paper-with-me

홈 › Papers

Cortical representations of Auditory Perception using Graph Independent Component on EEG

2021-10-21 · Pranav Sankhe, Ritik Madan

Recent studies indicate that the neurons involved in a cognitive task aren't locally limited but span out to multiple human brain regions. We obtain network components and their locations for the task of listening to music. The recorded EEG data is modeled as a graph, and it is assumed that the overall activity is a contribution of several independent subnetworks. To identify these intrinsic cognitive subnetworks corresponding to music perception, we propose to decompose the whole brain graph-network into multiple subnetworks. We perform this decomposition to a group of brain networks by performing Graph-Independent Component Analysis. Graph-ICA is a variant of ICA that decomposes the measured graph into independent source graphs. Having obtained independent subnetworks, we calculate the electrode positions by computing the local maxima of these subnetwork matrices. We observe that the computed electrodes' location corresponds to the temporal lobes and the Broca's area, which are indeed involved in the task of auditory processing and perception. The computed electrodes also span the brain's frontal lobe, which is involved in attention and generating a stimulus-evoked response. The weight of the subnetwork that corresponds to the aforementioned brain regions increases with the increase in the music recording's tempo. The results suggest that whole-brain networks can be decomposed into independent subnetworks and analyze cognitive responses to music stimulus.

📄 PDF Abstract BibTeX arXiv:2110.12904

Code (0)

등록된 구현이 없습니다.

Tasks

EEGElectroencephalogram (EEG)

Methods 이 논문이 사용한 방법론

ICA _Independent component analysis (ICA) is a statistical and computational technique for revealing hidden factors that underlie sets of random variables, measurements, or…

Similar Papers 제목 키워드 기반

End-to-end Topographic Auditory Models Replicate Signatures of Human Auditory Cortex

2025-09-28 · Haider Al-Tahan, Mayukh Deb, Jenelle Feather, N. Apurva Ratan Murty arxiv

The human auditory cortex is topographically organized. Neurons with similar response properties are spatially clustered, forming smooth maps for acoustic features such as frequency in early auditory areas, and modular r…

Frequency and frequency modulation share the same predictive encoding mechanisms in human auditory cortex

2021-10-26 · Jasmin Stein, Katharina von Kriegstein, Alejandro Tabas

Expectations can substantially influence perception. Predictive coding is a theory of sensory processing that aims to explain the neural mechanisms underlying the effect of expectations in sensory processing. Its main as…

Prediction

Fast frequency modulation is encoded according to the listener expectations in the human subcortical auditory pathway

2021-08-04 · Alejandro Tabas, Stefan Kiebel, Michael Marxen, Katharina von Kriegstein

Expectations aid and bias our perception. In speech, expected words are easier to recognise than unexpected words, particularly in noisy environments, and incorrect expectations can make us misunderstand our conversation…

speech-recognitionSpeech Recognition

Early processing of consonance and dissonance in human auditory cortex

2017-11-30

Pitch is the perceptual correlate of sound's periodicity and a fundamental property of the auditory sensation. The interaction of two or more pitches gives rise to a sensation that can be characterized by its degree of c…

Predicting Artificial Neural Network Representations to Learn Recognition Model for Music Identification from Brain Recordings

2024-12-20 · Taketo Akama, Zhuohao Zhang, Pengcheng Li, Kotaro Hongo 외

Recent studies have demonstrated that the representations of artificial neural networks (ANNs) can exhibit notable similarities to cortical representations when subjected to identical auditory sensory inputs. In these st…

EEG