1.Development and application of gustatory evoked potentiometer.
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(3):276-280
Human taste is an important function of chemical perception. In recent years, brain taste evoked potentials have received more and more attention as a feasible tool for objective assessment of taste dysfunction. This paper reviews the main characteristics of gustatory evoked potential signals, the most widely used recording and processing techniques, and the scientific advances and relevance of gustatory evoked potentials in many important applications. In particular, taste evoked potentials are used to study the central effects of food intake and taste disorders, which may affect cognition and personality, or may be potential indicators of the onset or progression of neurological disorders. For these reasons, this paper presents and analyzes the latest scientific results and future challenges of using gustatory evoked potentials as an attractive solution to objective monitoring techniques for taste disorders. Human taste is an important function of chemical perception. In recent years, brain gustatory evoked potentials have received more and more attention as a feasible tool for objective assessment of taste dysfunction. This paper reviews the main characteristics of gustatory evoked potential signals, the most widely used recording and processing techniques, and the scientific advances and relevance of gustatory evoked potentials in many important applications. In particular, gustatory evoked potentials are used to study the central effects of food intake and taste disorders, which may affect cognition and personality, or may be potential indicators of the onset or progression of neurological disorders. For these reasons, this paper presents and analyzes the latest scientific results and future challenges of using gustatory evoked potentials as an attractive solution to objective monitoring techniques for taste disorders.
Humans
;
Evoked Potentials
;
Taste/physiology*
;
Taste Perception/physiology*
2.Perception of Mandarin aspirated/unaspirated consonants in children with cochlear implants.
Yani LI ; Qun LI ; Jian WEN ; Lin LI ; Yun ZHENG
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(4):312-318
Objective:This study aims to investigate the perception of Mandarin aspirated and unaspirated consonants by children with cochlear implants (CIs) under quiet and noisy conditions. It also examines factors that may affect their acquisition, such as auditory conditions, place of articulation, manner of articulation, chronological age, age at implantation, and non-verbal intelligence. Methods:Twenty-eight CI children aged 3 to 5 years who received implantation from 2018 to 2023 were recruited. Additionally, 88 peers with normal hearing (NH) were recruited as controls. Both groups participated in a perception test for aspirated/unaspirated consonants under quiet and noisy conditions, along with tests for speech recognition, speech production, and non-verbal intelligence. The study analyzed the effects of group (CI vs. NH), auditory condition, and consonant characteristics on children's perception of aspirated/unaspirated consonants in Mandarin, as well as the factors contributing to CI children's acquisition of these consonants. Results:①CI children's ability to perceive aspirated/unaspirated consonants was significantly poorer than that of their NH peers (χ²= 14.16, P<0.01), and their perception accuracy was influenced by the acoustic features of consonants (P<0.01); ②CI children's consonant perception abilities were adversely affected by noise (P<0.01), with accuracy in noisy conditions particularly influenced by the manner of articulation (P<0.05); ③The age at implantation significantly affected CI children's ability to perceive aspirated/unaspirated consonants (β= -0.223, P=0.012), with earlier implantation associated with better performance. Conclusion:It takes time for CI children to acquire Mandarin aspirated/unaspirated consonants, and early implantation shows many advantages, especially for the perception ability of fine speech features.
Humans
;
Cochlear Implants
;
Child, Preschool
;
Speech Perception
;
Cochlear Implantation
;
Male
;
Female
;
Language
3.Comparison and study of multiple scales results in children with cochlear reimplantation, mainly the speech, spatial, and other qualities of hearing scale for parents.
