<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>N. Kim | Just Do it Lab</title><link>https://jdl.kaist.ac.kr/authors/n.-kim/</link><atom:link href="https://jdl.kaist.ac.kr/authors/n.-kim/index.xml" rel="self" type="application/rss+xml"/><description>N. Kim</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><lastBuildDate>Wed, 01 Jan 2025 00:00:00 +0000</lastBuildDate><item><title>Acoustofluidics Lab on a Chip System for size-based Nanoparticle Separation</title><link>https://jdl.kaist.ac.kr/publications/2025-acoustofluidics-lab-on-a-chip-system-for-size-based-nanopart/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2025-acoustofluidics-lab-on-a-chip-system-for-size-based-nanopart/</guid><description>&lt;p&gt;J. Yoon, N. Kim, S. Jang, J. Noh, I. Park, S. Lee, H.-J. Choi, Y.-J. Yoon, (2025), Acoustofluidics Lab on a Chip System for size-based Nanoparticle Separation, International Journal of Precision Engineering and Manufacturing-Green Technology.&lt;/p&gt;</description></item><item><title>Exploring the Effect of Cadaver Head Fixation in Bone Conduction Hearing: Insights from Finite Element Modeling</title><link>https://jdl.kaist.ac.kr/publications/2025-exploring-the-effect-of-cadaver-head-fixation-in-bone-conduc/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2025-exploring-the-effect-of-cadaver-head-fixation-in-bone-conduc/</guid><description>&lt;p&gt;J. Lim, H. S. Shin, I. Dobrev, J. Niermann, C. Röösli, Y.-J. Yoon, N. Kim, (2025), Exploring the Effect of Cadaver Head Fixation in Bone Conduction Hearing: Insights from Finite Element Modeling. Hearing Research, 109354.&lt;/p&gt;</description></item><item><title>Exploring the impact of force direction and phase on bone conduction hearing with bone conduction actuator</title><link>https://jdl.kaist.ac.kr/publications/2025-exploring-the-impact-of-force-direction-and-phase-on-bone-co/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2025-exploring-the-impact-of-force-direction-and-phase-on-bone-co/</guid><description>&lt;p&gt;J. Lim, N. Kim, &amp;amp; Y.-J. Yoon, (2025), Exploring the impact of force direction and phase on bone conduction hearing with bone conduction actuator, Hearing Research&lt;/p&gt;</description></item><item><title>Hydration Reaction-Powered DNA Analysis Kit for Non-Instrumented Point-of-Care Diagnostics</title><link>https://jdl.kaist.ac.kr/publications/2025-hydration-reaction-powered-dna-analysis-kit-for-non-instrume/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2025-hydration-reaction-powered-dna-analysis-kit-for-non-instrume/</guid><description>&lt;p&gt;K. Han, S. Jang, W. X. Chan, J. Noh, N. Kim, &amp;amp; Y.-J. Yoon (2025). Hydration Reaction-Powered DNA Analysis Kit for Non-Instrumented Point-of-Care Diagnostics. International Journal of Precision Engineering and Manufacturing-Green Technology, 1-14.&lt;/p&gt;</description></item><item><title>A rotationally focused flow (RFF) microfluidic biosensor by density difference for early-stage detectable diagnosis</title><link>https://jdl.kaist.ac.kr/publications/2021-a-rotationally-focused-flow-rff-microfluidic-biosensor-by-de/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2021-a-rotationally-focused-flow-rff-microfluidic-biosensor-by-de/</guid><description>&lt;p&gt;Kim, N., Han, K., Su, P. C., Kim, I., &amp;amp; Yoon, Y. J. (2021). A rotationally focused flow (RFF) microfluidic biosensor by density difference for early-stage detectable diagnosis. Scientific Reports, 11(1), 1-12.