A number of electroencephalography (EEG) studies have investigated the time course of brain activation during overt word production. The interpretation of their results is complicated by the fact that articulatory movements may mask the cognitive components of interest. The first aim of the present study was to investigate when speech artifacts occur during word production planning and what effects they have on the spatio-temporal neural activation pattern. The second aim was to propose a new method that strongly attenuates speech artifacts during overt picture naming and to compare it with existing methods. EEG and surface electromyograms (EMGs) of the lips were recorded while participants overtly named pictures in a picture-word interference paradigm. The comparison of the raw data with lip EMG and the comparison of source localizations of raw and corrected EEG data showed that speech artifacts occurred mainly from ~400 ms post-stimulus onset, but some earlier artifacts mean that they occur much earlier than hitherto assumed. We compared previously used methods of speech artifacts removal (SAR) with a new method, which is based on Independent Component Analysis (SAR-ICA). Our new method clearly outperformed other methods. In contrast to other methods, there was only a weak correlation between the lip EMG and the corrected data by SAR-ICA. Also, only the data corrected with our method showed activation of cerebral sources consistent with meta-analyses of word production.
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IEEE/ACM Trans Audio Speech Lang Process
February 2024
CRSS: Center for Robust Speech Systems; Cochlear Implant Processing Laboratory (CILab), Department of Electrical and Computer Engineering, University of Texas at Dallas, USA.
The presence of background noise or competing talkers is one of the main communication challenges for cochlear implant (CI) users in speech understanding in naturalistic spaces. These external factors distort the time-frequency (T-F) content including magnitude spectrum and phase of speech signals. While most existing speech enhancement (SE) solutions focus solely on enhancing the magnitude response, recent research highlights the importance of phase in perceptual speech quality.
View Article and Find Full Text PDFObjectives: The current gold standard for immunofluorescent (IF) visualization of neuromuscular junctions (NMJs) in muscle utilizes frozen tissue sections with fluorescent conjugated antibodies to demarcate neurons and IF alpha-bungarotoxin (α-BTX) to demarcate motor endplates. Frozen tissue sectioning comes with inherent inescapable limitations, including cryosectioning artifact and limited sample shelf-life. However, a parallel approach to identify NMJs in paraffin-embedded tissue sections has not been previously described.
View Article and Find Full Text PDFComput Biol Med
December 2024
École de technologie supérieure, 1100 Notre-Dame St W, Montreal, H3C 1K3, Quebec, Canada; Centre for Interdisciplinary Research in Music Media and Technology (CIRMMT), 527 Rue Sherbrooke O #8, Montréal, QC H3A 1E3, Canada. Electronic address:
Background: Although stress plays a key role in tinnitus and decreased sound tolerance, conventional hearing devices used to manage these conditions are not currently capable of monitoring the wearer's stress level. The aim of this study was to assess the feasibility of stress monitoring with an in-ear device.
Method: In-ear heartbeat sounds and clinical-grade electrocardiography (ECG) signals were simultaneously recorded while 30 healthy young adults underwent a stress protocol.
AJNR Am J Neuroradiol
December 2024
From the Department of Radiology, (Luca Pasquini), Yale New Haven Hospital, Yale Medical School, New Haven, CT, USA; Department of Radiology (Luca Pasquini, Mehrnaz Jenabi, Andrei I. Holodny), Memorial Sloan Kettering Cancer Center, New York, NY, USA; Department of Medical Physics (Antonio Napolitano, Leonardo Spitoni), Bambino Gesù Children's Hospital, Rome, Italy; Department of Engineering (Maurizio Schmid), University Roma Tre, Rome, Italy; Department of Radiology (Francesco Dellepiane) Bambino Gesù Children's Hospital, Rome, Italy; Department of Medical Physics (Kyung K. Peck), Memorial Sloan Kettering Cancer Center, New York, NY, USA; Department of Radiology (Andrei I. Holodny), Weill Medical College of Cornell University, New York, NY, USA; Department of Neuroscience (Andrei I. Holodny), Weill Cornell Graduate School of the Medical Sciences, New York, NY, USA.
Background And Purpose: The interaction between language and other cognitive networks in patients harboring brain tumors is poorly understood. We studied the modification of the cognitive control network (CCN) induced by brain tumors and its participation in language reorganization. We hypothesized that patients with brain tumors and reorganized language would show modification of the CCN compared to patients who remain left dominant.
View Article and Find Full Text PDFMultisens Res
November 2024
College of Comprehensive Psychology, 12696Ritsumeikan University, Ibaraki, 567-8570, Japan.
Participants tend to produce a higher or lower vocal pitch in response to upward or downward visual motion, suggesting a pitch-motion correspondence between the visual and speech production processes. However, previous studies were contaminated by factors such as the meaning of vocalized words and the intrinsic pitch or tongue movements associated with the vowels. To address these issues, we examined the pitch-motion correspondence between simple visual motion and pitched speech production.
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