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All in the (network) family [复制链接]

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发表于 2009-3-6 08:27 |只看该作者 |正序浏览 |打印
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9 ^# t: l3 p( m- T, ^% A, u. C! ?Networks from very different systems fall into just a few superfamilies, say Ron Milo, Uri Alon, and colleagues (Weizmann Institute of Science, Rehovot, Israel). The superfamilies are based on the relative frequencies of certain local network motifs or recurring circuit elements that have defined information processing tasks.( y/ @8 O4 ]5 q& V2 W
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Alon says he wants to "break the network down into elementary circuits and building blocks. We're very much inspired by engineering. If you want to understand the device...you break the problem up."
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He has previously found that networks have higher than expected frequencies of certain circuit elements; such elements have functions such as detecting persistence or imposing temporal order. The team now quantifies the relative occurrence of such elements in a wide variety of networks and finds that just a few superfamilies emerge.& C, z9 b" m; }2 _

$ C5 B% ?8 `& ~4 L- r5 G9 jThe first includes transcription networks from microorganisms. These sensory networks must respond rapidly relative to the buildup time for each of their components, and thus feature a shallow organization. By contrast, developmental transcription networks in flies and neuron organization in worms have an output time (hours or a second) that greatly exceeds the time taken for each step (minutes or 100 ms). Therefore, they have less bias against longer cascades and feature more feedback loops; these non–rate-limited networks form another superfamily.
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2 w: q$ @; \& ]) L) f; yThe families are not restricted to biology〞internet links and social networks form another superfamily, and diverse languages a fourth. All this clustering offers exciting opportunities for understanding, for example, fly development by taking lessons learned from worm neuronal architecture.6 a# q7 E1 Z$ O
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The current study covers only circuit elements with three or four components. Alon is currently pushing this number higher. "How we can ever cope with the complexity of these systems," he says, "is to work at the level of individual circuits rather than individual arrows."% e! c  x1 T3 C. S: h+ O. z
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Milo, R., et al. 2004. Science. 303:1538–1542.(Different superfamilies are formed by mi)

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发表于 3 天前 |只看该作者
每天早上起床都要看一遍“福布斯”富翁排行榜,如果上面没有我的名字,我就去上班……  

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发表于 2026-9-7 04:38 |只看该作者
不错,看看。  

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发表于 2026-9-1 04:35 |只看该作者
挺好啊  

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发表于 2026-8-22 16:21 |只看该作者
我顶啊。接着顶  

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发表于 2026-8-11 18:50 |只看该作者
感觉好像在哪里看过了,汗~  

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发表于 2026-8-9 05:29 |只看该作者
我在努力中  

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发表于 2026-8-6 19:50 |只看该作者
…没我说话的余地…飘走  

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发表于 2026-8-5 05:44 |只看该作者
支持你一下下。。  

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发表于 2026-8-2 16:52 |只看该作者
我想要`~  
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