Quality Controls: The Role of Self-Corrective Science in Explorations of Primate Memory Systems

IF 2.4 3区 医学 Q3 NEUROSCIENCES Hippocampus Pub Date : 2024-12-10 DOI:10.1002/hipo.23667
Elisabeth A. Murray
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Abstract

In 1978, Mort Mishkin published a landmark paper describing a monkey model of H.M.'s dense, global amnesia. It depended on a combined removal of the amygdala and hippocampus (the A + H lesion) and a memory test called delayed nonmatching-to-sample (DNMS). My first project examined whether the impairment Mishkin had found in visual memory generalized to tactual stimuli. However, to gain access to the hippocampus and amygdala with 1980s surgical methods, we had to remove the underlying cortex. When we were able to test the effects of bilateral removal of that underlying cortex (the entorhinal and perirhinal cortex, or “rhinal cortex” for short) we obtained a dramatic result. This so-called “control” lesion caused a profound impairment on the DNMS task. A few years later, excitotoxic A + H lesions, which left the rhinal cortex intact, confirmed that removal of the cortical “impediments” had caused the entire memory impairment that Mishkin had observed. These results: (1) forced a reconsideration of the monkey model of global anterograde amnesia; (2) spurred study of the independent contributions of the amygdala, hippocampus, and perirhinal cortex to cognition; and (3) led to the realization that the DNMS task did not test the kinds of memory that H.M. lost after his surgery.

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质量控制:自我纠正科学在灵长类动物记忆系统探索中的作用。
1978年,莫特·米什金(Mort Mishkin)发表了一篇具有里程碑意义的论文,描述了H.M.的猴子模型这是一种密集的、全球性的健忘症。它依赖于杏仁核和海马体(a + H损伤)的联合去除和一种称为延迟不匹配样本(DNMS)的记忆测试。我的第一个项目是研究米什金在视觉记忆中发现的缺陷是否会扩展到触觉刺激。然而,为了用20世纪80年代的手术方法进入海马体和杏仁核,我们必须切除底层皮层。当我们能够测试双侧切除底层皮层(内嗅和外嗅皮层,简称“鼻皮层”)的效果时,我们得到了一个戏剧性的结果。这种所谓的“对照”损伤对DNMS任务造成了严重损害。几年后,兴奋性A + H损伤,鼻腔皮层完好无损,证实了皮质“障碍”的移除导致了米什金所观察到的整个记忆障碍。这些结果:(1)迫使人们重新考虑猴子整体顺行性遗忘模型;(2)促进了杏仁核、海马体和周围皮层对认知的独立贡献的研究;(3)让我们认识到,DNMS任务并没有测试H.M.在手术后失去的记忆。
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来源期刊
Hippocampus
Hippocampus 医学-神经科学
CiteScore
5.80
自引率
5.70%
发文量
79
审稿时长
3-8 weeks
期刊介绍: Hippocampus provides a forum for the exchange of current information between investigators interested in the neurobiology of the hippocampal formation and related structures. While the relationships of submitted papers to the hippocampal formation will be evaluated liberally, the substance of appropriate papers should deal with the hippocampal formation per se or with the interaction between the hippocampal formation and other brain regions. The scope of Hippocampus is wide: single and multidisciplinary experimental studies from all fields of basic science, theoretical papers, papers dealing with hippocampal preparations as models for understanding the central nervous system, and clinical studies will be considered for publication. The Editor especially encourages the submission of papers that contribute to a functional understanding of the hippocampal formation.
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