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本文引用的文献

1
Preserved functional specialization for spatial processing in the middle occipital gyrus of the early blind.早期盲人的中枕叶回中空间处理功能的保留与专业化。
Neuron. 2010 Oct 6;68(1):138-48. doi: 10.1016/j.neuron.2010.09.021.
2
Reduced Hippocampal Activation During Recall is Associated with Elevated FMR1 mRNA and Psychiatric Symptoms in Men with the Fragile X Premutation.脆性X前突变男性在回忆过程中海马激活减少与FMR1 mRNA升高及精神症状相关。
Brain Imaging Behav. 2008 Jan 18;2(2):105-116. doi: 10.1007/s11682-008-9020-9.
3
Working memory-related hippocampal deactivation interferes with long-term memory formation.与工作记忆相关的海马体失活会干扰长期记忆的形成。
J Neurosci. 2009 Jan 28;29(4):1052-960. doi: 10.1523/JNEUROSCI.5277-08.2009.
4
Cross-modal plasticity for the spatial processing of sounds in visually deprived subjects.视觉剥夺受试者声音空间处理的跨模态可塑性。
Exp Brain Res. 2009 Jan;192(3):343-58. doi: 10.1007/s00221-008-1553-z. Epub 2008 Sep 2.
5
The contribution of the inferior parietal lobe to auditory spatial working memory.顶下小叶对听觉空间工作记忆的作用。
J Cogn Neurosci. 2008 Feb;20(2):285-95. doi: 10.1162/jocn.2008.20014.
6
Differential occipital responses in early- and late-blind individuals during a sound-source discrimination task.早期和晚期失明个体在声源辨别任务中的枕叶差异反应。
Neuroimage. 2008 Apr 1;40(2):746-758. doi: 10.1016/j.neuroimage.2007.12.020. Epub 2007 Dec 23.
7
A frontoparietal network for spatial attention reorienting in the auditory domain: a human fMRI/MEG study of functional and temporal dynamics.用于听觉领域空间注意力重新定向的额顶叶网络:一项关于功能和时间动态的人类功能磁共振成像/脑磁图研究。
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9
Left inferior parietal representations for skilled hand-object interactions: evidence from stroke and corticobasal degeneration.左侧下顶叶在熟练的手部与物体交互中的表征:来自中风和皮质基底节变性的证据。
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10
Learning-induced plasticity in auditory spatial representations revealed by electrical neuroimaging.通过电神经成像揭示听觉空间表征中学习诱导的可塑性。
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早期失明者的跨听觉-空间学习。

Cross auditory-spatial learning in early-blind individuals.

机构信息

Applied Cognitive Neuroscience Laboratory, Department of Rehabilitation Sciences, The Hong Kong Polytechnic University, Hong Kong, China.

出版信息

Hum Brain Mapp. 2012 Nov;33(11):2714-27. doi: 10.1002/hbm.21395. Epub 2011 Sep 20.

DOI:10.1002/hbm.21395
PMID:21932260
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6870129/
Abstract

Cross-modal processing enables the utilization of information received via different sensory organs to facilitate more complicated human actions. We used functional MRI on early-blind individuals to study the neural processes associated with cross auditory-spatial learning. The auditory signals, converted from echoes of ultrasonic signals emitted from a navigation device, were novel to the participants. The subjects were trained repeatedly for 4 weeks in associating the auditory signals with different distances. Subjects' blood-oxygenation-level-dependent responses were captured at baseline and after training using a sound-to-distance judgment task. Whole-brain analyses indicated that the task used in the study involved auditory discrimination as well as spatial localization. The learning process was shown to be mediated by the inferior parietal cortex and the hippocampus, suggesting the integration and binding of auditory features to distances. The right cuneus was found to possibly serve a general rather than a specific role, forming an occipital-enhanced network for cross auditory-spatial learning. This functional network is likely to be unique to those with early blindness, since the normal-vision counterparts shared activities only in the parietal cortex.

摘要

跨模态处理使人们能够利用通过不同感觉器官接收到的信息来促进更复杂的人类行为。我们使用功能磁共振成像技术研究了早期失明者与跨听觉-空间学习相关的神经过程。参与者接收到的听觉信号是由导航设备发出的超声波信号的回声转换而来的,对他们来说是新颖的。在 4 周的时间里,参与者被反复训练将听觉信号与不同的距离联系起来。使用声音到距离判断任务在基线和训练后采集参与者的血氧水平依赖反应。全脑分析表明,该研究中使用的任务涉及听觉辨别和空间定位。研究结果表明,学习过程是由顶下小叶和海马介导的,这表明听觉特征与距离的整合和绑定。右侧楔叶可能起到一般而非特定的作用,为跨听觉-空间学习形成一个枕叶增强网络。这个功能网络可能是早期失明者所特有的,因为正常视力者仅在顶叶皮层共享活动。