首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Reversible inactivation of the dorsal hippocampus by tetrodotoxin or lidocaine: a comparative study on cerebral functional activity and motor coordination in the rat.
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Reversible inactivation of the dorsal hippocampus by tetrodotoxin or lidocaine: a comparative study on cerebral functional activity and motor coordination in the rat.

机译:河豚毒素或利多卡因可逆性灭活海马背:大鼠脑功能活动和运动协调的比较研究。

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摘要

Reversible inactivation of the hippocampus by lidocaine or tetrodotoxin is used to investigate implications of this structure in memory processes. Crucial points related to such inactivation are the temporal and spatial extents of the blockade. We compared effects of intrahippocampal infusions of commonly-used doses of lidocaine (5 or 10 mug) or tetrodotoxin (5 or 10 ng) in rats at two post-infusion delays (5 or 30 min), using 2-deoxyglucose autoradiography to visualize local cerebral glucose metabolism, and beam-walking performance to assess motor coordination. In addition, memory retrieval was evaluated in a water maze after bilateral infusions of 10 mug lidocaine. A unilateral tetrodotoxin infusion induced dose- and time-dependent reductions of 2-deoxyglucose uptake in the vicinity of the infusion site (dorsal hippocampus: -29% to -67%) and in other ipsi- and contralateral brain regions (ventral hippocampus, lateral thalamus, cortical regions). The maximal effect was at 10 ng, at the delay of 30 minbetween the tetrodotoxin infusion and the 2-deoxyglucose injection. Uni- and bilateral infusions of tetrodotoxin induced dramatic motor coordination deficits. Conversely, lidocaine reduced 2-deoxyglucose uptake (-19%) in the dorsal hippocampus only at 10 mug, with weak extrahippocampal effects. Whether infused uni- or bilaterally and regardless of the dose, lidocaine did not alter motor coordination. When infused bilaterally, however, 10 microg of lidocaine impaired short-term retrieval of spatial information in a water maze. Because lidocaine i) induced a weak though significant functional blockade mainly restricted to the infusion site, ii) had no consequences on motor coordination and, nevertheless iii) altered short-term spatial memory retrieval, we conclude that acute intrahippocampal infusions of lidocaine may offer some advantages over tetrodotoxin at the doses used herein.
机译:利多卡因或河豚毒素可逆性灭活海马被用于研究这种结构在记忆过程中的意义。与这种灭活有关的关键点是封锁的时间和空间范围。我们使用2-脱氧葡萄糖放射自显影技术在两个输注后延迟(5或30分钟)之间比较了海马内常用剂量的利多卡因(5或10杯)或河豚毒素(5或10 ng)对大鼠海马输注的影响,使用2-脱氧葡萄糖放射自显影技术可视化脑葡萄糖代谢和束流行走表现以评估运动协调性。此外,在双侧输注10杯利多卡因后,在水迷宫中评估了记忆恢复。单侧河豚毒素输注在输注部位附近(背侧海马:-29%至-67%)以及其他同侧和对侧脑区(腹侧海马,外侧)引起的2-脱氧葡萄糖摄取剂量和时间依赖性降低丘脑,皮质区域)。在注入河豚毒素和注射2-脱氧葡萄糖之间间隔30分钟时,最大作用为10 ng。单双侧输注河豚毒素可引起剧烈的运动协调缺陷。相反,利多卡因仅在10杯时降低了背侧海马的2-脱氧葡萄糖摄取(-19%),海马的作用较弱。无论是单次或双侧输注,无论剂量如何,利多卡因都不会改变运动协调性。但是,当双侧输注时,10微克利多卡因会损害水迷宫中空间信息的短期检索。因为利多卡因i)诱导了弱但重要的功能障碍,主要限于输注部位,ii)对运动协调没有影响,但是iii)改变了短期空间记忆恢复,我们得出的结论是,急性海马内输注利多卡因可能提供一些帮助在本文使用的剂量下比河豚毒素具有优势。

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