先天性耳聋会降低听皮层中的α-γ跨频耦合

IF 2.5 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Hearing Research Pub Date : 2024-05-17 DOI:10.1016/j.heares.2024.109032
Prasandhya A. Yusuf , Peter Hubka , Wiebke Konerding , Rüdiger Land , Jochen Tillein , Andrej Kral
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引用次数: 0

摘要

神经元网络中的神经元可以通过神经元振荡的同步性,受到自下而上和自上而下的影响而分组。这就形成了感官特征对感知对象的表征。振荡活动可分为刺激相位锁定(诱发)和非相位锁定(诱导)两种。前者主要由感觉输入决定,后者则由高层(大脑皮层)处理决定。研究人员使用人工耳蜗(CI)刺激先天性耳聋猫(CDC),研究了听觉剥夺对大脑皮层振荡的影响。在先天性耳聋猫的听觉皮层中,CI 引起的阿尔法、贝塔和伽马活动受到了影响。此外,听觉猫次级和初级听觉区之间自上而下的信息流(由诱导的阿尔法振荡传递)在 CDC 中也消失了。在这里,我们使用匹配追随算法来评估初级场 A1 中记录的局部场电位中这种振荡活动的成分。除了诱发阿尔法振荡的缺失外,我们还发现 CDC 中还缺失了诱发的θ 活动。CDC 中θ 和α 活动的丧失可能与跨频耦合导致的高频(γ 波段)活动减少直接相关。在这里,我们对以下成年猫(1)听力经验丰富的声刺激猫(aHCs)、(2)急性药物性耳聋后听力经验丰富的猫以及随后的 CIs(电刺激猫(eHCs))和(3)电刺激 CDCs 中的这种跨频耦合进行了量化。我们发现,在所有动物组中,70% 的听觉反应位点都存在明显的跨频耦合。aHCs和eHCs的主要耦合在θ/α相位和γ功率之间。在 CDCs 中,这种耦合消失了,取而代之的是与 delta/theta 相耦合的 alpha 振荡。因此,只有在有听力经验的猫中,α/θ振荡才能同步高频γ活动。诱导α和θ振荡的缺失导致了CDC中诱导γ功率的丧失,从而表明局部网络活动受损。
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Congenital deafness reduces alpha-gamma cross-frequency coupling in the auditory cortex

Neurons within a neuronal network can be grouped by bottom-up and top-down influences using synchrony in neuronal oscillations. This creates the representation of perceptual objects from sensory features. Oscillatory activity can be differentiated into stimulus-phase-locked (evoked) and non-phase-locked (induced). The former is mainly determined by sensory input, the latter by higher-level (cortical) processing. Effects of auditory deprivation on cortical oscillations have been studied in congenitally deaf cats (CDCs) using cochlear implant (CI) stimulation. CI-induced alpha, beta, and gamma activity were compromised in the auditory cortex of CDCs. Furthermore, top-down information flow between secondary and primary auditory areas in hearing cats, conveyed by induced alpha oscillations, was lost in CDCs. Here we used the matching pursuit algorithm to assess components of such oscillatory activity in local field potentials recorded in primary field A1. Additionally to the loss of induced alpha oscillations, we also found a loss of evoked theta activity in CDCs. The loss of theta and alpha activity in CDCs can be directly related to reduced high-frequency (gamma-band) activity due to cross-frequency coupling. Here we quantified such cross-frequency coupling in adult 1) hearing-experienced, acoustically stimulated cats (aHCs), 2) hearing-experienced cats following acute pharmacological deafening and subsequent CIs, thus in electrically stimulated cats (eHCs), and 3) electrically stimulated CDCs. We found significant cross-frequency coupling in all animal groups in > 70% of auditory-responsive sites. The predominant coupling in aHCs and eHCs was between theta/alpha phase and gamma power. In CDCs such coupling was lost and replaced by alpha oscillations coupling to delta/theta phase. Thus, alpha/theta oscillations synchronize high-frequency gamma activity only in hearing-experienced cats. The absence of induced alpha and theta oscillations contributes to the loss of induced gamma power in CDCs, thereby signifying impaired local network activity.

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来源期刊
Hearing Research
Hearing Research 医学-耳鼻喉科学
CiteScore
5.30
自引率
14.30%
发文量
163
审稿时长
75 days
期刊介绍: The aim of the journal is to provide a forum for papers concerned with basic peripheral and central auditory mechanisms. Emphasis is on experimental and clinical studies, but theoretical and methodological papers will also be considered. The journal publishes original research papers, review and mini- review articles, rapid communications, method/protocol and perspective articles. Papers submitted should deal with auditory anatomy, physiology, psychophysics, imaging, modeling and behavioural studies in animals and humans, as well as hearing aids and cochlear implants. Papers dealing with the vestibular system are also considered for publication. Papers on comparative aspects of hearing and on effects of drugs and environmental contaminants on hearing function will also be considered. Clinical papers will be accepted when they contribute to the understanding of normal and pathological hearing functions.
期刊最新文献
Administration of nicotinamide mononucleotide suppresses the progression of age-related hearing loss in mice. Visualizing motions within the cochlea's organ of Corti and illuminating cochlear mechanics with optical coherence tomography. Brain activation patterns in normal hearing adults: An fNIRS Study using an adapted clinical speech comprehension task. Signal-in-noise detection across the lifespan in a mouse model of presbycusis. Why does tinnitus vary with naps? A polysomnographic prospective study exploring the somatosensory hypothesis.
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