虚拟现实调节神经可塑性的动态:神经运动康复的创新。

IF 2.9 3区 医学 Q2 NEUROSCIENCES
Neuroscience Pub Date : 2025-02-06 Epub Date: 2024-12-24 DOI:10.1016/j.neuroscience.2024.12.040
Nitu L Wankhede, Sushruta Koppula, Suhas Ballal, Hardik Doshi, Rohit Kumawat, SSrinadh Raju, Isha Arora, Shivkumar S Sammeta, Mohammad Khalid, Ameeduzzafar Zafar, Brijesh G Taksande, Aman B Upaganlawar, Monica Gulati, Milind J Umekar, Spandana Rajendra Kopalli, Mayur B Kale
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引用次数: 0

摘要

虚拟现实(VR)技术已经成为神经科学领域的突破性工具,彻底改变了我们对神经可塑性及其对神经康复的影响的理解。通过将个体沉浸在模拟环境中,VR诱导深刻的神经生物学转化,影响神经元连接、感觉反馈机制、运动学习过程和认知功能。这些变化突出了分子事件、突触适应和神经重组之间的动态相互作用,强调了VR作为各种神经系统疾病治疗干预的潜力。这篇全面的综述深入探讨了VR的治疗应用,重点是它在治疗多种疾病中的作用,如中风、创伤性脑损伤、恐惧症和创伤后应激障碍。它突出了VR如何增强运动恢复、认知康复和情绪恢复能力,展示了其作为神经康复创新和有效工具的潜力。将分子神经科学与VR技术相结合,可以更深入地了解神经可塑性的分子机制,为神经损伤患者的个性化干预和精确治疗策略打开大门。此外,该综述强调了在临床实践中实施基于vr的干预措施所带来的伦理考虑和挑战,强调了数据隐私、知情同意和跨学科合作努力的重要性。通过利用先进的分子成像技术、基于VR的研究方法和计算模型,该综述展望了VR技术在革命性神经科学研究和临床神经康复中发挥核心作用的未来,最终为面临神经系统挑战的个人提供量身定制的有效解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual reality modulating dynamics of neuroplasticity: Innovations in neuro-motor rehabilitation.

Virtual reality (VR) technology has emerged as a ground-breaking tool in neuroscience, revolutionizing our understanding of neuroplasticity and its implications for neurological rehabilitation. By immersing individuals in simulated environments, VR induces profound neurobiological transformations, affecting neuronal connectivity, sensory feedback mechanisms, motor learning processes, and cognitive functions. These changes highlight the dynamic interplay between molecular events, synaptic adaptations, and neural reorganization, emphasizing the potential of VR as a therapeutic intervention in various neurological disorders. This comprehensive review delves into the therapeutic applications of VR, focusing on its role in addressing multiple conditions such as stroke, traumatic brain injuries, phobias, and post-traumatic stress disorder. It highlights how VR can enhance motor recovery, cognitive rehabilitation, and emotional resilience, showcasing its potential as an innovative and effective tool in neurological rehabilitation. Integrating molecular neuroscience with VR technology allows for a deeper understanding of the molecular mechanisms underlying neuroplasticity, opening doors to personalized interventions and precise treatment strategies for individuals with neurological impairments. Moreover, the review emphasizes the ethical considerations and challenges that come with implementing VR-based interventions in clinical practice, stressing the importance of data privacy, informed consent, and collaborative interdisciplinary efforts. By leveraging advanced molecular imaging techniques, VR-based research methodologies, and computational modelling, the review envisions a future where VR technology plays a central role in revolutionizing neuroscience research and clinical neurorehabilitation, ultimately providing tailored and impactful solutions for individuals facing neurological challenges.

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来源期刊
Neuroscience
Neuroscience 医学-神经科学
CiteScore
6.20
自引率
0.00%
发文量
394
审稿时长
52 days
期刊介绍: Neuroscience publishes papers describing the results of original research on any aspect of the scientific study of the nervous system. Any paper, however short, will be considered for publication provided that it reports significant, new and carefully confirmed findings with full experimental details.
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