Tian NI ; Jinyuan SI ; Haotian LIU ; Xinyi YAO ; Xiangling ZHANG ; Huilin YIN ; Lin ZHANG ; Xiuyong DING ; Yu ZHAO
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(5):433-442
Objective:To compare the outcomes of multiple scales, primarily the speech, spatial, and other qualities of hearing scale for parents(SSQ-P), in children with ipsilateral vs. Contralateral cochleareimplantat ion(CRI). Methods: A total of 69 children who received cochlear implantation surgery from April 1999 to June 2024 were included. Patients were divided into two groups based on whether the implantation was on the same side. General information such as gender, age, age at initial implantation and reimplantation was collected. The primary caregivers of the children were followed up by telephone using the categories of auditory performance(CAP), speech intelligibility rating(SIR), and SSQ-P questionnaires. Statistical methods including stepwise regression, linear regression, and permutation tests were employed to investigate if there were any statistically significant differences in the scores of CAP, SIR, SSQ-P total, SSQ-P speech perception, SSQ-P spatial hearing, and SSQ-P auditory quality dimensions between the ipsilateral and contralateral reimplantation groups. Results:Of the 69 children included, 62 were in the ipsilateral reimplantation group with a mean age of 11.1 years, and 7 were in the contralateral reimplantation group with a mean age of 11.7 years. Statistical analysis showed that patients in the contralateral reimplantation group had significantly lower SSQ-P total scores (P<0.05) and spatial hearing dimension scores (P<0.05) than those in the ipsilateral reimplantation group after controlling for the corresponding confounders. Conclusion:The effect of ipsilateral reimplantation of cochlear implants is superior to that of contralateral reimplantation in terms of overall auditory function and spatial hearing in daily life for children, but the mechanisms require further investigation.
Humans
;
Cochlear Implantation
;
Child
;
Parents
;
Speech Perception
;
Male
;
Cochlear Implants
;
Female
;
Hearing
;
Surveys and Questionnaires
;
Speech
;
Child, Preschool
4.Analyzing the factors influencing speech recognition ability in patients with age-related hearing loss.
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(7):657-666
Objective:To explore various factors influencing speech recognition ability in patients with age-related hearing loss(ARHL) and to investigate the correlation between speech recognition ability and cognitive function. Methods:This case-control study enrolled 150 ARHL patients(experimental group) and 132 normal-hearing controls. Participants underwent relevant assessments of auditory function, cognitive function, and tinnitus severity. Various statistical analyses were performed to evaluate the results. Results:①The PBmax and MoCA scores were significantly lower in the ARHL group compared to the control group(P<0.05). ②PBmax in the ARHL group was significantly influenced by multiple factors(P<0.05). ③Negative correlations were observed between PBmax in the ARHL group and age, degree of hearing loss, duration of the disease, duration of the worst hearing loss, smoking status, and tinnitus severity(P<0.05), while positive correlations were found between PBmax and education level, occupation type, frequency of verbal communication, and cognitive function level(P<0.05). ④Higher education level, frequent verbal communication, and high cognitive function level were protective factors for PBmax in ARHL patients(P<0.05), whereas the other factors were independent risk factors(P<0.05). ⑤A significant correlation was found between PBmax and MoCA scores in the ARHL group, and this correlation between cognitive function and speech recognition ability remained significant across different degrees of hearing loss(<0.05). Conclusion:Speech recognition ability in ARHL patients is influenced by multiple factors. Cognitive function demonstrates a robust, bidirectional association with speech recognition ability, even after adjusting for hearing loss severity.
Humans
;
Case-Control Studies
;
Middle Aged
;
Male
;
Female
;
Aged
;
Speech Perception
;
Cognition
;
Presbycusis/physiopathology*
;
Adult
;
Hearing Loss
5.Rhythm Facilitates Auditory Working Memory via Beta-Band Encoding and Theta-Band Maintenance.
Suizi TIAN ; Yu-Ang CHENG ; Huan LUO
Neuroscience Bulletin 2025;41(2):195-210
Rhythm, as a prominent characteristic of auditory experiences such as speech and music, is known to facilitate attention, yet its contribution to working memory (WM) remains unclear. Here, human participants temporarily retained a 12-tone sequence presented rhythmically or arrhythmically in WM and performed a pitch change-detection task. Behaviorally, while having comparable accuracy, rhythmic tone sequences showed a faster response time and lower response boundaries in decision-making. Electroencephalographic recordings revealed that rhythmic sequences elicited enhanced non-phase-locked beta-band (16 Hz-33 Hz) and theta-band (3 Hz-5 Hz) neural oscillations during sensory encoding and WM retention periods, respectively. Importantly, the two-stage neural signatures were correlated with each other and contributed to behavior. As beta-band and theta-band oscillations denote the engagement of motor systems and WM maintenance, respectively, our findings imply that rhythm facilitates auditory WM through intricate oscillation-based interactions between the motor and auditory systems that facilitate predictive attention to auditory sequences.
