Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 :为提取舰船噪声听觉特征,应用被动长模型对舰船噪声进行了分析,得到噪声二维时空分布。
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The lowest frequencies go all the way up to the top of the cochlea.
最低频率会达耳蜗顶部。
After artificial cochlea implantation surgery, he attended a rehabilitation center for listening and speaking courses.
在进行人工耳蜗移植手术之后,他参加康复中心听说课程。
It's called the cochlea. It's a hollow, cone-shaped tube filled with liquid.
这个器官叫耳蜗。是一个灌满液体凹管。
Inside our ears, there are lots of tiny hair-like cells located in the cochlea.
在我们耳朵里,耳蜗里有许多细小毛发状细胞。
Thanks to the artificial cochlea, Jiang Linpeng can hear and speak, although not as well as his peers.
由于有人工耳蜗,江鹏又可以听和说,虽然不如他同龄人做那么好。
And its hearing is severely limited, as the cochlea duct inside the inner ear is tiny.
由于内耳耳蜗管很小,它听觉也受重限制。
The cochlea in a Tyrannosaurus Rex is 2.5 centimetres long, so it can pick up a wide range of frequencies.
雷克斯霸王龙耳蜗长2.5厘米可接收很宽频段。
Eligible children up to 6 years old can apply for the artificial cochlea implantation surgery and rehabilitation training for free.
6岁以下合格儿童都能够免费申请人工耳蜗移植手术并且参加康复训练。
I have 16 electrodes in each of my cochleas.
在我每个耳蜗中都有 16 个电极。
Now, the hearing function of the labyrinth is housed in the easy-to-spot structure that's shaped like a snail's shell, the cochlea.
迷宫听觉功能被安置在状像蜗牛壳易于识别结构中,耳蜗。
But our inner ear, called the cochlea, is actually filled with saltwater-like fluids.
但是我们内耳, 也就是耳蜗,实际上充满类似盐水液体。
And finally, it causes pressures to change in the spiraling cochlea.
最后,它会导致螺旋耳蜗压力发生变化。
The cochlea is about the size of a chickpea, a garbanzo bean.
耳蜗大约有鹰嘴豆、鹰嘴豆大小。
Its motion pushes the fluid within the long chambers of the cochlea.
它运动推动耳蜗长腔内液体。
And within the cochlea, there are 16,000 sensory receptors.
耳蜗内有 16,000 个感觉感受器。
Those convert the large movements of the eardrum into pressure waves in the fluid of the cochlea.
这些将鼓膜大运动转化为耳蜗液体中压力波。
A full-sized ear responds to frequencies between 20 hertz and 20 kilohertz, because of how the hair cells in our cochlea vibrate.
正常大小耳朵会对20赫兹20千兹声音反应,原因在于毛细胞在耳蜗里震动方式。
Today your ears heard me tell you how your cochlea, basilar membrane, and hair cells register and transduct sound into action potentials.
今天你耳朵听我告诉你你耳蜗、基底膜和毛细胞是如何记录声音并将声音转化为动作电位。
The cochlea separates those frequencies, and the 16,000 hair cells then report to the brain how much of each frequency is present.
耳蜗将这些频率进行分离,1 万 6 千个毛细胞随之将每个频率数量汇报给大脑。
A surface called the basilar membrane runs the length of the cochlea.
称为基底膜表面贯穿耳蜗长度。
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