ÀÎõÀç´É´ëÇб³ ¼Ûµµ¹ÙÀÌ¿À°ú ±³¼ö¼Ò°³ ÀÔ´Ï´Ù.
¸®½ºÆ®
ÀÌ ¸§
| ³²Á¤ÈÆ |
Á÷ À§
| Á¶±³¼ö |
ÁÖÀü°ø
| »ýüÀ¯Ã¼ ¹× ¿,À¯Ã¼°øÇÐ |
´ã´ç°ú¸ñ
| ¹ÙÀÌ¿À°øÁ¤ºÐ¼®, ±âÃʼöÇÐ, ÀϹÝÈÇÐ µî |
ÀüȹøÈ£
| 032-890-7515 |
¿¬±¸½Ç
| ¼ÛµµÄ·ÆÛ½º 2Ãþ-6 |
e-mail
| namjh@jeiu.ac.kr |
Çз»çÇ×
°í·Á´ëÇб³ ±â°è°øÇаú, ±â°è°øÇÐ ¼®»ç°í·Á´ëÇб³ ±â°è°øÇаú, ¿¹×À¯Ã¼°øÇÐ ¹Ú»ç (»ýüÀ¯Ã¼Àü°ø)https://sites.google.com/site/biocirclenam/
°æ·Â»çÇ×
2020.10.13~ ÇöÀç ÁÖ½Äȸ»ç ¿£¹ÙÀÌ¿À½º ±â¼ú ÀÚ¹®À§¿ø ±â¼ú ÀÚ¹®2018.09.27~ 2020.09.26 ÁÖ½Äȸ»ç ¹ÙÀÌ¿ÀÁ¨ÅØ ±â¼ú ÀÚ¹®À§¿ø ±â¼ú ÀÚ¹®2016.10.01~ 2021.02.28 °í·Á´ë Àǰú´ëÇÐ ÀÀ±ÞÀÇÇаú ¿Ü»ó¿¬±¸¼Ò ¿¬±¸±³¼ö2016.07.01~ 2021.02.28 °í·Á´ë ±¸·Îº´¿ø ÀÇ»ý¸í ¿¬±¸¼¾ÅÍ ¼±ÀÓ±Þ ¿¬±¸Àü´ã¿ä¿ø2015.09.01~ 2016.10.31 °í·Á´ë ±¸·Îº´¿ø ÀÇ·á±â±â Áß°³ÀÓ»ó½ÃÇèÁö¿ø¼¾ÅÍ ¼±ÀÓ¿¬±¸¿ø2015.10.01~ 2016.09.30 °í·Á´ë Àǰú´ëÇÐ Áø´Ü°Ë»çÀÇÇаú ¿©ÇàÁúȯ ü¿ÜÁø´Ü ±â¼ú¿¬±¸¼Ò ¿î¿µÀ§¿ø2013.11.01¢¦2015.09 1³â 10°³¿ù ½Ì°¡Æú ±¹¸³´ëÇб³ (NUS) Microhemodynamics Lab. Research fellow2013.03.01~2013.10.31 °í·Á´ëÇб³ Â÷¼¼´ë±â°è¼³°è¿¬±¸¿ø ¼±ÀÓ¿¬±¸¿ø2012.03.01~2013.02.28 °í·Á´ëÇб³ °øÇбâ¼ú¿¬±¸¿ø (³ª³ë-¹ÙÀÌ¿ÀÀ¯Ã¼½Ã½ºÅÛ) ¼±ÀÓ¿¬±¸¿ø2004.07.22¢¦2005.01.31 Çѱ¹°úÇбâ¼ú¿¬±¸¿ø(KIST) ¸¶ÀÌÅ©·Î½Ã½ºÅÛ ¿¬±¸¼¾ÅÍ Çлý¿¬±¸¿ø
³í¹®½ÇÀû
[ÁøÇàÁß][52] Jeeyong Kim¢Ô, Hyunjung Lim¢Ô, Hyunseul Jee, Sungha Park, Woong Sik Jang*, Chae Seung Lim* and Jeonghun Nam*, High-throughput cell concentration using a piezoelectric pump in closed-loop viscoelastic microfluidics (submitted) (¢Ô equally contributed, * corresponding author)[±¹Á¦³í¹®]2021[51] Jung Yoon, Woong Sik Jang, Jeonghun Nam, Do-CiC Mihn, Chae Seung Lim, An automated microscopic malaria detection system using digital image analysis, Diagnostics, 11(3), 527, 2021 (Impact factor 3.11)[50] Borae G Park, Jee Yong Kim, Da Hye Lim, Woong Sik Jang, Jeonghun Nam, Do-Cic Mihn, Chae Seung Lim, Development and evaluation of a Multiplex Loop-Mediated Isothermal Amplification (LAMP) Assay for differentiation of Mycobacterium tuberculosis and Non-tuberculosis Mycobacterium in Clinical Samples, Plos One, 16(1), e0244753, 2021 (Impact factor 2.74)[49] Ha-Nui Kim, Woong Sik Jang, Jeonghun Nam, Do-Cic Mihn, Chae Seung Lim, Performance Evaluation of Alere i influenza A&B in Detecting Influenza Viruses A and B, Annals of Clinical & Laboratory Sciences, 51(1), 106-111, 2021 (Impact factor 0.927)[48] Jeonghun Nam*¢Ó, Jung Yoon*, Hyunseul Jee, Woong Sik Jang, Chae Seung Lim¢Ó, High-throughput separation of microvesicles from whole blood components using viscoelastic fluid , Advanced Materials Technologies, 5(12), 2000612, 2020 (Impact factor 5.969) (¢Ó corresponding author) [47] Woong Sik Jang, Da Hye Lim, Jeonghun Nam, Do-CiC Mihn, Haan Woo Sung, Chae Seung Lim, Jeeyong Kim, Development of a multiplex isothermal amplification molecular diagnosis method for on-site diagnosis of influenza, Plos one, 15(9), e0238615, 2020 (Impact factor 2.74)[46] Chae Seung Lim, Woong Sik Jang, Jeonghun Nam, CD34 count using Image