Humans
;
Memory, Short-Term/physiology*
;
Male
;
Beta Rhythm/physiology*
;
Female
;
Theta Rhythm/physiology*
;
Young Adult
;
Auditory Perception/physiology*
;
Adult
;
Electroencephalography
;
Acoustic Stimulation
;
Reaction Time/physiology*
;
Brain/physiology*
;
Attention/physiology*
6.Brain White Matter Changes in Non-demented Individuals with Color Discrimination Deficits and Their Association with Cognitive Impairment: A NODDI Study.
Jiejun ZHANG ; Peilin HUANG ; Lin LIN ; Yingzhe CHENG ; Weipin WENG ; Jiahao ZHENG ; Yixin SUN ; Shaofan JIANG ; Xiaodong PAN
Neuroscience Bulletin 2025;41(8):1364-1376
Previous studies have found associations between color discrimination deficits and cognitive impairments besides aging. However, investigations into the microstructural pathology of brain white matter (WM) associated with these deficits remain limited. This study aimed to examine the microstructural characteristics of WM in the non-demented population with abnormal color discrimination, utilizing Neurite Orientation Dispersion and Density Imaging (NODDI), and to explore their correlations with cognitive functions and cognition-related plasma biomarkers. The tract-based spatial statistic analysis revealed significant differences in specific brain regions between the abnormal color discrimination group and the healthy controls, characterized by increased isotropic volume fraction and decreased neurite density index and orientation dispersion index. Further analysis of region-of-interest parameters revealed that the isotropic volume fraction in the bilateral anterior thalamic radiation, superior longitudinal fasciculus, cingulum, and forceps minor was significantly correlated with poorer performance on neuropsychological assessments and to varying degrees various cognition-related plasma biomarkers. These findings provide neuroimaging evidence that WM microstructural abnormalities in non-demented individuals with abnormal color discrimination are associated with cognitive dysfunction, potentially serving as early markers for cognitive decline.
Humans
;
White Matter/pathology*
;
Male
;
Female
;
Cognitive Dysfunction/physiopathology*
;
Middle Aged
;
Aged
;
Color Perception/physiology*
;
Brain/pathology*
;
Neuropsychological Tests
;
Diffusion Tensor Imaging
7.Neural Dynamics of Visual Stream Interactions During Memory-Guided Actions Investigated by Intracranial EEG.
Sofiia MORARESKU ; Jiri HAMMER ; Vasileios DIMAKOPOULOS ; Michaela KAJSOVA ; Radek JANCA ; Petr JEZDIK ; Adam KALINA ; Petr MARUSIC ; Kamil VLCEK
Neuroscience Bulletin 2025;41(8):1347-1363
The dorsal and ventral visual streams have been considered to play distinct roles in visual processing for action: the dorsal stream is assumed to support real-time actions, while the ventral stream facilitates memory-guided actions. However, recent evidence suggests a more integrated function of these streams. We investigated the neural dynamics and functional connectivity between them during memory-guided actions using intracranial EEG. We tracked neural activity in the inferior parietal lobule in the dorsal stream, and the ventral temporal cortex in the ventral stream as well as the hippocampus during a delayed action task involving object identity and location memory. We found increased alpha power in both streams during the delay, indicating their role in maintaining spatial visual information. In addition, we recorded increased alpha power in the hippocampus during the delay, but only when both object identity and location needed to be remembered. We also recorded an increase in theta band phase synchronization between the inferior parietal lobule and ventral temporal cortex and between the inferior parietal lobule and hippocampus during the encoding and delay. Granger causality analysis indicated dynamic and frequency-specific directional interactions among the inferior parietal lobule, ventral temporal cortex, and hippocampus that varied across task phases. Our study provides unique electrophysiological evidence for close interactions between dorsal and ventral streams, supporting an integrated processing model in which both streams contribute to memory-guided actions.
Humans
;
Male
;
Female
;
Adult
;
Young Adult
;
Hippocampus/physiology*
;
Memory/physiology*
;
Parietal Lobe/physiology*
;
Temporal Lobe/physiology*
;
Visual Perception/physiology*
;
Electrocorticography
;
Visual Pathways/physiology*
;
Electroencephalography
8.Neural Tracking of Race-Related Information During Face Perception.
