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Quadruple fusion imaging via transparent ultrasound transducer


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IMAGE: A schematic diagram of a quadruple fusion imaging system developed by coaxially combining a laser and a transparent ultrasound transducer. 1) Ultrasound image, 2) Photoacoustic image, 3) Optical coherence tomography.
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Credit: POSTECH
A quadruple fusion optical and ultrasound imaging system has been developed that allows diagnosis of eye conditions or tumors or to see the environment inside the body using a transparent ultrasound transducer.
Professor Chulhong Kim of POSTECH s Department of Electrical Engineering, Convergence IT Engineering, and Mechanical Engineering, Dr. Byullee Park of Department of Convergence IT Engineering, Ph.D. candidate Jeongwoo Park of School of Interdisciplinary Bioscience and Bioengineering, Professor Hyung Ham Kim of Department of Convergence IT Engineering, and Professor Unyong Jeong of Department of Materials Science and Engineering, in joint research with Professor Hong Kyun Kim of Kyungpook Nat ....

United States , Unyong Jeong , Chulhong Kim , Hong Kyun Kim , Department Of Convergence It Engineering , Department Of Electrical Engineering , National Rd Program , Science Research Program , National Research Foundation , Department Of Materials Science , Kyungpook National University School Of Medicine , Jeongwoo Park Of School Interdisciplinary Bioscience , Ministry Of Education , Ministry Of Science , Electrical Engineering , Mechanical Engineering , Byullee Park , