Jung Eun Lee

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Single-crystalline silicon nanomembranes (Si NMs) represent a critically important class of material for high-performance forms of electronics that are capable of complete, controlled dissolution when immersed in water and/or biofluids, sometimes referred to as a type of "transient" electronics. The results reported here include the kinetics of hydrolysis(More)
STUDY DESIGN A retrospective study. PURPOSE To comparatively investigated the rate of the adjacent segment degeneration and the clinical outcomes in patients with spondylolytic spondylolisthesis, spinal stenosis or degenerative spondylolisthesis. OVERVIEW OF LITERATURE There have been few studies reported on the adjacent segment degeneration following(More)
This paper proposes a novel method for computing the cavities and channels/tunnels in a protein molecule in interactive time without significant user effort. A sphere tree structure is used to represent a protein molecule, which provides a parallel architecture to access a Graphic Processing Unit (GPU) memory. The use of CUDA programming with a GPU then(More)
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