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Synaptic Plasticity and Function in the Mormyrid cerebellum

Synaptic Plasticity and Function in the Mormyrid cerebellum
Mormyrid 小脑的突触可塑性和功能
批准号:
0920672
负责人:
Victor Han
金额:
$31.1万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2010-01-31

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中文摘要
翻译
该奖项是根据2009年美国复苏和再投资法案(公法111-5)资助的。小脑是大脑的一大部分,参与感觉运动控制和运动学习以及认知。大多数科学家认为运动学习是在两个不同的部位介导的,小脑皮质和小脑深核(DCN)。小脑皮质的所有作用都是由DCN神经元的浦肯野细胞抑制介导的。然而,我们对DCN细胞如何整合来自浦肯野细胞的抑制性输入与来自其他来源的兴奋性输入的理解受到哺乳动物中这两种重要细胞类型之间的大空间分离的阻碍。本计画聚焦于一个特殊的系统,即长颌鱼的小脑尾叶,在那里这两种细胞类型紧密相连。这两种细胞类型在海马小脑中的接近性将允许PI在体外切片制备中同时记录两种细胞类型。 这样的记录将允许精确地确定浦肯野细胞对其靶神经元的影响。在这个突触的突触动力学和可塑性的测定将推进我们对小脑的功能电路的理解。 科学教师和学生们对莫米里德电鱼以及它们用来探测环境和与其他鱼类交流的电脉冲很感兴趣。当地学校的学生和教师将参加这个项目,通过动手实验检查这些鱼及其排放物。这些实验将有助于激发学生对生物和物理科学的兴趣。目标是使电鱼成为科学课程的一部分。
英文摘要
This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).The cerebellum is a large part of the brain that is involved in sensory-motor control and motor learning as well as in cognition. Most scientists consider that motor learning is mediated at two separate sites, the cerebellar cortex and the deep cerebellar nuclei (DCN). All effects of the cerebellar cortex are mediated by Purkinje cell inhibition of DCN neurons. However, our understanding of how cells of the DCN integrate inhibitory input from Purkinje cells with excitatory input from other sources has been impeded by the large spatial separation between these two important cell types in mammals. This project focuses on a special system, the caudal cerebellar lobe of mormyrid fish, where these two cell types are close together. The proximity of these two cell types in the mormyrid cerebellum will allow the PI to record simultaneously from both cell types in an in vitro slice preparation. Such recording will allow the effects of Purkinje cells on their target neurons to be determined precisely. Determination of synaptic dynamics and plasticity at this synapse will advance our understanding of the functional circuitry of the cerebellum. Science teachers and students are intrigued by mormyrid electric fish and the electrical pulses they use to probe the environment and communicate with other fish. Groups of students and teachers from local schools will participate in this project examining these fish and their discharges through hands-on experiments. Such experiments will help stimulate student interest in both the biological and physical sciences. The goal will be to make electric fish part of the science curriculum.
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Dynamic Homeostatic Plasticity within Cerebellar Circuitry
  • 批准号:
    1929489
  • 项目类别:
    Standard Grant
  • 资助金额:
    $60.0万
  • 财政年份:
    2020
  • 负责人:
    Victor Han
  • 依托单位:
Synaptic Plasticity and Function in the Mormyrid cerebellum
  • 批准号:
    1001767
  • 项目类别:
    Standard Grant
  • 资助金额:
    $31.1万
  • 财政年份:
    2009
  • 负责人:
    Victor Han
  • 依托单位:
海外基金