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1181por Butkutė, Agnė, Jurkšas, Tomas, Baravykas, Tomas, Leber, Bettina, Merkininkaitė, Greta, Žilėnaitė, Rugilė, Čereška, Deividas, Gulla, Aiste, Kvietkauskas, Mindaugas, Marcinkevičiūtė, Kristina, Schemmer, Peter, Strupas, Kęstutis“…Nowadays, lab-on-chip (LOC) devices are attracting more and more attention since they show vast prospects for various biomedical applications. …”
Publicado 2023
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1182
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1183por Li, Xin, Han, Mingyu, Chen, Meipeng, Li, Yun, Qin, Feifei, Zhu, Gangyi, Wang, Linning, Wang, Yongjin“…We also investigate the performance of this chip as a transmitter and transceiver terminal of visible light communication systems. …”
Publicado 2023
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1185por Abena, Alessandro, Soo, Sein Leung, Ataya, Sabbah, Hassanin, Hany, El-Sayed, Mahmoud Ahmed, Ahmadein, Mahmoud, Alsaleh, Naser A., Ahmed, Mohamed M. Z., Essa, Khamis“…This study presents a thorough experimental investigation utilising the design of experiments and analysis of variance (ANOVA) to examine the impact of machining process parameters on chip formation mechanisms, machining forces, workpiece surface integrity, and damage resulting from the orthogonal cutting of unidirectional CFRP. …”
Publicado 2023
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1186por Xie, Kecai, Li, Chengyang, Sun, Shouyu, Nam, Chang-Yong, Shi, Yong, Wang, Haipeng, Duan, Wu, Ren, Zhongjing, Yan, Peng“…However, the heavy supporting mass for large solar sails inevitably leads to low area-to-mass ratios. Inspired by chip-scale satellites, a chip-scale solar sail system named ChipSail, consisting of microrobotic solar sails and a chip-scale satellite, was proposed in this work. …”
Publicado 2023
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1187por Li, Feng, Yang, Jing-Jing, Sun, Zong-Yi, Wang, Lei, Qi, Le-Yao, A, Sina, Liu, Yi-Qun, Zhang, Hong-Mei, Dang, Lei-Fan, Wang, Shu-Jing, Luo, Chun-Xiong, Nian, Wei-Feng, O’Conner, Seth, Ju, Long-Zhen, Quan, Wei-Peng, Li, Xiao-Kang, Wang, Chao, Wang, De-Peng, You, Han-Li, Cheng, Zhu-Kuan, Yan, Jia, Tang, Fu-Chou, Yang, De-Chang, Xia, Chu-Wei, Gao, Ge, Wang, Yan, Zhang, Bao-Cai, Zhou, Yi-Hua, Guo, Xing, Xiang, Sun-Huan, Liu, Huan, Peng, Tian-Bo, Su, Xiao-Dong, Chen, Yong, Ouyang, Qi, Wang, Dong-Hui, Zhang, Da-Ming, Xu, Zhi-Hong, Hou, Hong-Wei, Bai, Shu-Nong, Li, Ling“…Further, we developed the plant-on-chip culture system and demonstrate the application of advanced technologies such as single-nucleus RNA-sequencing, protein structure prediction, and gene editing. …”
Publicado 2023
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1188por Dvorak, Josef, Novakova, Jana, Kraftova, Lucie, Studentova, Vendula, Matejovic, Martin, Radej, Jaroslav, Karvunidis, Thomas, Horak, Jan, Kralovcova, Marcela, Hrabak, Jaroslav, Kalaninova, Zuzana, Volny, Michael, Novak, Petr, Pompach, Petr“…The chips were used for the development of the rapid MALDI-TOF MS method. …”
Publicado 2023
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1189por Qiu, Chenxi, Wang, Peng, Kong, Xiangshun, Yan, Feng, Mao, Cheng, Yue, Tao, Hu, Xuemei“…To demonstrate our method, we design and fabricate a CS-SPAD sensor chip, build a prototype imaging system, and demonstrate the proposed on-chip snapshot compressive sensing method on the MINIST dataset and real handwritten digital images, with both qualitative and quantitative results.…”
Publicado 2023
