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前脑连合与视觉记忆:一种新方法。

Forebrain commissures and visual memory: a new approach.

作者信息

Doty R W, Ringo J L, Lewine J D

机构信息

Center for Brain Research, University of Rochester, NY 14642.

出版信息

Behav Brain Res. 1988 Aug;29(3):267-80. doi: 10.1016/0166-4328(88)90031-9.

Abstract

The primary purpose of these exploratory experiments was to determine: (1) whether the forebrain commissures can provide full accessibility of the mnemonic store to either hemisphere when the taks involves memory for 'events' (images) rather than, as in essentially all previous tests on split-brain animals, memory for 'rules' (discrimination habits); and (2) whether the anterior commissure (AC) alone is capable of such function. Macaques, with optic chiasm transected to allow limitation of direct visual input to one or the other hemisphere, were trained on tasks requiring recognition of previously viewed photographic slides. For one task, delayed-matching-to-sample (DMTS), the animal was presented with a 'sample' image, and then 0-15s later was required to choose that image in preference to a second image concurrently displayed. On the other task, running recognition (RR), a series of images was presented, some of which were repetitions of images previously seen in that session, and the animal was required to signal its recognition of these repetitions. For either task the initial presentation could be made to one eye and hemisphere, and subsequent recognition required of the other. In such circumstance, if all forebrain commissures were divided, such interhemispheric recognition was no longer possible. For the DMTS task if either the AC or 5 mm of the splenium of the corpus callosum were available, interhemispheric recognition was basically equivalent to that using the same eye and hemisphere. However, interhemispheric accuracy with the RR task, while well above chance levels, was consistently inferior to that achieved intrahemispherically when complex scenes or objects were viewed. This is probably a consequence mostly of the differing visual fields of the two eyes, since interhemispheric accuracy was greatly improved by use of images having approximately identical right and left halves. No consistent hemispheric specialization nor difference in direction of interhemispheric communication was observed despite the use of different types of material and the different mnemonic tasks. It is concluded that the AC in macaques can achieve full and continuously operative neural unification of the mnemonic traces of past experience.

摘要

这些探索性实验的主要目的是确定

(1)当任务涉及对“事件”(图像)的记忆而非如以往对裂脑动物进行的几乎所有测试那样对“规则”(辨别习惯)的记忆时,前脑连合是否能使记忆库对任一脑半球完全可及;以及(2)单独的前连合(AC)是否具备这种功能。将猕猴的视交叉切断,以限制直接视觉输入仅进入一侧或另一侧脑半球,然后对它们进行需要识别先前看过的幻灯片的任务训练。对于一项任务,即延迟匹配样本(DMTS)任务,向动物呈现一张“样本”图像,然后在0至15秒后要求它从同时显示的第二张图像中优先选择该图像。在另一项任务,即连续识别(RR)任务中,呈现一系列图像,其中一些是该实验环节中先前见过的图像的重复,要求动物对这些重复图像做出识别信号。对于这两项任务,初始呈现都可以针对一只眼睛和一个脑半球进行,而后续识别则要求另一只眼睛和另一个脑半球进行。在这种情况下,如果所有前脑连合都被切断,这种半球间的识别就不再可能。对于DMTS任务,如果AC或胼胝体压部的5毫米部分完好,半球间的识别基本上等同于使用同一眼睛和脑半球时的情况。然而,在RR任务中,半球间的准确性虽然远高于随机水平,但在观看复杂场景或物体时,始终低于半球内所达到的准确性。这可能主要是由于两只眼睛视野不同所致,因为使用左右两半大致相同的图像时,半球间的准确性有了很大提高。尽管使用了不同类型的材料和不同的记忆任务,但未观察到一致的半球特化现象,也未观察到半球间交流方向上的差异。得出的结论是,猕猴的AC能够实现过去经验记忆痕迹的完全且持续运作的神经统一。

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