based-immunofluorescence cell counter with filter paper imbedded microchip, The Journal of Immunology, 204(1), 159.39, 2020 (Impact factor 4.886)[45] Hyunjung Lim, Seung Min Back, Hyuk Choi¢Ó, Jeonghun Nam¢Ó, Acoustic mixing in a dome-shaped chamber-based SAW (DC-SAW) device, Lab on a Chip, 20, 120-125, 2020 (Impact factor 6.774) (¢Ó corresponding author) 2019[44] Jeonghun Nam¢Ó, Hyunseul Jee, Woong Sik Jang, Jung Yoon, Borae G. Park, Seong Jae Lee, Chae Seung Lim¢Ó, Sheathless shape-based separation of Candida albicans using a viscoelastic non-Newtonian fluid, Micromachines, 10, 817, 2019 (Impact factor 2.523) (¢Ó corresponding author)[43] Ha-Nui Kim, Jee Yong Kim, WoongSik Jang, Jeonghun Nam, and Chae Seung Lim, Performance Evaluation of Three Rapid Antigen Tests for the Diagnosis of Group A Streptococci, BMJ Open, 9(8), e025438, 2019 (Impact factor 2.496)[42] Jeonghun Nam*¢Ó, Woong Sik Jang,* Jisoo Kim, Hyukjin Lee and Chaeseung Lim¢Ó, Lamb wave-based molecular diagnosis using DNA hydrogel formation by rolling circle amplification (RCA) process, Biosensors and Bioelectronics, 142, 111496, 2019 (Impact factor 10.257) (* equal contribution, ¢Ó corresponding author)[41] Hyunjung Lim, Seung Min Back, Min Ho Hwang, Dae-Hee Lee, Hyuk Choi¢Ó and Jeonghun Nam¢Ó, Sheathless High-throughput Circulating Tumor Cell Separation Using Viscoelastic non-Newtonian Fluid, Micromachines, 10(7), 462, 2019 (Impact factor 2.523)[40] Jeeyong Kim, Woong Sik Jang, Jeonghun Nam, Chae Seung Lim, Clinical Performance of Allplex Respiratory Panel 1 Test Compared to Simplexa Flu A/B and RSV for the Detection of Influenza Virus and Respiratory Syncytial Virus Infection Including Their Subtyping, Medical Principles and Practice, 28(4), 380-386, 2019 (Impact factor 1.295) [39] Jeonghun Nam¢Ó, Jung Yoon, Jeeyong Kim, Woong Sik Jang and Chae Seung Lim¢Ó, Continuous erythrocyte removal and leukocyte separation from whole blood based on viscoelastic cell focusing and the margination phenomenon, Journal of Chromatography A, 1595(21), 230-239, 2019 (Impact factor 4.049) (¢Ó corresponding author)[38] Jung Yoon, Jung Ah Kwon, Soo Young Yoon, DongJune Yang, WoongSik Jang, Jeonghun Nam, and Chae Seung Lim, Diagnostic performance of CellaVision DM96 for Plasmodium vivax and Plasmodium falciparum screening in peripheral blood smears, Acta Tropica, 193, 7-11, 2019 (Impact factor 2.555) [37] Woong Sik Jang, Seung Yeon Kwak, Win Lai May, Dong June Yang, Jeonghun Nam, Chae Seung Lim, Comparative Evaluation of Three Dengue Duo Rapid Test Kits to Detect NS1, IgM, and IgG Associated with Acute Dengue in Children in Myanmar, PLoS One, 14(3), e0213451, 2019 (Impact factor 2.74)[36] Jeonghun Nam¢Ó, Woong Sik Jang, Da Hye Hong and Chae Seung Lim¢Ó, Viscoelastic Separation and Concentration of Fungi from Blood for Highly Sensitive Molecular Diagnostics, Scientific Reports, 9, 3067, 2019 (Impact factor 3.998) (¢Ó corresponding author) [35] Jeonghun Nam¢Ó, Woong Sik Jang and Chae Seung Lim¢Ó, Non-electrical powered continuous cell concentration for enumeration of residual white blood cell (r-WBC) in WBC-depleted blood using a viscoelastic fluid, Talanta, 197, 12-19, 2019 (Impact factor 5.339) (¢Ó corresponding author)2018[34] Jeeyong Kim, Chi Hyun Cho, Bo Kyeung Jung, Jeonghun Nam, Hong Seog Seo, Sehyun Shin, Chae Seung Lim, Comparative evaluation of Plateletworks, Multiplate analyzer and Platelet function analyzer-200 in Cardiology patients, Clinical Hemorheology and Microcirculation, 7(3), 257-265, 2018 (Impact factor 1.741)[33] Hyunjung Lim*, Seung Min Back*, Jeonghun Nam¢Ó and Hyuk Choi¢Ó, Determination of red blood cell deformability using centrifugal force in a three-dimensional-printed mini-disk (3D-PMD), PLoS One, 13(5), e0197619, 2018 (impact factor 2.74) (¢Ó corresponding author) [32] Jeonghun Nam*¢Ó, Hyunjoo Choi*, Jae Young Kim, Woongsik Jang, and Chaeseung Lim¢Ó, Lamb wave-based blood coagulation test, Sensors and Actuators B: Chemical, 263, 190-195, 2018 (*equal contribution, ¢Ó corresponding author) (Impact factor 7.1)[31] Jeonghun Nam¢Ó, Woong Sik Jang and Chae Seung Lim¢Ó, Micromixing using a conductive liquid-based focused surface acoustic wave (CL-FSAW), Sensors and Actuators B: Chemical, 258, 991-997, 2018 (¢Ó corresponding author) (Impact factor 7.1)2017[30] Bonhan Koo, Choong Eun Jin, Se Yoon Park, Tae Yoon Lee, Jeonghun Nam, Young-Rock Jang, Sun Mi Kim, Ji Yeun Kim, Sung-Han Kim, Yong Shin, A rapid bio-optical sensor for diagnosing Q fever in clinical specimens, Journal of Biophotonics, 11(4), e201700167, 2017(Impact factor 3.032)[29] Jeonghun Nam¢Ó and Chae Seung Lim¢Ó, Micromixing using swirling induced by 3-dimentional dual Surface Acoustic Wave (3D-dSAW), Sensors and Actuators B: Chemical, 255(3), 3434-3440, 2017 (¢Ócorresponding author) (Impact factor 7.1)[28] Jeonghun Nam¢Ó, Jae Young Kim, and Chae Seung Lim¢Ó, Continuous sheathless microparticle and cell patterning using CL-SSAWs (conductive liquid-based standing surface acoustic waves), AIP Advances, 7, 015314, 2017 (¢Ó corresponding author) (Impact factor 1.337)[27] Jung Yoon, Seung Gyu Yun, Young Eun Koh, Jeonghun Nam, Sung Hyuk Choi, and Chae Seung Lim, The use of Saliva Specimens for Detection of Influenza A and B viruses by Rapid Influenza Diagnostic Tests, Journal of Virological Methods, 243, 15-19, 2017 (Impact factor 1.786)2016[26] S.-W. Ryu, J.-H. Lee, J. Kim, M.-A. Jang, J.-H. Nam, M.