相关实验视频
Updated: Feb 14, 2026

09:32
Evaluation of Auditory Brainstem Response in Chicken Hatchlings
Published on: April 1, 2022
3.6K
标准和扩展的高频值与正常听力成年人的超值听觉脑干反应形态的关联
İrem Sendesen1, Büşra Kaynakoğlu2, Eser Sendesen3
1Gazi University, Faculty of Health Sciences, Department of Audiology, Ankara, Türkiye.
Hearing research
|February 12, 2026
概括
扩展高频 (EHF) 听觉敏感性比标准听力测试更好地表明听觉神经健康状况. 超高频听力测量可以检测到传统方法错过的微妙听力损失.
科学领域:
- 神经科学是一个神经科学.
- 听力学 听力学是指听力学.
- 听力科学 听力科学
背景情况:
- 听觉脑干反应 (ABR) 评估神经完整性.
- 亚临床扩展高频 (EHF) 缺陷对ABR的影响尚不清楚.
研究的目的:
- 评估EHF值与预测ABR延迟/振幅的标准平均值.
- 识别神经同步和传输时间的预测因素.
主要方法:
- 对89名健康成年人的横截面研究.
- 多重线性回归分析控制年龄和性别.
- 将全球标准平均值 (0.125-8 kHz) 与EHF值 (9-20 kHz) 进行比较.
主要成果:
- EHF平均值是独立预测的波I振幅 (β = -0.28,p = .015).
- 根据性别和标准高频 (4-8 kHz) 灵敏度预测的波V延迟.
- 在波V/I比率中没有观察到与年龄相关的显著中央增益.
结论:
- EHF灵敏度是远距离听觉神经完整性的优越标记.
- 电波听力测量提高了亚临床耳缺陷的检测.
- 标准听力测量可能会错过早期的外围变化.
相关概念视频
Hearing
57.5K
When we hear a sound, our nervous system is detecting sound waves—pressure waves of mechanical energy traveling through a medium. The frequency of the wave is perceived as pitch, while the amplitude is perceived as loudness.
57.5K
Variation: Normal Distribution, Range, and Standard Deviation
28.7K
In the field of psychology, there are several ways to organize measurements of a trait, feature, or characteristic (i.e., variables). Qualitative data, such as ethnicity, can be tabulated into a frequency count to provide information about the proportion, as well as the variety of groups in a sample or population. On the other hand, researchers can perform a wider set of calculations on quantitative data. The mean, mode, and median, for instance, are central tendency measures to identify a...
28.7K
Frequency Response of BJT
1.4K
The frequency response of a Bipolar Junction Transistor (BJT) in a common-emitter configuration is critical to its functionality, especially in applications involving amplification of alternating current (AC) signals. This response can be analyzed through low-frequency and high-frequency equivalent circuits, considering various internal parameters and external conditions.
Low-Frequency Response: At low frequencies, the behavior of the BJT is determined by its DC bias point, which is set by the...
Low-Frequency Response: At low frequencies, the behavior of the BJT is determined by its DC bias point, which is set by the...
1.4K
Frequency Response of a Circuit
806
Inductive circuits present intriguing challenges in electrical engineering, particularly during the transition from the time domain to the frequency domain. This transformation involves converting inductors into impedances and utilizing phasor representation.
The transfer function is pivotal in characterizing how these circuits react to various frequencies, facilitating a profound understanding of their behavior. An essential parameter is the time constant, signifying the...
The transfer function is pivotal in characterizing how these circuits react to various frequencies, facilitating a profound understanding of their behavior. An essential parameter is the time constant, signifying the...
806
Brainstem
6.7K
The brainstem, located inferior to the brain and superior to the spinal cord, serves as a bridge between the cerebrum and the spinal cord. It plays a vital role in relaying information and controlling critical life functions. It comprises three primary regions: the midbrain, pons, and medulla oblongata.
The Midbrain
The midbrain is located beneath the diencephalon and connects the cerebrum with the lower parts of the brain. The cerebral peduncles are prominent midbrain structures that house the...
The Midbrain
The midbrain is located beneath the diencephalon and connects the cerebrum with the lower parts of the brain. The cerebral peduncles are prominent midbrain structures that house the...
6.7K
Frequency Response of Op Amp Circuits
726
Operational amplifiers (op-amp) are used in signal conditioning, filtering, or for performing mathematical operations such as addition, subtraction, integration, and differentiation. The frequency response of an op-amp is an important aspect that describes how the gain of the amplifier varies with frequency.
Frequency Response and Gain:
The gain of the op-amp, A(ω), is not a constant but a function of the input signal frequency. An op-amp can maintain a constant gain at low frequencies, known...
Frequency Response and Gain:
The gain of the op-amp, A(ω), is not a constant but a function of the input signal frequency. An op-amp can maintain a constant gain at low frequencies, known...
726