&lt;/p&gt;</description></item><item><title>Understanding Interdependencies between Mechanical Velocity and Electrical Voltage in Electromagnetic Micromixers</title><link>https://jdl.kaist.ac.kr/publications/2020-understanding-interdependencies-between-mechanical-velocity/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2020-understanding-interdependencies-between-mechanical-velocity/</guid><description>&lt;p&gt;Kim, N., Chan, W. X., Ng, S. H., Yoon, Y. J., &amp;amp; Allen, J. B. (2020). Understanding Interdependencies between Mechanical Velocity and Electrical Voltage in Electromagnetic Micromixers. Micromachines, 11(7), 636.&lt;/p&gt;</description></item><item><title>An acoustic micromixer using low-powered voice coil actuation</title><link>https://jdl.kaist.ac.kr/publications/2018-an-acoustic-micromixer-using-low-powered-voice-coil-actuatio/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2018-an-acoustic-micromixer-using-low-powered-voice-coil-actuatio/</guid><description>&lt;p&gt;Kim, N., Chan, W. X., Ng, S. H., &amp;amp; Yoon, Y. J. (2018). An acoustic micromixer using low-powered voice coil actuation. Journal of Microelectromechanical Systems, 27(2), 171-178.&lt;/p&gt;</description></item><item><title>Mechanical effects of cochlear implant on acoustic hearing</title><link>https://jdl.kaist.ac.kr/publications/2018-mechanical-effects-of-cochlear-implant-on-acoustic-hearing/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2018-mechanical-effects-of-cochlear-implant-on-acoustic-hearing/</guid><description>&lt;p&gt;Chan, W. X., Yoon, Y. J., Shin, C. S., &amp;amp; Kim, N. (2018). Mechanical effects of cochlear implant on acoustic hearing. IEEE Transactions on Biomedical Engineering, 66(6), 1609-1617.&lt;/p&gt;</description></item><item><title>Mechanism of bone-conducted hearing: mathematical approach</title><link>https://jdl.kaist.ac.kr/publications/2018-mechanism-of-bone-conducted-hearing-mathematical-approach/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2018-mechanism-of-bone-conducted-hearing-mathematical-approach/</guid><description>&lt;p&gt;Chan, W. X., Yoon, Y. J., &amp;amp; Kim, N. (2018). Mechanism of bone-conducted hearing: mathematical approach. Biomechanics and modeling in mechanobiology, 17(6), 1731-1740.&lt;/p&gt;</description></item><item><title>UV-LEDs for the disinfection and bio-sensing applications</title><link>https://jdl.kaist.ac.kr/publications/2018-uv-leds-for-the-disinfection-and-bio-sensing-applications/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2018-uv-leds-for-the-disinfection-and-bio-sensing-applications/</guid><description>&lt;p&gt;Won, W. S., Park, W. T., Kim, K. K., Shin, C. S., Kim, N., Kim, Y. J., &amp;amp; Yoon, Y. J. (2018). UV-LEDs for the disinfection and bio-sensing applications. International Journal of Precision Engineering and Manufacturing, 19(12), 1901-1915.&lt;/p&gt;</description></item><item><title>Mechanical model of an arched basilar membrane in the gerbil cochlea</title><link>https://jdl.kaist.ac.kr/publications/2017-mechanical-model-of-an-arched-basilar-membrane-in-the-gerbil/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2017-mechanical-model-of-an-arched-basilar-membrane-in-the-gerbil/</guid><description>&lt;p&gt;Chan, W. X., Lee, S. H., Kim, N., Shin, C. S., &amp;amp; Yoon, Y. J. (2017). Mechanical model of an arched basilar membrane in the gerbil cochlea. Hearing research, 345, 1-9.