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新生大鼠诱导性缺氧缺血对快速听觉处理和空间工作记忆影响的分离

Dissociation in the Effects of Induced Neonatal Hypoxia-Ischemia on Rapid Auditory Processing and Spatial Working Memory in Male Rats.

作者信息

Smith Amanda L, Alexander Michelle, Chrobak James J, Rosenkrantz Ted S, Fitch R Holly

机构信息

Department of Psychology, Behavioral Neuroscience Division, University of Connecticut, Storrs, Conn., USA.

出版信息

Dev Neurosci. 2015;37(4-5):440-52. doi: 10.1159/000375487. Epub 2015 Mar 17.

Abstract

Infants born prematurely are at risk for cardiovascular events causing hypoxia-ischemia (HI; reduced blood and oxygen to the brain). HI in turn can cause neuropathology, though patterns of damage are sometimes diffuse and often highly variable (with clinical heterogeneity further magnified by rapid development). As a result, though HI injury is associated with long-term behavioral and cognitive impairments in general, pathology indices for specific infants can provide only limited insight into individual prognosis. The current paper addresses this important clinical issue using a rat model that simulates unilateral HI in a late preterm infant coupled with long-term behavioral evaluation in two processing domains - auditory discrimination and spatial learning/memory. We examined the following: (1) whether deficits on one task would predict deficits on the other (suggesting that subjects with more severe injury perform worse across all cognitive domains) or (2) whether domain-specific outcomes among HI-injured subjects would be uncorrelated (suggesting differential damage to orthogonal neural systems). All animals (sham and HI) received initial auditory testing and were assigned to additional auditory testing (group A) or spatial maze testing (group B). This allowed within-task (group A) and between-task (group B) correlation. Anatomic measures of cortical, hippocampal and ventricular volume (indexing HI damage) were also obtained and correlated against behavioral measures. Results showed that auditory discrimination in the juvenile period was not correlated with spatial working memory in adulthood (group B) in either sham or HI rats. Conversely, early auditory processing performance for group A HI animals significantly predicted auditory deficits in adulthood (p = 0.05; no correlation in shams). Anatomic data also revealed significant relationships between the volumes of different brain areas within both HI and shams, but anatomic measures did not correlate with any behavioral measure in the HI group (though we saw a hippocampal/spatial correlation in shams, in the expected direction). Overall, current data provide an impetus to enhance tools for characterizing individual HI-related pathology in neonates, which could provide more accurate individual prognoses within specific cognitive/behavioral domains and thus improved patient-specific early interventions.

摘要

早产婴儿有发生导致缺氧缺血(HI,即大脑血液和氧气减少)的心血管事件的风险。HI继而可导致神经病理学改变,尽管损伤模式有时是弥漫性的,且通常高度可变(快速发育进一步放大了临床异质性)。因此,尽管HI损伤总体上与长期行为和认知障碍相关,但特定婴儿的病理学指标对个体预后的洞察有限。本文使用一种大鼠模型来解决这一重要临床问题,该模型模拟晚期早产婴儿的单侧HI,并在听觉辨别和空间学习/记忆这两个处理领域进行长期行为评估。我们研究了以下内容:(1)一项任务的缺陷是否会预测另一项任务的缺陷(表明损伤更严重的受试者在所有认知领域表现更差),或者(2)HI损伤受试者中特定领域的结果是否不相关(表明对正交神经系统的不同损伤)。所有动物(假手术组和HI组)都接受了初始听觉测试,并被分配到额外的听觉测试(A组)或空间迷宫测试(B组)。这允许进行任务内(A组)和任务间(B组)的相关性分析。还获得了皮质、海马和脑室体积的解剖学测量值(作为HI损伤的指标),并将其与行为测量值进行相关性分析。结果表明,无论是假手术组还是HI组大鼠,幼年时期的听觉辨别与成年后的空间工作记忆(B组)均无相关性。相反,A组HI动物的早期听觉处理表现显著预测了成年后的听觉缺陷(p = 0.05;假手术组无相关性)。解剖学数据还揭示了HI组和假手术组不同脑区体积之间的显著关系,但HI组的解剖学测量值与任何行为测量值均无相关性(尽管我们在假手术组中看到海马体/空间的相关性,且方向符合预期)。总体而言,当前数据推动了用于表征新生儿个体HI相关病理学的工具的改进,这可以在特定认知/行为领域提供更准确的个体预后,从而改善针对患者的早期干预。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d17/4514580/7c38985fb173/nihms-667794-f0001.jpg

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