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Microenvironmental regulation of stem cells injected in the area at risk of neurodegenerative diseases
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作者 JU HYUNG LEE IL-KWON KIM +4 位作者 SANG WOO KIM SOYEON LIM SEAHYOUNG LEE KI-CHUL HWANG BYEONG-WOOK SONG 《BIOCELL》 SCIE 2022年第10期2231-2234,共4页
The complex mechanism of degenerative diseases and the non-specific modulation of regenerative targets aretopics that need to be elucidated in order to advance the use of stem cells in improvement of neurodegenerative... The complex mechanism of degenerative diseases and the non-specific modulation of regenerative targets aretopics that need to be elucidated in order to advance the use of stem cells in improvement of neurodegenerative diseases.From pre-transplantation through post-transplantation, there are many changes in the conditions, both inside andoutside of the stem cells that have not been carefully considered. This has hindered development in the field of celltherapy and regeneration. This viewpoint highlights the potential implications of intracellular and extracellularalterations of stem cells in transplanted areas at risk of neurodegenerative disease. 展开更多
关键词 Cell therapy MICROENVIRONMENT Neurodegenerative disease Stem cells
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Development of 16-channels Compact EEG System Using Real-time High-speed Wireless Transmission
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作者 B. R. Myung S. K. Yoo 《Engineering(科研)》 2013年第5期93-97,共5页
For the convenience of people with disability and for normal people, a demand for intelligent interfaces is ever increasing and therefore related studies are actively being conducted. Recently a study is being conduct... For the convenience of people with disability and for normal people, a demand for intelligent interfaces is ever increasing and therefore related studies are actively being conducted. Recently a study is being conducted to develop an interface through face expression, movement of the body and eye movements, and further more active attempts to use electrical signals(brainwave, electrocardiogram, electromyogram) measured from the human body is also actively being progressed. In addition, the development and the usage of mobile devices and smart devices are promoting these research activities even more. The brainwave is measured by electrical activities between nerve cells in the cerebral cortex using scalp electrodes. The brainwave is mainly used for diagnosis and treatment of diseases such as epilepsy, encephalitis, brain tumors and brain damage. As a result, the brainwave measurement methods and analytical methods were developed. Interface using the brainwave will not go through language or body behavior which is the result of the information processed by the brain but will pass directly to the system providing a brain-computer interface (BCI). This is possible because a variety of the brainwave appears depending on the human’s physical and mental state. Using the brainwave with the intelligent brain-computer interface or combining it with mobile devices and smart devices, regardless of space constraints, the brainwave measurement should be possible.[4,7] In this study, in order to measure the brainwave without spatial constraint, 16 channel compact brainwave measurements system using a high-speed wireless communications were designed. It was designed with a 16 channel to classify the various brainwave patterns that appear and for estimating the location of the nerve cells that triggered the brainwave. And in order to transmit the brainwave data within the channel without loss, a high-speed wireless communication must be possible that can enable a high-speed wireless transmission more sufficient than the Bluetooth, therefore, 802.11 compliant Wi-Fi communication methods were used to transfer the data to the PC. In addition, by using an analog front-end IC having a single-chip configuration with real-time digital filters, the miniaturization of the system was implemented and in order to verify the system Eye-blocking was used to observe the changes in the EEG signal. 展开更多
关键词 ELECTROENCEPHALOGRAPHY HIGH-SPEED WIRELESS Transmission REAL-TIME
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Promoting human embryonic stem cell renewal or differentiation by modulating Wnt signal and culture conditions 被引量:7
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作者 Liuhong Cai Zhaohui Ye +3 位作者 Betty Ying Zhou Prashant Mali Canquan Zhou Linzhao Cheng 《Cell Research》 SCIE CAS CSCD 2007年第1期62-72,共11页
我们以前证明 Wnt3a 能刺激人的胚胎的茎(hES ) 细胞增殖并且影响房间命运决心。当 feeder cell-derivedfactors 不在时,在一个喂入器饲料分送器免费的条件下面有教养的 hES 房间糟糕幸存并且增殖。当 feeder 房间不在时的 Addingrecom... 我们以前证明 Wnt3a 能刺激人的胚胎的茎(hES ) 细胞增殖并且影响房间命运决心。当 feeder cell-derivedfactors 不在时,在一个喂入器饲料分送器免费的条件下面有教养的 hES 房间糟糕幸存并且增殖。当 feeder 房间不在时的 Addingrecombinant Wnt3a 导出因素的刺激 hES 细胞增殖而且区别。在现在的学习,我们进一步扩大了我们的分析到象 Wnt1 和 Wnt5a 那样的另外的 Wntligands。当 Wnt1 作为 Wnt3a 在 hES 房间上显示了类似的效果时,在这个系统的 Wnt5ahad 小效果。当喂入器饲料分送器导出自强因素和 bFGF 也是现在时, Wnt3a 和 Wnt1 提高了无差别的 hES 房间的增长。探索可能性由激活 Wnt 发信号支持无差别的 hES 细胞的增长,在使不朽的人的成年成纤维细胞(HAFi ) 的 weoverexpressed Wnt3a 或 Wnt1 基因在比主要老鼠支持无差别的 hES 细胞的长期的生长是优异的细胞胚胎的成纤维细胞。HAFi 房间与或没有 Wnt transgene 能被宣传 Wnt3a 基因的 indefinitely.Over 表示显著地提高了 HAFi 喂入器饲料分送器房间的能力支持我们测试了的 3 根不同 hES 房间线的无差别的生长。在 Wnt3a-overpressing HAFi 房间的 threecommonly-used 药选择基因的合作表示进一步使我们能在稳定的 transfection 或转导以后选择稀罕 hES 克隆。这些使不朽的设计喂入器饲料分送器房间(W3R ) 那列合作快车象 Wnt3a 那样的支持生长的基因和三药选择基因应该授权我们高效地为基本、翻译的研究使修改 hES 房间线基因。 展开更多
关键词 细胞分化 人体组织胚胎学 干细胞 传递信号
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