Chenyu PANG ; Na ZHOU ; Yiwen DENG ; Yue PU ; Shihui HAN
Neuroscience Bulletin 2025;41(11):1957-1976
Previous studies have identified two group-level processes, neural representations of interracial between-group difference and intraracial within-group similarity, that contribute to the racial categorization of faces. What remains unclear is how the brain tracks race-related information that varies across different faces as an individual-level neural process involved in race perception. In three studies, we recorded functional MRI signals when Chinese adults performed different tasks on morphed faces in which proportions of pixels contributing to perceived racial identity (Asian vs White) and expression (pain vs neutral) varied independently. We found that, during a pain expression judgment task, tracking other-race and same-race-related information in perceived faces recruited the ventral occipitotemporal cortices and medial prefrontal/anterior temporal cortices, respectively. However, neural tracking of race-related information tended to be weakened during explicit race judgments on perceived faces. During a donation task, the medial prefrontal activity also tracked race-related information that distinguished between two perceived faces for altruistic decision-making and encoded the Euclidean distance between the two faces that predicted decision-making speeds. Our findings revealed task-dependent neural mechanisms underlying the tracking of race-related information during face perception and altruistic decision-making.
Adult
;
Female
;
Humans
;
Male
;
Young Adult
;
Brain/diagnostic imaging*
;
Brain Mapping
;
Decision Making/physiology*
;
Facial Recognition/physiology*
;
Judgment/physiology*
;
Magnetic Resonance Imaging
;
Photic Stimulation
;
Racial Groups
;
Social Perception
;
East Asian People
9.Parvalbumin and Somatostatin Neurons in the Thalamic Reticular Nucleus Modulate Visual Information Processing in V1 of Mouse.
Jiamin BU ; Guangwei XU ; Yifeng ZHOU
Neuroscience Bulletin 2025;41(10):1824-1842
The thalamic reticular nucleus (TRN) plays a crucial role in regulating sensory encoding, even at the earliest stages of visual processing, as evidenced by numerous studies. Orientation selectivity, a vital neural response, is essential for detecting objects through edge perception. Here, we demonstrate that somatostatin (SOM)-expressing and parvalbumin (PV)-expressing neurons in the TRN project to the dorsal lateral geniculate nucleus and modulate orientation selectivity and the capacity for visual information processing in the primary visual cortex (V1). These findings show that SOM-positive and PV-positive neurons in the TRN are powerful modulators of visual information encoding in V1, revealing a novel role for this thalamic nucleus in influencing visual processing.
Animals
;
Somatostatin/metabolism*
;
Parvalbumins/metabolism*
;
Neurons/physiology*
;
Thalamic Nuclei/physiology*
;
Visual Pathways/physiology*
;
Mice
;
Mice, Inbred C57BL
;
Visual Perception/physiology*
;
Male
;
Mice, Transgenic
;
Visual Cortex/physiology*
;
Primary Visual Cortex/cytology*
10.Electrophysiological Signatures of Visual Sensations Elicited by Direct Electrical Stimulation.
Yan-Yan LI ; Bo ZHANG ; Jing WANG ; Yuri B SAALMANN ; Mohsen AFRASIABI ; Peng-Cheng LV ; Hai-Xiang WANG ; Huan-Huan XIANG ; Meng-Yang WANG ; Guo-Ming LUAN ; Robert T KNIGHT ; Liang WANG
Neuroscience Bulletin 2025;41(9):1617-1629
Direct electrical stimulation of the human cortex can produce subjective visual sensations, yet these sensations are unstable. The underlying mechanisms may stem from differences in electrophysiological activity within the distributed network outside the stimulated site. To address this problem, we recruited 69 patients who experienced visual sensations during invasive electrical stimulation while intracranial electroencephalography (iEEG) data were recorded. We found significantly flattened power spectral slopes in distributed regions involving different brain networks and decreased integrated information during elicited visual sensations compared with the non-sensation condition. Further analysis based on minimum information partitions revealed that the reconfigured network interactions primarily involved the inferior frontal cortex, posterior superior temporal sulcus, and temporoparietal junction. The flattened power spectral slope in the inferior frontal gyrus was also correlated with integrated information. Taken together, this study indicates that the altered electrophysiological signatures provide insights into the neural mechanisms underlying subjective visual sensations.
Humans
;
Male
;
Female
;
Adult
;
Visual Perception/physiology*
;
Electric Stimulation
;
Middle Aged
;
Young Adult
;
Electrocorticography
;
Electroencephalography
;
Brain Mapping

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