&lt;/p&gt;</description></item><item><title>Empirical and biophysical estimations of human cochlea’s psychophysical tuning curve sharpness</title><link>https://jdl.kaist.ac.kr/publications/2016-empirical-and-biophysical-estimations-of-human-cochleas-psyc/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2016-empirical-and-biophysical-estimations-of-human-cochleas-psyc/</guid><description>&lt;p&gt;Chan, W. X., Kim, N., &amp;amp; Yoon, Y. J. (2016). Empirical and biophysical estimations of human cochlea’s psychophysical tuning curve sharpness. AIP Advances, 6(1), 015205.&lt;/p&gt;</description></item><item><title>Generalized metamaterials: Definitions and taxonomy</title><link>https://jdl.kaist.ac.kr/publications/2016-generalized-metamaterials-definitions-and-taxonomy/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2016-generalized-metamaterials-definitions-and-taxonomy/</guid><description>&lt;p&gt;Kim, N., Yoon, Y. J., &amp;amp; Allen, J. B. (2016). Generalized metamaterials: Definitions and taxonomy. The Journal of the Acoustical Society of America, 139(6), 3412-3418.&lt;/p&gt;</description></item><item><title>COCHLEAR MODELING USING" TIME-AVERAGED LAGRANGIAN" METHOD: COMPARISON WITH V BM, P ST, AND ZC MEASUREMENTS</title><link>https://jdl.kaist.ac.kr/publications/2009-cochlear-modeling-using-time-averaged-lagrangian-method-comp/</link><pubDate>Thu, 01 Jan 2009 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2009-cochlear-modeling-using-time-averaged-lagrangian-method-comp/</guid><description>&lt;p&gt;Yoon, Y., Kim, N., Puria, S., &amp;amp; Steele, C. R. (2009). COCHLEAR MODELING USING&amp;quot; TIME-AVERAGED LAGRANGIAN&amp;quot; METHOD: COMPARISON WITH V BM, P ST, AND ZC MEASUREMENTS. In Concepts And Challenges In The Biophysics Of Hearing: (With CD-ROM) (pp. 330-336).&lt;/p&gt;</description></item><item><title>Cochlear anatomy using micro computed tomography (micro CT) imaging</title><link>https://jdl.kaist.ac.kr/publications/2008-cochlear-anatomy-using-micro-computed-tomography-micro-ct-im/</link><pubDate>Tue, 01 Jan 2008 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2008-cochlear-anatomy-using-micro-computed-tomography-micro-ct-im/</guid><description>&lt;p&gt;Kim, N., Yoon, Y., Steele, C., &amp;amp; Puria, S. (2008, February). Cochlear anatomy using micro computed tomography (micro CT) imaging. In Photonic Therapeutics and Diagnostics IV (Vol. 6842, p. 68421A). International Society for Optics and Photonics.&lt;/p&gt;</description></item><item><title>Cochlear anatomy using micro computed tomography (micro CT) imaging, SPIE, San Jose</title><link>https://jdl.kaist.ac.kr/publications/2008-cochlear-anatomy-using-micro-computed-tomography-micro-ct-im-2/</link><pubDate>Tue, 01 Jan 2008 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2008-cochlear-anatomy-using-micro-computed-tomography-micro-ct-im-2/</guid><description>&lt;p&gt;Kim, N., Yoon, Y.-J., Puria, S., and Steele, C.R., 2008, Cochlear anatomy using micro computed tomography (micro CT) imaging, SPIE, San Jose, USA (Scopus indexed)&lt;/p&gt;</description></item><item><title>Effect of hook region geometry represented in a cochlear model, 10th Mechanics of Hearing Workshop, Keele University</title><link>https://jdl.kaist.ac.kr/publications/2008-effect-of-hook-region-geometry-represented-in-a-cochlear-mod/</link><pubDate>Tue, 01 Jan 2008 00:00:00 +0000</pubDate><guid>https://jdl.kaist.ac.kr/publications/2008-effect-of-hook-region-geometry-represented-in-a-cochlear-mod/</guid><description>&lt;p&gt;Steele, C. R., Yoon, Y.-J., Kim, N., and Puria, S., 2008, Effect of hook region geometry represented in a cochlear model, 10th Mechanics of Hearing Workshop, Keele University, United Kingdom&lt;/p&gt;</description></item></channel></rss>