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5篇 您的检索式:作者名="Joonho Cho"
    题名 作者 年代 出处 被引量
1Clinical application of repetitive transcranial magnetic stimulation in stroke rehabilitation显示文摘Proper stimulation to affected cerebral hemisphere would promote the functional recovery of patients with stroke. Effects of repetitive transcranial magnetic stimulation on cortical excitability can be can be altered by the stimulation frequency, intensity and duration. There has been no consistent recognition regarding the best stimulation frequency and intensity. This study reviews the intervention effects of repetitive transcranial stimulation on motor impairment, dysphagia, visuospatial neglect and aphasia, and summarizes the stimulation frequency, intensity and area for repetitive transcranial magnetic stimulation to yield the best therapeutic effects.Joonho Shin EunJoo Yang KyeHee Cho Carmelo L Barcenas Woo Jin Kim Nam-Jong Paik 2012Neural Regeneration Research2012,7,8:9
2Enhaneed diffusion in polymer electrolyte membrane fuel cells using oscillating flow 显示文摘HwangY Lee D Choi J W Kim S Cho S H Joonho P Kim M S Jang J H Kim S H Cha S 2010International Journal of Hydrogen Energy2010,35,8:1
3Neighbor caching in multihop wireless Ad Hoc networks显示文摘Joonho Cho Seungtaek Oh 2003IEEE Commullications Letters2003,7,11:1
4n-Gram-based indexing for Korean text retrieval 显示文摘JoonHo Lee Hyun Yang Cho Hyouk Ro Park 1999Information Processing and Management1999,35,1999:1
5Mechanical properties of graphene oxide?silk fibroin bionanofilms via nanoindentation experiments and finite element analysis显示文摘Understanding the mechanical properties of bionanofilms is important in terms of identifying their durability.The primary focus of this study is to examine the effect of water vapor annealed silk fibroin on the indentation modulus and hardness of graphene oxide-silk fibroin(GO-SF)bionanofilms through nanoindentation experiments and finite element analysis(FEA).The GO-SF bionanofilms were fabricated using the layer-by-layer technique.The water vapor annealing process was employed to enhance the interfacial properties between the GO and SF layers,and the mechanical properties of the GO-SF bionanofilms were found to be affected by this process.By employing water vapor annealing,the indentation modulus and hardness of the GO-SF bionanofilms can be improved.Furthermore,the FEA models of the GO-SF bionanofilms were developed to simulate the details of the mechanical behaviors of the GO-SF bionanofilms.The difference in the stress and strain distribution inside the GO-SF bionanofilms before and after annealing was analyzed.In addition,the load-displacement curves that were obtained by the developed FEA model conformed well with the results from the nanoindentation tests.In summary,this study presents the mechanism of improving the indentation modulus and hardness of the GO-SF bionanofilms through the water vapor annealing process,which is established with the FEA simulation models.Hyeonho CHO Joonho LEE Hyundo HWANG Woonbong HWANG Jin-Gyun KIM Sunghan KIM 2022Friction2022,10,2:0
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