-S. Byoun and C.S. Lim, Comparison of two new generation influenza rapid diagnostic tests with instrument-based digital readout systems for influenza virus detection, British Journal of Biomedical Science, 73(3), 115-120, 2016 (Impact factor 2.712)[25] Jung Yoon, Seung Gyu Yun,Jee Yong Kim, YooNa Jung, Young Eun Ko, JeongHun Nam, EunTaek Han, Chae Seung Lim, Evaluation of the LH780 hematology analyzer for detection and therapeutic monitoring of malaria: Cross-reactivity with nucleated RBC, Acta Tropica, 164, 425-430, 2016 (Impact factor 2.555)[24] Jeonghun Nam¢Ó and Chae Seung Lim¢Ó, A conductive liquid-based surface acoustic wave device, Lab on a Chip, 16, 3750-3755, 2016 (Impact factor 6.774) (¢Ó corresponding author)[23] Jeonghun Nam, Yong Shin, Justin Kok Soon Tan, Chwee Teck Lim and Sangho Kim, High-throughput malaria parasite separation using a viscoelastic fluid for ultrasensitive PCR detection, Lab on a chip, 16, 2086-2092, 2016 (Impact factor 6.774)[22] Qing Liu, Jeonghun Nam, Sangho Kim, Chwee Teck Lim, Mi Kyoung Park, Yong Shin, Two-stage sample-to-answer system based on nucleic acid amplification approach for detection of malaria parasites, Biosensors and Bioelectronics, 82, 1-8, 2016 (Impact factor 10.257)2015[21] Jeonghun Nam*, Justin Kok Soon Tan*, Bee Luan Khoo, Bumseok Namgung, Hwa Liang Leo, Chwee Teck Lim and Sangho Kim, Hybrid capillary-inserted microfluidic device for sheathless particle focusing and separation in viscoelastic flow, Biomicrofluidics, 9, 064117, 2015 (* Equally contributed as a first author) (Impact factor 2.5)[20] Bumseok Namgung, Yan Cheng Ng, Jeonghun Nam, Hwa Liang Leo, Sangho Kim, Alteration of blood flow in a venular network by infusion of Dextran 500: Evaluation with a laser speckle contrast imaging system, PLOS One, 10(10), e0140038, 2015 (Impact factor 2.74)[19] Jeonghun Nam*, Bumseok Namgung*, Chwee Teck Lim, Jung Eun Bae, Hwa Liang Leo, Kwang Soo Cho and Sangho Kim, Microfluidic device for sheathless particle focusing and separation using a viscoelastic fluid, Journal of Chromatography A., 1406, 244-50, 2015 (* Equally contributed as a first author) (Impact factor 4.049)2014[18] Hyunjung Lim, Jeonghun Nam and Sehyun Shin, Lateral migration of particles suspended in viscoelastic fluids in a microchannel flow, Microfluidics and Nanofluidics, 17(4), 683-692, 2014 (Impact factor 2.489)2013[17] Jeonghun Nam, Hui Huang, Hyunjung Lim, Chaeseung Lim and Sehyun Shin, Magnetic separation of malaria-infected red blood cells in various developmental stages, Analytical Chemistry, 85(15), 7316-7323, 2013 (Impact factor 6.785)2012[16] Jeonghun Nam, Hyunjung Lim, Choong Kim, Jiyoon Kang and Sehyun Shin, Density-dependent separation of encapsulated cells in a microfluidic channel by using a standing surface acoustic wave, Biomicrofluidics, 6, 024120, 2012 (Impact factor 2.5)[15] Jeonghun Nam, Shubin Xue, Hyunjung Lim and Sehyun Shin, Study of erythrocyte aggregation at pulsatile flow conditions with backscattering analysis, Clinical Hemorheology and Microcirculation, 50(4), 257-266, 2012 (Impact factor 1.741)[14] Byungkwon Lee, Jaeyong Ko, Hyunjung Lim, Jeonghun Nam and Sehyun Shin, Investigation of critical shear stress with simultaneous measurement of electrical