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体感皮层I区和II区在触觉处理方面的并行组织。

Parallel organization of somatosensory cortical areas I and II for tactile processing.

作者信息

Rowe M J, Turman A B, Murray G M, Zhang H Q

机构信息

School of Physiology and Pharmacology, University of New South Wales, Sydney, Australia.

出版信息

Clin Exp Pharmacol Physiol. 1996 Oct-Nov;23(10-11):931-8. doi: 10.1111/j.1440-1681.1996.tb01145.x.

DOI:10.1111/j.1440-1681.1996.tb01145.x
PMID:8911737
Abstract
  1. The two principal tactile processing areas in the cerebral cortex, somatosensory areas I and II, receive direct projections from the thalamus and, as well, are linked through intracortical reciprocal connections. Tactile information may therefore be conveyed to SII, for example, over either a direct path from the thalamus or an indirect, or serial, path from the thalamus via SI. 2. Reports in recent years that tactile responsiveness within the hand area of SII was abolished by surgical ablation of the hand area of the postcentral, or SI area of the cortex in the macaque and marmoset monkeys indicated that a serial processing scheme may operate at least in primates. However, as the surgical ablation is clearly irreversible and precludes examination of individual SII neurons in both the control and test circumstances, that is, when SI is intact and when it is inactivated, we have examined in the cat, the rabbit and the marmoset monkey the behaviour of SII neurons before, during and after the selective, rapidly-reversible inactivation of SI by means of localized cooling. 3. The results demonstrate that in the cat and rabbit, SII responsiveness is never abolished and infrequently affected by SI inactivation and that tactile inputs to SII therefore traverse a direct path from thalamus, organized in parallel with that to SI. In the marmoset (Callithrix jacchus), in contrast to earlier studies based on ablation of SI we found that with reversible inactivation of SI, SII responsiveness was unaffected in 25% of neurons and, although reduced in the remainder, was rarely abolished (< 10% of SII neurons). 4. The results indicate that there is substantial direct thalamic input to SII, even in this simian primate, and therefore necessitate revision of the hypothesis that tactile processing at the thalamocortical level in simian primates is based on a strict serial scheme in which tactile information is conveyed from the thalamus to SI and thence to SII.
摘要
  1. 大脑皮层中两个主要的触觉处理区域,即体感区I和II,接收来自丘脑的直接投射,并且还通过皮层内的相互连接相联系。因此,触觉信息可以通过例如从丘脑的直接路径或从丘脑经体感区I的间接或串行路径传递到体感区II。2. 近年来的报告显示,在猕猴和狨猴中,通过手术切除中央后回手部区域或皮层的体感区I,体感区II手部区域内的触觉反应性被消除,这表明至少在灵长类动物中可能存在串行处理模式。然而,由于手术切除显然是不可逆的,并且排除了在对照和测试情况下对单个体感区II神经元的检查,即在体感区I完整时和失活时,我们在猫、兔和狨猴中通过局部冷却选择性、快速可逆地使体感区I失活,研究了体感区II神经元在失活前、失活期间和失活后的行为。3. 结果表明,在猫和兔中,体感区II的反应性从未被消除,并且很少受到体感区I失活的影响,因此触觉输入到体感区II是通过从丘脑的直接路径传递的,该路径与传递到体感区I的路径并行组织。相比之下,在狨猴(狨属)中,与早期基于切除体感区I的研究不同,我们发现当体感区I可逆性失活时,25%的神经元中体感区II的反应性不受影响,并且尽管其余神经元的反应性降低,但很少被消除(体感区II神经元的<10%)。4. 结果表明,即使在这种猿猴灵长类动物中,也有大量来自丘脑的直接输入到体感区II,因此有必要修正这样一种假设,即猿猴灵长类动物丘脑皮质水平的触觉处理是基于一种严格的串行模式,其中触觉信息从丘脑传递到体感区I,然后再传递到体感区II。

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