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相关概念视频

Parkinson's Disease: Overview01:15

Parkinson's Disease: Overview

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Neurodegenerative disorders are progressive diseases that cause irreversible damage and loss to neurons in specific brain areas. Examples of these disorders include Parkinson's disease, Alzheimer's disease, Multiple Sclerosis (MS), and Amyotrophic Lateral Sclerosis (ALS). These disorders share characteristics such as proteinopathies, selective neuronal vulnerability, and a complex interplay between genetic and environmental factors. The primary therapeutic goal for these conditions is...
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Neuroplasticity01:01

Neuroplasticity

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Neuroplasticity reflects the brain's remarkable capacity to adapt and evolve, responding dynamically to learning, experiences, or injury by reorganizing its neural circuitry. This reorganization involves creating new neural connections and refining old ones through a series of biological processes that contribute to the brain's lifelong development and adaptability.
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Parkinson's Disease: Treatment01:24

Parkinson's Disease: Treatment

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Neurodegenerative disorders, such as Parkinson's Disease (PD), involve the gradual and irreversible destruction of neurons in particular brain areas. These disorders exhibit standard features like proteinopathies, selective vulnerability of some neurons, and an interaction of intrinsic properties, genetics, and environmental influences in neural injury.
Parkinson's Disease is primarily a result of the loss of dopaminergic neurons in the substantia nigra pars compacta. The cornerstone of...
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Neural Regulation01:37

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Digestion begins with a cephalic phase that prepares the digestive system to receive food. When our brain processes visual or olfactory information about food, it triggers impulses in the cranial nerves innervating the salivary glands and stomach to prepare for food.
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Embryonic and induced pluripotent stem cells are excellent models for disease research because of their ability to self-renew and differentiate into most cell types. Somatic cells from a patient are isolated and reprogrammed into induced pluripotent stem cells or iPSCs. These iPSCs are later differentiated into the desired cell type, which mirrors the diseased cell of the patient. In this way, disease models have been created for investigating diseases such as Down syndrome, type I diabetes,...
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Long-term potentiation, or LTP, is one of the ways by which synaptic plasticity—changes in the strength of chemical synapses—can occur in the brain. LTP is the process of synaptic strengthening that occurs over time between pre- and postsynaptic neuronal connections. The synaptic strengthening of LTP works in opposition to the synaptic weakening of long-term depression (LTD) and together are the main mechanisms that underlie learning and memory.
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相关实验视频

Updated: Jun 18, 2025

Murine Model for Parkinson's Disease: from 6-OH Dopamine Lesion to Behavioral Test
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在帕金森病中的神经可塑性.

Bogdan Ovidiu Popescu1,2, Lucia Batzu3,4, Pedro J Garcia Ruiz5

  • 1Department of Clinical Neurosciences, 'Carol Davila' University of Medicine and Pharmacy Bucharest, Bucharest, Romania. bogdan.popescu@umfcd.ro.

Journal of neural transmission (Vienna, Austria : 1996)
|August 5, 2024
PubMed
概括

帕金森病 (PD) 涉及多个层面的脑部变化. 本综述探讨了PD中的神经可塑性,检查了对治疗和疾病进展的有益和不适应反应.

关键词:
这是一个AMPAPAAMPA.这就是为什么BDNF是BDNF.生物标志物 生物标志物多巴胺是一种多巴胺.这是一个NMDANMDANMDA.神经可塑性 神经可塑性帕金森病是帕金森氏症的一种疾病.

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科学领域:

  • 神经科学是一个神经科学.
  • 神经学 神经学
  • 神经退行发生神经退行.

背景情况:

  • 帕金森病 (PD) 是一种流行的神经退行性疾病,发病率越来越高.
  • 虽然没有治愈方法,但有效的治疗方法可用于PD,即使在晚期.
  • 神经可塑性,大脑的适应能力,对于理解PD病理和治疗反应至关重要.

研究的目的:

  • 审查目前关于帕金森病神经可塑性的知识.
  • 检查PD中网络,细胞和分子水平上的神经塑性变化.
  • 分析PD中有益和有害的神经可塑性反应.

主要方法:

  • 在帕金森病中神经可塑性的文献综述.
  • 在网络,细胞和分子水平上分析神经可塑性.
  • 检查适应性和不适应性神经可塑性,包括治疗效应.

主要成果:

  • 在PD中神经可塑性涉及复杂的网络,细胞和分子适应.
  • 有益的神经可塑性效应包括增强的神经元功效.
  • 可能会发生不适应性神经可塑性,例如勒沃多巴诱导的功能障碍症.

结论:

  • 了解神经可塑性是治疗帕金森病的关键.
  • 身体活动和治疗可以调节PD中的神经可塑性.
  • 对神经可塑性的生物标志物识别具有治疗潜力.