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1190Challenges in the Development and Application of Organ-on-Chips for Intranasal Drug Delivery Studiespor Usman Khan, Muhammad, Cai, Xinyu, Shen, Zhiwei, Mekonnen, Taye, Kourmatzis, Agisilaos, Cheng, Shaokoon, Gholizadeh, Hanieh“…There have been attempts to manufacture anatomically relevant 3D replicas of the human nasal cavity for in vitro IN drug tests, and a couple of organ-on-chip (OoC) models, which mimic some key features of the nasal mucosa, have been proposed. …”
Publicado 2023
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1191por Mohamadali, Marjan, Ghiaseddin, Ali, Irani, Shiva, Amirkhani, Mohammad Amir, Dahmardehei, Mostafa“…Polydimethylsiloxane microchannels with a fed-batched controlled perfusion feeding system were used to create a full-thick ex-vivo human skin on-chip model. The design of a novel skin-on-a-chip model was reported, in which the microchannel structures mimic the architecture of the realistic vascular network as nutrients transporter to the skin layers. …”
Publicado 2023
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1192por Hadavi, Darya, Tosheva, Ilona, Siegel, Tiffany Porta, Cuypers, Eva, Honing, Maarten“…Three-dimensional (3D) cell cultures, including organ-on-a-chip (OOC) devices, offer the possibility to mimic human physiology conditions better than 2D models. …”
Publicado 2023
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1193“…The base material was aluminum alloy waste in the form of chips obtained by machining process. The leachable agent, used to create pores in the metal foams, was natrium chloride, which was later removed by leaching, resulting in metal foams with open cells. …”
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1195por Arslan, Ulgu, Brescia, Marcella, Meraviglia, Viviana, Nahon, Dennis M., van Helden, Ruben W.J., Stein, Jeroen M., van den Hil, Francijna E., van Meer, Berend J., Vila Cuenca, Marc, Mummery, Christine L., Orlova, Valeria V.“…Here, we developed an in vitro vascularized human cardiac microtissue (MT) model based on human induced pluripotent stem cells (hiPSCs) in a microfluidic organ-on-chip by coculturing hiPSC-derived, pre-vascularized, cardiac MTs with vascular cells within a fibrin hydrogel. …”
Publicado 2023
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1196por Yu, Yunru, Jin, Binghui, Chen, Jinghao, Lou, Chenghao, Guo, Jiahui, Yang, Chaoyu, Zhao, Yuanjin“…Here, novel nerve‐on‐a‐chip derived biomimicking microfibers for peripheral nerve regeneration are presented. …”
Publicado 2023
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1197“…We observed a broad range of non-specific binding across multiple NTA chips. Experiments run on the same chips had more consistent results in ligand immobilization and analyte binding than experiments run on different chips. …”
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1198por Cauli, Elisa, Polidoro, Michela Anna, Marzorati, Simona, Bernardi, Claudio, Rasponi, Marco, Lleo, Ana“…This study reviews the cancer-on-chips as one of the most promising tools to model and investigate the tumor microenvironment and metastasis. …”
Publicado 2023
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1199por Tong, Ziqiu, Esser, Lars, Galettis, Peter, Rudd, David, Easton, Christopher D., Nilghaz, Azadeh, Peng, Bo, Zhu, Douer, Thissen, Helmut, Martin, Jennifer H., Voelcker, Nicolas H.“…Microfluidic technology is applied across various research areas including organ-on-chip (OOC) systems. The main material used for microfluidics is polydimethylsiloxane (PDMS), a silicone elastomer material that is biocompatible, transparent, and easy to use for OOC systems with well-defined microstructures. …”
Publicado 2023
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1200por Yang, XiaokunEnlace del recurso
Publicado 2023
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