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Tiny insect's ears on its hind legs
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Tiny insect's ears on its hind legs# Animals - 动物园
I*i
1
http://www.latimes.com/news/science/sciencenow/la-sci-sn-tiny-i
Tiny insect's ears, located on its hind legs, work just like ours
http://www.trbimg.com/img-50a54dbe/turbine/la-sci-sn-tiny-insec
By Jon Bardin
November 15, 2012, 12:14 p.m.
Despite the fact that a katydid’s ears are located on its hind legs, the
rain forest insect’s hearing works in a strikingly similar fashion to human
hearing, according to a new study published Thursday in the journal Science.
Mammalian hearing is enabled by a three-part system. First, a sound arrives
at the eardrum, causing it to vibrate. Then, those vibrations in the air are
converted to vibrations in liquid by the middle ear, which is made up of
those three bones everyone loved to memorize in middle school biology: the
hammer, anvil and stirrup. Together, those three bones act to transform
airborne vibrations on one side and liquid-borne waves on the other, in the
inner ear.
Then, the hair cells in our inner ear convert those waves into signals that
get sent to the auditory nerve, where the brain receives the auditory
information. Each hair cell is activated by a different sound frequency,
allowing the brain to receive specific information about what sound is being
heard.
If that all sounds too complicated to you for a bug’s hearing system, well,
you’re wrong. Using advanced techniques for imaging the katydid’s tiny
ear and measuring how it responds to sound, the authors of the new study,
led by Fernando Montealegre-Zapata of the University of Lincoln in England,
discovered that the katydid’s ear is also made up of three distinct parts
that play the same roles as the three parts of the human ear.
The key to this discovery was finding the equivalent of the hammer, anvil
and stirrup. In the katydid, an outer membrane—much like the eardrum—is
connected to a stiff lever-like plate called the “tympanal plate.”
Together, the membrane and plate effectively convert sounds from vibrations
in the air to waves in liquid, where cells much like those in our inner ears
sense them.
In an article accompanying the study, neurobiologist Ronald Hoy of Cornell
University says the discovery is a remarkable example of convergent
evolution, in which two distantly related species evolve the same solution
to a problem—in this case, how to hear. In fact, Hoy writes, the finding
should lead researchers to re-evaluate their knowledge for how many
invertebrates hear, including the cricket, which is closely related to the
katydid.
If he’s right, it may just turn out that our hammer, anvil and stirrup aren
’t so special after all.
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i*s
3
这么细微的结构,研究清楚不容易
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a*a
5
莫非这就是蚂蚱?我见过的蚂蚱不长这样啊

【在 i*****s 的大作中提到】
: 我小时候总玩这个,不容易捉到蝈蝈,就拿这个代替。
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c*t
6
发Science了,牛了
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I*i
7
查了维基,katydid是螽斯,蝈蝈就是螽斯(的一种)吧。
我们家那把那种长得比较圆润的叫蝈蝈,应该还有长得瘦长有棱角的螽斯。

【在 i*****s 的大作中提到】
: 我小时候总玩这个,不容易捉到蝈蝈,就拿这个代替。
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i*s
8
这个不是蚂蚱,看了很多照片后,我的感觉是身体比较柔软,动作慢的,纯感觉。

【在 a***a 的大作中提到】
: 莫非这就是蚂蚱?我见过的蚂蚱不长这样啊
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i*s
9
分类上应该是这样吧,不过我们那又两种蝈蝈,跟照片上的katydid是分开的,小时候
的叫法。

【在 I***i 的大作中提到】
: 查了维基,katydid是螽斯,蝈蝈就是螽斯(的一种)吧。
: 我们家那把那种长得比较圆润的叫蝈蝈,应该还有长得瘦长有棱角的螽斯。

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k*h
10
我也玩过这个,这个东西咬人的,很厉害

【在 i*****s 的大作中提到】
: 分类上应该是这样吧,不过我们那又两种蝈蝈,跟照片上的katydid是分开的,小时候
: 的叫法。

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i*s
11
嗯,隐蔽能力也很强,在灌木叶片间很难发现,有时近在眼前也看不到,现在还能回忆
起突然发现一只的激动感觉。

【在 k**h 的大作中提到】
: 我也玩过这个,这个东西咬人的,很厉害
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I*i
12
我们那也是,只管特定的几种叫蝈蝈

【在 i*****s 的大作中提到】
: 分类上应该是这样吧,不过我们那又两种蝈蝈,跟照片上的katydid是分开的,小时候
: 的叫法。

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n*t
13
这个比蝈蝈弱太多,很娘。蝈蝈就像男生,这个像女生。

【在 i*****s 的大作中提到】
: 我小时候总玩这个,不容易捉到蝈蝈,就拿这个代替。
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i*s
14
差不多,就是这个感觉

【在 n**t 的大作中提到】
: 这个比蝈蝈弱太多,很娘。蝈蝈就像男生,这个像女生。
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