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An implantable bolus infusion pump for use in freely moving nontethered rats

机译:一种可植入的推注式输液泵用于自由移动的非栓系大鼠

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摘要

One of the current constraints on functional neuroimaging in animals is that to avoid movement artifacts during data acquisition, subjects need to be immobilized, sedated, or anesthetized. Such measures limit the behaviors that can be examined, and introduce the additional variables of stress or anesthetic agents that may confound meaningful interpretation. This study provides a description of the design and characteristics of a self-contained, implantable microbolus infusion pump (MIP) that allows triggering of a bolus injection at a distance in conscious, behaving rats that are not restrained or tethered. The MIP is externally triggered by a pulse of infrared light and allows in vivo bolus drug delivery. We describe application of this technology to the intravenous bolus delivery of iodo[14C]antipyrine in a freely moving animal, followed immediately by lethal injection, rapid removal of the brain, and analysis of regional cerebral blood flow tissue radioactivity with the use of autoradiography. The ability to investigate changes in brain activation in nonrestrained animals makes the MIP a powerful tool for evaluation of complex behaviors.
机译:目前对动物的功能性神经影像学的限制之一是,为了避免在数据采集过程中出现运动伪影,需要对受试者进行固定,镇静或麻醉。这样的措施限制了可以检查的行为,并引入了可能混淆有意义解释的压力或麻醉剂附加变量。这项研究描述了一个独立的,可植入的微丸输注泵(MIP)的设计和特征,该泵可在有意识,行为不受束缚或束缚的老鼠中以一定距离触发推注。 MIP由红外线脉冲外部触发,并允许体内推注药物输送。我们描述了该技术在自由移动的动物中静脉注射大剂量碘[[sup> 14 C]安替比林的应用,然后立即注射致死性注射,快速取出大脑并分析局部脑血流使用放射自显影技术进行组织放射性检查。研究不受约束的动物大脑激活变化的能力使MIP成为评估复杂行为的有力工具。

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