impedance, capacitance and light backscattering, Clinical Hemorheology and Microcirculation, 51(3), 203-212, 2012 (Impact factor 1.741)[13] Sehyun Shin, Jeonghun Nam and Hyunjung Lim, Continuous separation of microparticles using standing surface acoustic wave in microchannel, The Journal of the Acoustical Society of America, 131, 4, 3302, 2012 (Impact factor 1.780)[12] Jeonghun Nam, Hyunjung Lim, Dookon Kim, Hyunwook Jung and Sehyun Shin, Continuous separation of microparticles in a microfluidic channel via the elasto-inertial effect of non-Newtonian fluid, Lab on a chip, 12, 1347-1354, 2012 (Impact factor 6.774)[11] Hyunjung Lim, Jeonghun Nam, Shubin Xue and Sehyun Shin, Measurement of blood coagulation with considering RBC aggregation through a microchip-based light transmission aggregometer, Clinical Hemorheology and Microcirculation , 47, 211-218, 2011 (Impact factor 1.741)2011[10] Jeonghun Nam, Yongjin Lee and Sehyun Shin, Size-dependent microparticles separation through standing surface acoustic waves, Microfluidics and Nanofluidics, 11, 317-326, 2011 (Impact factor 2.489)[09] Jeonghun Nam, Hyunjung Lim, Dookon Kim and Sehyun Shin, Separation of platelets from whole blood using standing surface acoustic waves in a microchannel, Lab on a chip, 11, 3361-3364, 2011 (Impact factor 6.774)[08] Jeonghun Nam, Hyunjung Lim and Sehyun Shin, Manipulation of microparticles using surface acoustic wave in microfluidic systems: a brief review, Korea-Australia Rheology Journal, 23, 255-267, 2011 (Impact factor 1.39)[07] Byungkwon Lee, Shubin Xue, Jeonghun Nam, Hyunjung Lim and Sehyun Shin, Determination of the blood viscosty and yield stress with a pressure-scanning capillary hemorheometer using constitutive models, Korea-Australia Rheology Journal, 23, 1-6, 2011 (Impact factor 1.39)[06] Hyunjung Lim, Jeonghun Nam, Byungkwon Lee, Jangsoo Suh and Sehyun Shin, Alteration of red blood cell aggregation during blood storage, Korea-Australia Rheology Journal, 23, 67-70, 2011 (Impact factor 1.39)2010[05] Hyunjung Lim, Yongjin Lee, Jeonghun Nam, Seok Chung and Sehyun Shin, Temperature-dependent threshold shear stress of red blood cell aggregation, Journal of Biomechanics, 43, 546-550, 2010 (Impact factor 2.32)[04] Jeonghun Nam, Yijie Yang, Seok Chung and Sehyun Shin, Comparison of light-transmission and –backscattering methods in the measurement of red blood cell aggregation, Journal of Biomedical Optics, 15, 027003, 2010 (Impact factor 2.785)[03] Jeonghun Nam, Changbeom Kim and Sehyun Shin, The effect of L-carnosine on the rheological characteristics of erythrocytes incubated in glucose media, Korea-Australia Rheology Journal, 21, 103-108, 2009 (Impact factor 1.39)2009[02] Hyunjung Lim, Jeonghun Nam, Yongjin Lee and Sehyun Shin, Measurement of the temperature-dependent threshold shear- stress of red blood cell aggregation, Review of Scientific Instrument, 80, 