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Featured researches published by Tomotaka Furuta.


Proceedings of SPIE | 2015

A study on the quantitative evaluation of skin barrier function

Tomomi Maruyama; Yasuhiro Kabetani; Michiko Kido; Kenji Yamada; Hirotoshi Oikaze; Yohei Takechi; Tomotaka Furuta; Shoichi Ishii; Haruna Katayama; Hieyong Jeong; Yuko Ohno

We propose a quantitative evaluation method of skin barrier function using Optical Coherence Microscopy system (OCM system) with coherency of near-infrared light. There are a lot of skin problems such as itching, irritation and so on. It has been recognized skin problems are caused by impairment of skin barrier function, which prevents damage from various external stimuli and loss of water. To evaluate skin barrier function, it is a common strategy that they observe skin surface and ask patients about their skin condition. The methods are subjective judgements and they are influenced by difference of experience of persons. Furthermore, microscopy has been used to observe inner structure of the skin in detail, and in vitro measurements like microscopy requires tissue sampling. On the other hand, it is necessary to assess objectively skin barrier function by quantitative evaluation method. In addition, non-invasive and nondestructive measuring method and examination changes over time are needed. Therefore, in vivo measurements are crucial for evaluating skin barrier function. In this study, we evaluate changes of stratum corneum structure which is important for evaluating skin barrier function by comparing water-penetrated skin with normal skin using a system with coherency of near-infrared light. Proposed method can obtain in vivo 3D images of inner structure of body tissue, which is non-invasive and non-destructive measuring method. We formulate changes of skin ultrastructure after water penetration. Finally, we evaluate the limit of performance of the OCM system in this work in order to discuss how to improve the OCM system.


Archive | 2001

Apparatus and method for transmitting and detecting light

Masami Ito; Masahiro Kuwabara; Tomotaka Furuta


Archive | 2011

OPTICAL INTERFERENCE MEASURING METHOD AND OPTICAL INTERFERENCE MEASURING APPARATUS

Yasuhiro Kabetani; Tomotaka Furuta; Seiji Hamano; Fumio Sugata


Archive | 1992

Apparatus and method for measuring angle

Takashi Urashima; Kazumasa Takata; Tomotaka Furuta; Hidetoshi Utsuro


Archive | 2006

ANGLE MEASURING DEVICE AND METHOD

Takashi Urashima; Kazumasa Takata; Tomotaka Furuta; Hidetoshi Utsuro


Archive | 2005

Method and apparatus for inspection of optical component

Kazumasa Takata; Hidetoshi Utsuro; Tomotaka Furuta; Takashi Urashima


Archive | 2013

Winding device, winding method, inspection device and structure manufacturing method

Yasuhiro Kabetani; Tomotaka Furuta; Nobuo Hara; Shohei Aoki; Seiji Hamano


Archive | 2016

INTERFEROMETRIC BIOLOGICAL MEASUREMENT DEVICE AND BIOLOGICAL MEASUREMENT METHOD

Yasuhiro Kabetani; o Panasonic Intellectual PropertyManagement Co.; Hirotoshi Oikaze; Yohei Takechi; Tomotaka Furuta


Archive | 2016

INNER LAYER MEASUREMENT METHOD AND INNER LAYER MEASUREMENT DEVICE

Hirotoshi Oikaze; Yasuhiro Kabetani; Yohei Takechi; Tomotaka Furuta


Archive | 2015

Protective member and method for using protective member

Yohei Takechi; Hirotoshi Oikaze; Yasuhiro Kabetani; Tomotaka Furuta

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