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1992
Social Infrastructure
posted:2018/01/15

動体反応確認システム

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
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1991
Social Infrastructure
posted:2018/01/15

超音波プローブ移動装置

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
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1556
Social Infrastructure
posted:2016/01/06
特開2015-221185

半側空間無視の注意再獲得支援システム

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
半側空間無視患者に対するリハビリテーションを支援するためのシステムであり、訓練用画像内の一部領域のみを視認可能にするスリット領域を移動、拡大させるように訓練者に提示することで、訓練者の訓練用画像に対する注意部分を移動させる。これにより、訓練者は、「固定」、「解放」、「移動」の...
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2015-1215-01
Social Infrastructure
posted:2015/12/15

Ultrasonic Diagnosis Support Robot for Prenatal Care

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
● Online service : The obstetrician controls“Tenang”via teleoperation to see the ultrasonic images and diagnosis in real time.● Offline service : “Tenang” moves automatically to get and send the fetus images. The obstetrician checks them by the image reconstruction system.
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1488
Social Infrastructure
posted:2015/07/10
特開2015-100458

分散設置型インタラクティブ運動支援システム

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
参加者の運動を運動中に評価し、適切さについてのフィードバックを複数の画像などの感覚情報として与えることにより、参加者が運動の不適切さに気づき,自身で適切な運動を形作っていけるように誘引するシステム
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1324
Life sciences Information Communication
posted:2014/02/18
特許第5988137号

運動に対する内発的な動機付けを与え、継続的な運動を支援するシステム

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
運動を行う使用者に様々な音が提示され、当該音の高低に合わせて使用者が運動を行う。すると、システムでは、音の高低に合った動きか否かを判定し、体の各部位に対して、経験的データから、動きの偏重に応じた重み付けをした上で、使用者に、動きの不足している部位のトレーニングを誘引する。
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2013-1017-03
Life sciences
posted:2013/10/25

非侵襲的内出血抽出アルゴリズム

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
・救急医療における内出血検出(FAST)の感度向上・超音波画像処理に基づき血液貯留の疑義箇所を抽出する診断支援システムの構築
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2013-1017-02
Life sciences
posted:2013/10/25

モバイル端末操作型エコー遠隔診断ロボット

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
・遠隔地医師によるモバイル端末の操作で,救急搬送中の外傷患者の内出血の有無を診断可能・開発した操作アプリ・ロボット・通信技術を妊婦健診に活用することで新たなビジネスプランを創出
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2011-1031-01
Life sciences Manufacturing Technology
posted:2014/05/21

Biofeedback-type perception support robot technology for cognitive-neuro rehabilitation

IWATA, Hiroyasu Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
Accumulation of developmental knowledge and clinical data on perception support robot technology (RT) to aid in the rehabilitation of hemiplegic patients. A mechanism devised for communicating the ground conditions under the paralyzed foot to the healthy side by a unit that di...
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2018-0927-07
Life sciences
posted:2018/09/27

Chemical Health Monitor Kind to Skin

OHASHI, Keishi Senior Researcher (Research Council (Research Organization) Institute for Nanoscience & Nanotechnology)
collaborative researchers:KATAOKA, Kosuke Research Associate , 隼田 大輝 , 宮林 駿 , 佐藤 慎 , KUROIWA, Shigeki Researcher , TAWADA, Masashi Assistant Professor , IWATA, Hiroyasu Professor , MOMMA, Toshiyuki Professor , TOGAWA, Nozomu Professor , ASAHI, Toru Professor , OSAKA, Tetsuya Senior Research Professor
● Sticking a tiny sensor module on the skin using a polymer nanosheet. (Fig.2(a))  ● Silicon pH (ion) sensor suitable for a mass production and ultra small reference electrode. (Fig.2(b))  ● The sensors are driven without a battery directly by near-field communicatio...
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2016-0203-02
Nanotechnology / Materials
posted:2016/02/03

Electronic devices composed of polymer nanosheets

FUJIE, Toshinori Associate Professor (Affiliated organization Waseda Institute for Advanced Study)
collaborative researchers:IWASE, Eiji Associate Professor , TAKEOKA, Shinji Professor , IWATA, Hiroyasu Professor
● Flexible electronic devices mounted on free-standing polymer nanosheets ● Fabrication of conductive lines by inkjet printing of silver nanoparticles at room temperature● Soldering-free packaging of electronic elements (e.g., LED) based on van der Waals interactions
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