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Dive into the research topics where Hirohito Yamazaki is active.

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Featured researches published by Hirohito Yamazaki.


Applied Physics Express | 2016

Optical observation of DNA motion during and immediately after nanopore translocation

Hirohito Yamazaki; Shintaro Ito; Keiko Esashika; Toshiharu Saiki

Herein, we report an optical nanopore detection system capable of investigating DNA motion near nanopores not only during translocation but also post-translocation with submillisecond resolution. Using our optical nanopore detection system, we observed the voltage dependence of the dwell time of both 10-kbp double-stranded DNA (dsDNA) and lambda DNA in the excitation volume, which can be attributed to the drift-dominated motion. We found that the lambda DNA had slower drift motion than 10-kbp dsDNA, indicating that DNA with longer gyration experiences a lower nonuniform electric force.


conference on lasers and electro optics | 2015

Optical observation of DNA translocation dynamics through solid-state nanopores

Hirohito Yamazaki; Shintaro Itoh; Keiko Esashika; Toshiharu Saiki

We report an optical nanopore detection system for investigating DNA translocation dynamics through a nanopore at sub-millisecond and sub-100-nm resolutions. The proposed optical nanopore detection scheme enables the observation of both the translocation process and the escape process. We found different correlation between the translocation time and the escape time, depending on whether the translocation occurs in a folded or unfolded configuration.


Proceedings of SPIE | 2014

Highly sensitive measurement of single DNA translocation through an ultraviolet light spot on silicon nanopore

Hirohito Yamazaki; Shinji Kimura; Mutsumi Tsukahara; Shintaro Ito; Keiko Esashika; Toshiharu Saiki

Nanopore-based sensing is an attractive candidate for developing single-molecule DNA sequencing technology. Recently, optical detection with a parallel nanopore array has been demonstrated. Although this method is a promising approach to develop high thorough-put measurement, the approach requires observation at low-background condition. In this paper, we propose a new optical method for nanopore DNA sequencing with high resolution and a high signal-tonoise ratio. We use ultraviolet light for the excitation of a fluorescent probe and a nanopore in a silicon membrane. Because silicon has a large refractive index and an extinction coefficient at ultraviolet wavelengths, light transmission thorough the membrane is negligible. This contributes to low background measurement of fluorescence from fluorophore-labeled DNA strands. In addition, the z-polarization component of the electric field is attributed to generating a large electric field gradient at the nanopore exit due to its boundary condition at the silicon surface. Our numerical electromagnetic simulation revealed that the z-component electric field was dominant compared to the xcomponent electric filed. The intensity of the electric field increased steeply in 2 nm, when ultraviolet light of 375nm wavelength was focused on a 10nm-thick silicon membrane with a 7 nm-diameter nanopore. This steeply increasing electric field can be sufficient resolution for the sequencing of designed DNA polymer. Finally, our experimental results demonstrated optical detection of single DNA translocation events with a high signal-to-noise ratio under applied voltage.


Applied Physics A | 2016

Optical observation of DNA translocation through Al2O3 sputtered silicon nanopores in porous membrane

Hirohito Yamazaki; Shintaro Ito; Keiko Esashika; Yoshihiro Taguchi; Toshiharu Saiki


Applied Physics A | 2014

Optical detection of DNA translocation through silicon nanopore by ultraviolet light

Hirohito Yamazaki; Shinji Kimura; Mutsumi Tsukahara; Keiko Esashika; Toshiharu Saiki


The Japan Society of Applied Physics | 2018

Control of DNA Translocation through GeSbTe Nanopore by Laser Heating

Takaha Mizuguchi; Hirohito Yamazaki; Yuki Ishikawa; Masashi Kuwahara; Toshiharu Saiki


Nano Futures | 2017

A 150 nm ultraviolet excitation volume on a porous silicon membrane for direct optical observation of DNA coil relaxation during capture into nanopores

Hirohito Yamazaki; Keiko Esashika; Toshiharu Saiki


The Japan Society of Applied Physics | 2016

[JSAP-OSA Joint Symposia 2016 Invited Talk] DNA Sensing Based on Gold Nanoparticles and Silicon Nanopores

Toshiharu Saiki; Hirohito Yamazaki; Takaha Mizuguchi; Keiko Esashika


Applied Physics A | 2016

Salt dependence of DNA translocation dynamics through silicon nanopores detected by ultraviolet excitation

Shintaro Ito; Hirohito Yamazaki; Mutsumi Tsukahara; Keiko Esashika; Toshiharu Saiki


The Japan Society of Applied Physics | 2015

Optical observation of DNA capturing into silicon nanopores

Hirohito Yamazaki

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Masashi Kuwahara

National Institute of Advanced Industrial Science and Technology

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