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4篇 您的检索式:作者名="Geon Kook"
    题名 作者 年代 出处 被引量
1Desmoplastic fibroma with malignant transformation显示文摘Hye Sook Min Hyun Gyui Kang Joo-Hyuk Lee Geon Kook Lee Jae Y. Ro 2010Annals of Diagnostic Pathology2010,,:1
2Mosaic pattern of encapsulated hepatocellular carcinoma: Correlation of magnetic resonance imaging and pathology显示文摘Byung Ihn Choi M.D. Geon Kook Lee Soo Tae Kim Man Chung Han 1990Gastrointestinal Radiology1990,,1:1
3Real - time endobronchial ultrasound - guided transbronhcial needle aspiration in mediastinal staging of non - small cell lung cancer: How many aspirations per target lymph node station显示文摘HEE SEOK LEE GEON KOOK LEE HYUN- SUNG LEE 2008Chest2008,134,2:1
4Multifocal skull-compensated transcranial focused ultrasound system for neuromodulation applications based on acoustic holography显示文摘Transcranial focused ultrasound stimulation is a promising therapeutic modality for human brain disorders because of its noninvasiveness,long penetration depth,and versatile spatial control capability through beamforming and beam steering.However,the skull presents a major hurdle for successful applications of ultrasound stimulation.Specifically,skull-induced focal aberration limits the capability for accurate and versatile targeting of brain subregions.In addition,there lacks a fully functional preclinical neuromodulation system suitable to conduct behavioral studies.Here,we report a miniature ultrasound system for neuromodulation applications that is capable of highly accurate multiregion targeting based on acoustic holography.Our work includes the design and implementation of an acoustic lens for targeting brain regions with compensation for skull aberration through time-reversal recording and a phase conjugation mirror.Moreover,we utilize MEMS and 3D-printing technology to implement a 0.75-g lightweight neuromodulation system and present in vivo characterization of the packaged system in freely moving mice.This preclinical system is capable of accurately targeting the desired individual or multitude of brain regions,which will enable versatile and explorative behavior studies using ultrasound neuromodulation to facilitate widespread clinical adoption.Geon Kook Yehhyun Jo Chaerin Oh Xiaojia Liang Jaewon Kim Sang-Mok Lee Subeen Kim Jung-Woo Choi Hyunjoo Jenny Lee 2023Microsystems & Nanoengineering2023,9,2:0
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