096101, 2009 (Impact factor 1.48)[01] Sehyun Shin, Jeonghun Nam, Jian-Xun Hou and Jangsoo Suh, A transient, microfluidic approach to the investigation of erythrocyte aggregation: The threshold shear-stress for erythrocyte disaggregation, Clinical Hemorheology and Microcirculation, 42, 117-125, 2009 (Impact factor 1.741)[±¹³»³í¹®][02] Hyunseul Jee, Woong Sik Jang, Jeonghun Nam*, Chae Seung Lim*, Malaria parasite separation from white blood cells using conductive liquid-based standing surface acoustic wave (CL-SSAW), Journal of Biomedical Engineering Research, 2019 (KCI), (* corresponding author) [01] Hyunjoo Choi, Woong Sik Jang, Jeonghun Nam*, Chae Seung Lim*, A novel Method for Blood Typing using Acoustic Streaming, Journal of Biomedical Engineering Research, 2018 (KCI), (* corresponding author)
¿¬±¸°úÁ¦¼öÁÖ
[°³Àבּ¸ºñ ¼öÁÖ½ÇÀû]°úÁ¦¸í: ¾×ü »ý°ËÀ» À§ÇÑ Ç÷Áß ³ª³ë ½Ã·á Àüó¸® ¹× °í°¨µµ ¼¾¼ ÅëÇÕ ºÐ¼®½Ã½ºÅÛ °³¹ß (Áß°ß¿¬±¸ÀÚÁö¿ø»ç¾÷)¿¬±¸°úÁ¦¼öÇà±â°£: 2020.03.01 ~ 2023.02.28¿¬±¸ºñÁö¿ø±â°ü: Çѱ¹¿¬±¸Àç´ÜÂü¿©Àοø: ´Üµ¶ (¿¬±¸Ã¥ÀÓÀÚ)¿¬±¸ºñ: 1¾ï¿ø/³â°úÁ¦¸í: °í·Á´ëÇб³ ÀÇ·á¿ø »êÇÐÇù·Â´Ü 2020³â ½ÃÀÛǰ Á¦ÀÛ Áö¿ø»ç¾÷¿ªÇÒ: ¿¬±¸Ã¥ÀÓÀÚ°úÁ¦¸í: ¾×ü»ý°Ë¿ë ¸¶ÀÌÅ©·Î ¹× ³ª³ë½Ã·á Àü󸮼ÒÀÚ ½ÃÀÛǰ Á¦ÀÛ¿¬±¸±â°£: 2020.07.01 ~ 2020.09.30´çÇØ³âµµ ¿¬±¸ºñ: 27,000,000°úÁ¦¸í: Ç÷Áß ³ª³ëÀÔÀÚÀÇ ºÐ¸® ¹× ³óÃàÀ» À§ÇÑ ¿øÃµ±â¼ú °³¹ß ¹× ±× ÀÀ¿ë (½ÅÁø¿¬±¸ÀÚÁö¿ø»ç¾÷)¿¬±¸°úÁ¦¼öÇà±â°£: 2016.06.01 ~ 2019.05.31¿¬±¸ºñÁö¿ø±â°ü: Çѱ¹¿¬±¸Àç´ÜÂü¿©Àοø: ´Üµ¶ (¿¬±¸Ã¥ÀÓÀÚ)¿¬±¸ºñ: 5õ¸¸¿ø/³â°úÁ¦¸í: Ç÷Áß ³ª³ëÀÔÀÚÀÇ ºÐ¸® ¹× ³óÃàÀ» À§ÇÑ ¿øÃµ±â¼ú °³¹ß ¹× ±× ÀÀ¿ë (½ÅÁø¿¬±¸ÀÚÁö¿ø»ç¾÷-ÃÖÃÊÇõ½Å½ÇÇè½Ç)¿¬±¸°úÁ¦¼öÇà±â°£: 2018.06.01 ~ 2019.02.28¿¬±¸ºñÁö¿ø±â°ü: Çѱ¹¿¬±¸Àç´ÜÂü¿©Àοø: ´Üµ¶ (¿¬±¸Ã¥ÀÓÀÚ)´çÇØ³âµµ ¿¬±¸ºñ: 93,000,000
ƯÇã½ÇÀû
[±¹³»¿Ü ƯÇã½ÇÀû][24] Apparatus and method for microparticle analysis (¹Ì¼¼ÀÔÀÚÀÇ ºÐ¼®¹æ¹ý ¹× ÀåÄ¡), Korea University Guro Hospital / H.J. Lim, J.H. Nam, Patent application: 10-2020-0156599 (2020)[23] Acoustic device with embedded top plate (»óÆÇ »ðÀÔÇü À½ÇâÆÄ ¼ÒÀÚ), Korea University Guro Hospital / J.H. Nam, C.S. Lim, W.S. Jang, H.S. Jee, Patent application: 10-2020-0148472 (2020)[22] Nanoparticle separation device and method of separation of nanoparticles using it (³ª³ëÀÔÀÚ ºÐ¸®¼ÒÀÚ ¹× À̸¦ ÀÌ¿ëÇÑ ³ª³ëÀÔÀÚ ºÐ¸®¹æ¹ý), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2020-0096748 (2020)[21] Surface acoustic wave (SAW)-based blood plasma separation technique using a microfluidic channel with nonuniform cross-sectional shape (ºñ±ÕÀÏÇÑ ´Ü¸éÇü»ó ¹Ì¼¼À¯Ã¼ ä³ÎÀ» ÀÌ¿ëÇÑ Ç¥¸éź¼ºÆÄ ¼ÒÀÚ ±â¹Ý Ç÷¾× ³» Ç÷Àå ¹× ³ª³ë Å©±â ¼¼Æ÷ À¯·¡ ¹Ì¼¼ÀÔÀÚ ºÐ¸® ÀåÄ¡ ¹× À̸¦ ÀÌ¿ëÇÑ ¹æ¹ý), Korea University Guro Hospital / ÀÓä½Â, ³²Á¤ÈÆ, ÁöÇö½½, Patent application: 10-2020-0050730 (2020)[20] Chamber chip, microfluidic mixing device including the chamber chip and method of manufacturing the microfluidic mixing device (è¹ö ¼ÒÀÚ, »ó±â è¹ö ¼ÒÀÚ¸¦ Æ÷ÇÔÇÏ´Â ¹Ì¼¼ À¯Ã¼ È¥ÇÕÀåÄ¡ ¹× ¹Ì¼¼ À¯Ã¼ È¥ÇÕ ÀåÄ¡ÀÇ Á¦Á¶ ¹æ¹ý), Korea University