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Pattern of cortical connections of the ventral premotor cortex in a new world monkey: Impact of a primary motor cortex lesion.

机译:新世界猴腹侧运动前皮质的皮质连接模式:原发性运动皮质病变的影响。

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摘要

The present study aimed at describing (1) the pattern of connections of the physiologically defined ventral premotor (PMv) hand representation in squirrel monkeys and (2) the impact of a primary motor cortex (M1) lesion on this pattern of connection.;Neuroanatomical tracing methods were combined with neurophysiological and histochemical techniques to allow precise documentation of the injections cores locations and the distribution of connections in relation to the hand area of PMv, M1, the primary somatosensory cortex (S1) and the supplementary motor area. Results obtained in naive animals were compared to the one obtained from animals that recovered for several months from an ischemic infarct destroying the majority of the hand representation in M1.;In naive animals, we show that the pattern of connection with M1 is far more complex than originally expected and that connections with S1 hand area are very sparse and inconsistent across cases. Following the recovery from an M1 ischemic lesion, we show that PMv (1) ipsilesional connections reorganized at the rostral border of the lesion and form novel atypical connections with the somatosensory area 1/2 hand representation; (2) interhemispheric connections with contralesional M1 are increased; (3) that the disruption of connectivity of PMv with M1 is not the factor triggering the physiological expansion of PMv hand representation in the ipsilesional hemisphere.;Results presented provide significant improvement of our knowledge of PMv connections in naive animals. This new information challenges conventional thinking concerning the relation of PMv with M1 and S1. In addition, the extensive anatomical cortical plasticity we describe in the central nervous system (CNS) of adult animals was previously unsuspected. It reveals tremendous adaptive capacity of the CNS that could certainly be exploited for maximization of recovery following an injury, such as might occur following stroke. We thus believe that the set of data presented will have great repercussions on the diverse fields of neuroanatomy, motor control, plasticity and rehabilitation following central nervous system injury.
机译:本研究旨在描述(1)松鼠猴中生理定义的腹侧前运动(PMv)手表示的连接方式,以及(2)原发性运动皮层(M1)病变对该连接方式的影响。示踪方法与神经生理学和组织化学技术相结合,可以精确记录注射药心的位置以及与PMv,M1,手部体感皮层(S1)和辅助运动区有关的连接分布。将在幼稚动物中获得的结果与从缺血性梗死中恢复数月而破坏M1的大部分手部表现的动物中获得的结果进行了比较;在幼稚动物中,我们表明与M1的联系方式要复杂得多与最初的预期相比,与S1手区域的连接非常稀疏且在不同情况下不一致。从M1缺血性病变中恢复后,我们显示PMv(1)病变连接在病变的鼻端边界处重组,并与体感区1/2手表示形成新颖的非典型连接; (2)与对侧M1的半球间连接增加; (3)PMv与M1的连通性破坏不是触发同侧半球PMv手的生理扩展的因素;所呈现的结果大大改善了我们对幼稚动物PMv连接的认识。这一新信息挑战了有关PMv与M1和S1之间关系的传统思维。此外,我们以前没有想到我们在成年动物的中枢神经系统(CNS)中描述的广泛的解剖学皮质可塑性。它揭示了CNS的巨大适应能力,可以肯定地利用它来最大化受伤后的恢复能力,例如中风后可能发生的恢复。因此,我们认为,提出的数据集将对神经解剖学,运动控制,可塑性和中枢神经系统损伤后的康复等各个领域产生巨大影响。

著录项

  • 作者

    Dancause, Numa.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 421 p.
  • 总页数 421
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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