资讯
马德里卡洛斯三世大学(UC3M)与哈佛大学的联合科研团队取得重要突破,通过实验成功实现了对电磁超材料的可编程重构。这种创新性的人造材料无需改变其化学成分,即可重新编程其几何形状和结构行为。该项技术的问世,为生物医学和软体机器人等领域的创新发展提供了全新可能。
安德烈斯·阿奎莱拉(Andrés Aguilera)的实验室与拉尔夫·韦林格(Ralf Wellinger )均为塞维利亚大学CABIMER遗传学系教授和法瑪馬爾制藥公司(PharmaMar)的实验室合作,确定了两种天然化合物棒曲霉素(Patulina)和西斯托喹醇(Xestoquinol)作为拓扑异构酶1(Topoisomerase ...
It’s not entirely understood why some children are born with orofacial clefts, such as cleft lip or palate. But a new study ...
A RTP estreia a série documental “Para Além do Cérebro”, dedicada ao tema da ciência e espiritualidade, um projeto com o ...
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A new nationwide study from the Hebrew University of Jerusalem uncovers the Israeli public’s conflicting attitudes toward ...
Scientists from China have developed a breakthrough asynchronous optical computing accelerator based on wavelength encoding.
Un estudio internacional liderado desde el Instituto de Neurociencias de la Universitat Autònoma de Barcelona (INc-UAB) ...
The Monte Gordo Grasshopper (Eyprepocprifas insularis) has proved to be a rare and elusive species: its last, and, until now, ...
An international study led by the Institut de Neurociències at the UAB (INc-UAB) has shown that increasing levels of the ...
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