Guro Hospital / H. Choi, J.H. Nam, H.J. Lim, Patent application: 10-2019-0137219 (2019)[19] Lamb-wave-based molecular diagnostic method and diagnostic device (·¥-¿þÀÌºê ±â¹Ý ºÐÀÚÁø´Ü ¹æ¹ý ¹× Áø´Ü¿ë ¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, W.S. Jang, Patent application: 10-2019-0015044 (2019)[18] Specimen analysis method based on a LAMB-wave and device for specimen analysis (·¥-¿þÀÌºê ±â¹Ý °Ëü ºÐ¼®¹æ¹ý ¹× °Ëü ºÐ¼®¿ë ¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, W.S. Jang, Patent application: 10-2019-0015026 (2019), Patent registration: 10-2185652 (2020) [17] Microfluidic device (¹Ì¼¼À¯Ã¼¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2018-0067628 (2018), (±â¼úÀÌÀü, ¢ß¹ÙÀÌ¿ÀÁ¨ÅØ, ½Ç½Ã·á 5õ¸¸¿ø, °è¾à±â°£ 2017.10.24-2019.10.23), Patent registration : 10-2033701 (2019)[16] Microscope system(Çö¹Ì°æ ½Ã½ºÅÛ), Korea University Guro Hospital / J.Y.Kim, J.H. Nam, C.S. Lim, Patent application: 10-2017-0147952 (2017), Patent registration : 10-0052336 (2019)[15] Device and method for blood coagulation evaluation based on Lamb-wave (·¥-¿þÀÌºê ±â¹Ý Ç÷¾×ÀÀ°í Æò°¡¼ÒÀÚ ¹× ¹æ¹ý), Korea University Guro Hospital / C.S. Lim, J.H. Nam, / Woongsik Jang, Hyunjoo Choi, Patent application: 10-2017-0143896 (2017), Patent application: PCT/KR2018/006056 (2018)(º¸°Ç»ê¾÷ÁøÈï¿ø '±â¼ú¹ß±¼ ¹× »ç¾÷È Àü¹®°¡ Ȱ¿ëÁö¿ø»ç¾÷' ¼öÇà Áß '2017³âµµ TLOÇùÀÇü ¿ì¼ö±â¼ú ´ë»ó ÇØ¿ÜƯÇã µî·ÏÁö¿ø' »ç¾÷ ¼±Á¤), Patent registration: 10-2030248 (2019)[14] Microfluidic device and method for manufacturing the same (¹Ì¼¼À¯Ã¼¼ÒÀÚ ¹× »ó±â ¹Ì¼¼À¯Ã¼¼ÒÀÚÀÇ Á¦Á¶¹æ¹ý), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2017-0135056 (2017), Patent registration: 10-1993526 (2019)[13] Chamber chip, blood testing device including the chamber chip and method of manufacturing the blood testing device (è¹ö ¼ÒÀÚ, »ó±â è¹ö¼ÒÀÚ¸¦ Æ÷ÇÔÇÏ´Â Ç÷¾×°Ë»çÀåÄ¡ ¹× »ó±â Ç÷¾× °Ë»çÀåÄ¡ÀÇ Á¦Á¶¹æ¹ý), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2017-0039365 (2017), Patent registration: 10-1953012 (2019)[12] Microfluidic device and method for fabricating thereof (¹Ì¼¼À¯Ã¼¼ÒÀÚ ¹× ÀÌÀÇ Á¦Á¶¹æ¹ý), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2016-0116705 (2016), Patent registration: 10-1891401 (2018), Patent registration: U.S.A.,16323163 (2019), Patent registration: EP 17839627.1 (2019), Patent registration: CN 201780049472.8 (2019)[11] Device design for microparticle separation (¹Ì¼¼ÀÔÀÚ ºÐ¸®¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 30-2016-0026532 (2016)[10] Development of microfluidic device for high-throughput, high-efficiency microparticle separation using non-Newtonian fluid (ºñ´ºÅϼº À¯Ã¼ ±â¹Ý °í¼öÀ², °í¼îÀ² ¹Ì¼¼ÀÔÀÚ ºÐ¸®¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2016-0005177 (2016), Patent registration: 10-1824080 (2018)[09] Hybrid capillary-inserted microfluidic device for sheathless focusing and separation in viscoelastic flow (ºñ´ºÅϼº À¯Ã¼¸¦ ÀÌ¿ëÇÑ ¹Ì¼¼ÀÔÀÚ Æ÷Ä¿½Ì ¹× ºÐ¸®¸¦ À§ÇÑ ÇÏÀ̺긮µå ijÇÊ·¯¸® »ðÀÔÇü ¹Ì¼¼À¯Ã¼¼ÒÀÚ), Korea University Guro Hospital / C.S. Lim, J.H. Nam, Patent application: 10-2016-0005176 (2016), Patent application: PCT/KR2016/006016 (2016), Patent registration: 10-1824087 (2018)[08] Apparatus and method for monitoring platelet function and drug response using centrifugation-based microfluidics, Korea University / S. Shin, C.S. Lim, J.H. Nam, H.J. Lim, Patent application: PCT,KR2013/012289 (2013), Patent application: CN 201380068809.1 (2015), Patent application: U.S.A., 14758291 (2015), Patent application: EP 13868176 (2015), Patent application: Japan 2015-547873 (2015), Patent registration: Japan 6091649 (2017), Patent registration: U.S.A., 9927425 (2018), Patent registration: CN104884954B (2018), Patent registration: EP2940470 (2020)[07] Microchip-based apparatus for examining platelet composite functions, Korea University / S. Shin, J.H. Nam, C.S. Lim, Patent application: PCT, KR2012/006338 (2013), Patent application: CN201280039166 (2014), Patent application: EP20120821927 (2014), Patent application: U.S.A., 14237667 (2012), Patent application: France, 12821927.6 (2014), Patent registration: U.S.A., 9239325 (2016), Patent registration: EP20182743692 (2018), Patent registration: France, 2743692 (2018)[06] Apparatus and method of platelet multi-function analysis, and micro stirring chip, Korea University / S. Shin, J.H. Nam, H.J. Lim, Patent application: U.S.A., 13600519 (2012), Patent registration: U.S.A., 08772040 (2014) [05] Apparatus and method of microparticle separation based on microfluidic chromatography using surface acoustic wave (Ç¥¸éź¼ºÆÄ¸¦ ÀÌ¿ëÇÑ ¹Ì¼¼À¯µ¿ Å©·Î¸¶Åä±×·¡ÇÇ ±â¹Ý ¹Ì¼¼ÀÔÀÚ ºÐ¸® ÀåÄ¡ ¹× ¹æ¹ý), Korea University /S. Shin, J.H. Nam, H.J. Lim, Patent application: Korea, 10-2012-0155968 (2012), Patent application: U.S.A., 14758249 (2014), Patent registration: Korea, 10-1356933 (2014), Patent registration : U.S.A., 10082455 (2018)[04] Apparatus of platelet multi-function analysis based on micro-chip, Korea University /S. Shin, J.H. Nam, H.J. Lim, C.S. Lim, Patent application: Korea, 10-2011-0079497 (2011), Patent registration: Korea, 10-1193566 (2012) [03] Apparatus and method of platelet multi-function analysis, and micro stirring chip, Korea University / S. Shin, J.H. Nam, H.J. Lim, Patent application: Korea, 10-2011-0078578 (2011), Patent registration: Korea, 10-1276179 (2013) [02] Apparatus and method of blood coagulation measurement using light transmission intensity, and micro stirring chip, Korea University / S. Shin, J.H. Nam, H.J. Lim, Patent application: Korea, 10-2010-0133462 (2010), Patent registration: Korea, 10-1222585 (2013) [01] Apparatus and method of red blood cell deformability measurement using rotating disc, Korea University /S. Shin, J.H. Nam, Patent application: Korea, 10-2008-0018961 (2008), Patent registration: Korea, 10-0915195 (2009)