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4篇 您的检索式:作者名="LEE Hyungbeen"
    题名 作者 年代 出处 被引量
1Real-time electrical detection of epidermal skin MoS2 biosensor for point-of-care diagnostics显示文摘各种各样的途径为 point-of-care 诊断被建议了,并且特别地,因为它相对简单、快,光察觉被比较喜欢。同时,地效果晶体管(联邦货物税) 基于生物传感器因为他们能提供高度敏感、没有标签的察觉,吸引了大注意。在这个工作,我们有启用前列腺癌症抗原(PSA ) 的即时察觉的灵活瞬间 2 联邦货物税生物传感器,读出电路,和轻射出的二极管(LEDs ) 的系统级的集成的现在的高度敏感的、表皮的皮类型 point-of-care 设备。不管物理形式或机械压力条件,我们的建议高效的瞬间 2 生物传感器能检测 1 pg 的 PSAGeonwook Yoo Heekyeong Park Minjung Kim Won Geun Song Seokhwan Jeong Min Hyung Kim Hyungbeen Lee Sang Woo Lee Young KiHong Min Goo Lee Sungho Lee Sunkook Kim 2017Nano Research2017,10,3:2
2Ex situ echo sounder target strengths of ice krill Euphausia crystallorophias显示文摘Ice krill is the keystone species in the neritic ecosystem in the Southern Ocean,where it replaces the more oceanic Antarctic krill. It is essential to understand the variation of target strength(TS in d B re 1 m 2) with the different body size to accurately estimate ice krill stocks. However,there is comparatively little knowledge of the acoustic backscatter of ice krill. The TS of individual,formalin-preserved,tethered ice krill was measured in a freshwater test tank at 38,120,and 200 k Hz with a calibrated split-beam echo sounder system. Mean TS was obtained from 21 individual ice krill with a broad range of body lengths(L :13–36 mm). The length( L,mm) to wet weight( W; mg) relationship for ice krill was W =0.001 218×103 × L 3.53( R 2= 0.96). The mean TS-to-length relationship were TS3 8 k Hz =-177.4+57log 10( L),( R 2 = 0.86); TS 120 k Hz =-129.9+31.56 log 10( L),( R 2 =0.87); and TS 200 k Hz =-117.6+24.66log1 0( L),( R 2 =0.84). Empirical estimates of the relationship between the TS and body length of ice krill were established at 38,120,and 200 k Hz and compared with predictions obtained from both the linear regression model of Greene et al.(1991) and the Stochastic Distorted Wave Born Approximation(SDWBA) model. This result might be applied to improve acoustic detection and density estimation of ice krill in the Southern Ocean. Further comparative studies are needed with in situ target strength including various body lengths of ice krill.Hyoung Sul LA Hyungbeen LEE Donhyug KANG SangHoon LEE Hyoung Chul SHIN 2015Chinese Journal of Oceanology and Limnology2015,33,3:1
3Erratum to: Real-time electrical detection of epidermal skin MoS2 biosensor for point-of-care diagnostics显示文摘Geonwook Yoo Heekyeong Park Minjung Kim Won Geun Song Seokhwan Jeong Min Hyung Kim Hyungbeen Lee Sang Woo Lee Young Ki Hong Min Goo Lee Sungho Lee Sunkook Kim 2017Nano Research2017,10,3:0
4The diel vertical migration of the sound-scattering layer in the Yellow Sea Bottom Cold Water of the southeastern Yellow Sea: focus on its relationship with a temperature structure显示文摘Using the hydroacoustic method with a 200 kHz scientific echo sounding system,the diel vertical migration(DVM) of the sound-scattering layer(SSL) in the Yellow Sea Bottom Cold Water(YSBCW) of the southeastern Yellow Sea was studied in April(spring) and August(summer) of 2010 and 2011.For each survey,13–27 hours of acoustic data were continuously collected at a stationary station.The acoustic volume scattering strength(Sv) data were analyzed with temperature profile data.In the spring of both 2010 and 2011,the SSL clearly showed the vertical migration throughout the entire water column,moving from the surface layer at night to near the bottom during the day.Conductivity,temperature,and depth data indicated that the entire water column was well mixed with low temperature of about 8 C.However,the SSL showed different patterns in the summers of 2010 and 2011.In the summer of 2010(28 C at the surface),the SSL migrated to near the bottom during the day,but there were two SSLs above and below the thermocline at depth of 10–30 m at night.In the summer of 2011(20 C at the surface),the SSL extended throughout the entire water column at night,possibly owing to an abrupt change in sea weather conditions caused by the passage of a Typhoon Muifa over the study area.It was concluded that the DVM patterns in summer in the YSBCW area may be greatly influenced by a strengthened or weakened thermocline.LEE Hyungbeen CHO Sungho KIM Woongseo KANG Donhyug 2013Acta Oceanologica Sinica2013,32,9:0
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