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    Home > [quick news] Nanjing University set up Suzhou campus on March 18, 2019, and began to recruit students in 2021

    [quick news] Nanjing University set up Suzhou campus on March 18, 2019, and began to recruit students in 2021

    • Last Update: 2019-03-18
    • Source: Internet
    • Author: User
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    Nanjing University set up Suzhou campus, and began to recruit students on March 16, 2021 Nanjing University and Suzhou Municipal People's government signed an agreement on comprehensive strategic cooperation and the construction of Suzhou campus of Nanjing University in Nanjing on April 15 The two sides will strengthen strategic cooperation in promoting undergraduate education, postgraduate training, international school running, collaborative innovation of production, learning and research, accelerate the construction of "double first class" of Nanjing University, and provide a new engine for the high-quality development of Suzhou Jinling College of Nanjing University will be moved to Suzhou high tech Zone as a whole On the basis of the existing professional settings, according to the needs of economic and social development in Suzhou and its surrounding areas, it will optimize the professional structure and build a number of high-level brand majors and characteristic majors Jinling College of Nanjing University will start the first batch of enrollment in Suzhou campus of Nanjing University in September 2021 Http://news.nju.edu.cn/show ﹣ article ﹣ a new system for developing high-speed 3D printing plastic parts in Germany Fraunhofer mould and forming technology research institute in Germany has developed a set of new 3D printing system, which can print plastic parts at high speed and low cost, with the efficiency eight times that of traditional 3D printing technology The new system combines machine tool technology with traditional 3D printing technology, and uses specially designed devices to melt plastic materials and spray them out at high speed, said Martin koush, a scientist at the Institute The device is installed on a construction platform, the latter can realize six axis rotation through the motion control system of the machine tool, and can rotate rapidly according to the preset shape of parts when printing The new system can process plastic particles into strong and complex plastic parts When printing, a 1mm diameter device nozzle can squeeze out 7kg of plastic per hour Researchers have treated many different types of plastic materials in their tests The system will be unveiled for the first time at the Hanover Industrial Fair next month Http://www.xinhuanet.com/world/2019-03/17/c_.htm Da Vinci robot China urology operation demonstration center is listed in Guangzhou Recently, Leonardo da Vinci surgical robot China urology clinical surgery teaching demonstration center was founded in the cancer prevention and treatment center of Sun Yat sen University, marking that the center's standardized minimally invasive surgical treatment with surgical robots has reached a new level According to reports, the center's Leonardo surgery robot urinary surgery has broken through 1000 cases Liu Zhuowei, vice president of cancer prevention and treatment center of Sun Yat sen University, said that the minimally invasive surgery system of Leonardo da Vinci robot surgery system has the advantages of small trauma, less pain, fast recovery, fewer complications and short hospital stay In addition, the system has the advantages of 3D amplification The imaging system and flexible mechanical arm make the operation more precise and accurate, so it has great advantages for the operation with narrow space and the need of fine separation of anatomical operation and reconstruction Http://news.scienceet.cn/htmlnews/2019/3/424058.shtm scientists first observed the "slingshot like" movement of cells, which is expected to develop new cancer therapies Recently, in a research report published in the international journal Nature communication, scientists from the University of Michigan observed the rapid "slingshot like" cell movement mode for the first time through research By ejecting forward, human cells may move more than five times faster than previously thought Researchers have observed this movement of cells on a new bioengineering 3D scaffold, which can simulate matrix tissue, i.e connective tissue around organs Metastasis or spread of cancer often kills cancer patients To do this, cancer cells must break through the parenchyma, pass through the fibrous interstitial tissue of the body, and finally reach the blood or lymph system, the researchers said In the later stage, we will continue to study the movement of cells and develop new therapies to effectively inhibit cancer metastasis Https://www.nature.com/articles/s41467-019-09121-0 a new type of nanorobot can enter into living cancer cells Researchers at the University of Toronto, Canada have developed a new type of nanorobot Under the control of magnetic "tweezers", it can precisely move in living cancer cells, and is expected to be used in cancer diagnosis and treatment in the future The researchers first placed six magnetic coils around the slide of the microscope, and then implanted the living cancer cells on the slide When researchers placed a magnetic bead about 700nm in diameter on a microscope slide, the bead was easily "engulfed" by cancer cells into the cell membrane Then, the researchers used computer algorithms to change the current of six magnetic coils to establish a three-dimensional magnetic field and guide the iron bead to a specific location in the cell The researchers also envision using the nano robot to block tumor blood vessels, so as to "starve" cancer cells or directly destroy cancer cells In the future, it is expected to provide a new treatment for cancer patients with ineffective chemotherapy, radiotherapy and immunotherapy http://robotics.sciencemag.org/content/4/28/eaav6180
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