Neural correlates of auditory comprehension and integration of sanskrit verse: a functional MRI study.

IF 2.7 3区 医学 Q1 ANATOMY & MORPHOLOGY Brain Structure & Function Pub Date : 2025-01-09 DOI:10.1007/s00429-025-02892-x
Uttam Kumar, Himanshu Raj Pandey, Kalpana Dhanik, Prakash Padakannaya
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Abstract

In this investigation, we delve into the neural underpinnings of auditory processing of Sanskrit verse comprehension, an area not previously explored by neuroscientific research. Our study examines a diverse group of 44 bilingual individuals, including both proficient and non-proficient Sanskrit speakers, to uncover the intricate neural patterns involved in processing verses of this ancient language. Employing an integrated neuroimaging approach that combines functional connectivity-multivariate pattern analysis (fc-MVPA), voxel-based univariate analysis, seed-based connectivity analysis, and the use of sparse fMRI techniques to minimize the interference of scanner noise, we highlight the brain's adaptability and ability to integrate multiple types of information. Our findings from fc-MVPA reveal distinct connectivity patterns in proficient Sanskrit speakers, particularly involving the bilateral inferior temporal, left middle temporal, bilateral orbitofrontal, and bilateral occipital pole. Voxel-based univariate analysis showed significant activation in the right middle frontal gyrus, bilateral caudate nuclei, bilateral middle occipital gyri, left lingual gyrus, bilateral inferior parietal lobules, and bilateral inferior frontal gyri. Seed-based connectivity analysis further emphasizes the interconnected nature of the neural networks involved in language processing, demonstrating how these regions collaborate to support complex linguistic tasks. This research reveals how the brain processes the complex syntactic and semantic elements of Sanskrit verse. Findings indicate that proficient speakers effectively navigate intricate syntactic structures and semantic associations, engaging multiple brain regions in coordination. By examining the cognitive mechanisms underlying Sanskrit verse comprehension, which shares rhythmic and structural features with music and poetry, this study highlights the neural connections between language, culture, and cognition.

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梵文诗听觉理解与整合的神经关联:功能性核磁共振研究。
在这项研究中,我们深入研究了梵文诗歌理解的听觉处理的神经基础,这是一个以前没有被神经科学研究探索过的领域。我们的研究调查了44个不同的双语群体,包括精通和不精通梵语的人,以揭示处理这种古老语言诗句所涉及的复杂神经模式。采用综合神经成像方法,结合功能连接-多变量模式分析(fc-MVPA),基于体素的单变量分析,基于种子的连接分析,以及使用稀疏fMRI技术来最大限度地减少扫描仪噪声的干扰,我们强调了大脑的适应性和整合多种类型信息的能力。我们从fc-MVPA的研究结果显示,精通梵语的人有明显的连接模式,特别是涉及到双侧颞下极、左颞中极、双侧眶额极和双侧枕极。基于体素的单变量分析显示,右侧额叶中回、双侧尾状核、双侧枕叶中回、左侧舌回、双侧顶叶下小叶和双侧额叶下回显著激活。基于种子的连通性分析进一步强调了涉及语言处理的神经网络的互联性,展示了这些区域如何协作以支持复杂的语言任务。这项研究揭示了大脑是如何处理梵文诗中复杂的句法和语义元素的。研究结果表明,熟练的说话者能够有效地驾驭复杂的句法结构和语义关联,使大脑多个区域协同工作。梵文诗歌与音乐和诗歌具有相同的节奏和结构特征,通过研究其理解背后的认知机制,本研究突出了语言、文化和认知之间的神经联系。
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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
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