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痴呆患者非言语感知的解剖学关联

Anatomical Correlates of Non-Verbal Perception in Dementia Patients.

作者信息

Lin Pin-Hsuan, Chen Hsiu-Hui, Chen Nai-Ching, Chang Wen-Neng, Huang Chi-Wei, Chang Ya-Ting, Hsu Shih-Wei, Hsu Che-Wei, Chang Chiung-Chih

机构信息

Department of Health and Beauty, Shu-Zen Junior College of Medicine and Management Kaohsiung, Taiwan.

Department of Physical Education, National Kaohsiung University of Applied Science Kaohsiung, Taiwan.

出版信息

Front Aging Neurosci. 2016 Aug 31;8:207. doi: 10.3389/fnagi.2016.00207. eCollection 2016.

Abstract

PURPOSE

Patients with dementia who have dissociations in verbal and non-verbal sound processing may offer insights into the anatomic basis for highly related auditory modes.

METHODS

To determine the neuronal networks on non-verbal perception, 16 patients with Alzheimer's dementia (AD), 15 with behavior variant fronto-temporal dementia (bv-FTD), 14 with semantic dementia (SD) were evaluated and compared with 15 age-matched controls. Neuropsychological and auditory perceptive tasks were included to test the ability to compare pitch changes, scale-violated melody and for naming and associating with environmental sound. The brain 3D T1 images were acquired and voxel-based morphometry (VBM) was used to compare and correlated the volumetric measures with task scores.

RESULTS

The SD group scored the lowest among 3 groups in pitch or scale-violated melody tasks. In the environmental sound test, the SD group also showed impairment in naming and also in associating sound with pictures. The AD and bv-FTD groups, compared with the controls, showed no differences in all tests. VBM with task score correlation showed that atrophy in the right supra-marginal and superior temporal gyri was strongly related to deficits in detecting violated scales, while atrophy in the bilateral anterior temporal poles and left medial temporal structures was related to deficits in environmental sound recognition.

CONCLUSIONS

Auditory perception of pitch, scale-violated melody or environmental sound reflects anatomical degeneration in dementia patients and the processing of non-verbal sounds are mediated by distinct neural circuits.

摘要

目的

在言语和非言语声音处理方面存在分离现象的痴呆患者,可能有助于深入了解高度相关听觉模式的解剖学基础。

方法

为了确定非言语感知的神经网络,对16例阿尔茨海默病(AD)患者、15例行为变异型额颞叶痴呆(bv - FTD)患者、14例语义性痴呆(SD)患者进行评估,并与15名年龄匹配的对照者进行比较。纳入神经心理学和听觉感知任务,以测试比较音高变化、违反音阶的旋律以及对环境声音进行命名和联想的能力。采集脑部三维T1图像,并使用基于体素的形态计量学(VBM)来比较体积测量值与任务分数,并进行相关性分析。

结果

在音高或违反音阶的旋律任务中,SD组在三组中得分最低。在环境声音测试中,SD组在命名以及将声音与图片联想方面也表现出障碍。与对照组相比,AD组和bv - FTD组在所有测试中均无差异。VBM与任务分数的相关性分析表明,右侧缘上回和颞上回的萎缩与检测违反音阶的缺陷密切相关,而双侧前颞极和左侧内侧颞叶结构的萎缩与环境声音识别缺陷有关。

结论

对音高、违反音阶的旋律或环境声音的听觉感知反映了痴呆患者的解剖学退变,并且非言语声音的处理由不同的神经回路介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd7e/5005819/77f83fcb4c46/fnagi-08-00207-g0001.jpg

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