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In this paper, the local stiffness of alive Caenorhabditis elegans (C. elegans) is evaluated by environmental-scanning electron microscope (E-SEM) nanorobotic manipulation system. The local and surface stiffness of C. elegans is important to evaluate to inject or insert micro-nano probes for gene-deliver or electrophysiologic applications. At first, we observe their fine structures by E-SEM system...
Demand for fast dynamic reconfiguration has increased since dynamic reconfiguration can accelerate the performance of processors. Dynamic reconfiguration has two important prerequisites: fast reconfiguration and numerous reconfiguration contexts. Unfortunately, fast reconfigurations and numerous contexts share a tradeoff relation on current VLSIs. Therefore, optically reconfigurable gate arrays were...
Demand for fast dynamic reconfiguration has increased since dynamic reconfiguration can accelerate the performance of implementation circuits on a programmable device. Such dynamic reconfiguration necessitates two important features: fast reconfiguration and numerous contexts. However, because fast reconfiguration and numerous contexts share a tradeoff relation on current VLSIs, optically reconfigurable...
A DORGA architecture has been proposed to increase gate density. It uses the junction capacitance of photo-diodes as dynamic memory, thereby obviating the static configuration memory. This paper presents the worldpsilas largest 11,424 gate-count dynamic optically reconfigurable gate array (DORGA) VLSI fabricated on a 96.04 mm2 chip using a 0.35 mum three-metal CMOS process technology and a perfect...
This paper presents the single evaluation of Caenorhabditis Elegans (C. Elegans) by the nanorobotic manipulation system inside an Environmental-Scanning Electron Microscope (E-SEM). C. Elegans has complex outer and inner structures constructed by approximately one thousand cells. Their fine structures were observed by E-SEM directly; without any drying or dyeing processes. For example, the lateral...
In this paper, we propose the on-chip fabrication method of microstructure with dimensions of ~ 20 mum to apply for the single cell analysis. The polymerized objects with arbitrary shape are fabricated by illumination of patterned UV-ray through the mask to the photo-crosslinkable resin on the microchip under a microscope. The mask is patterned the desired patterns. The fabricated polymerized objects...
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