined as a tool for brain mapping in rats during a locomotor task. Cerebral blood flow-related tissue radioactivity (CBF-TR) was measured using [14C]-iodoantipyrine with an indicator-fractionation method, followed by autoradiography. Rats exposed to walking on a treadmill, compared to quiescent controls, showed increases in CBF-TR in motor circuits (primary motor cortex, dorsolateral striatum, ventrolateral thalamus, midline cerebellum, copula pyramis, paramedian lobule), in primary somatosensory cortex mapping the forelimbs, hindlimbs and trunk, as well as in secondary visual cortex. These results support the use of implantable pumps as adjunct tools for functional neuroimaging of behaviors that cannot be elicited in restrained or tethered animals.
功能神经成像中的一个难题是,为避免运动伪影而使受试者保持固定状态,这会消除除最简单行为之外的所有行为。最近,我们开发了一种可植入的微量注射泵(MIP),它可以通过远程激活在自由活动、无束缚的动物体内进行放射性示踪剂的团注注射。MIP被作为一种在大鼠进行运动任务期间用于脑图谱绘制的工具进行研究。使用[14C] - 碘安替比林,采用指示剂分离法测量脑血流量相关的组织放射性(CBF - TR),随后进行放射自显影。与静止对照组相比,在跑步机上行走的大鼠在运动回路(初级运动皮层、背外侧纹状体、腹外侧丘脑、中线小脑、锥体连接部、旁正中小叶)、映射前肢、后肢和躯干的初级体感皮层以及次级视觉皮层中,CBF - TR均有所增加。这些结果支持将可植入泵用作功能神经成像的辅助工具,用于对在受约束或系留动物中无法引发的行为进行成像。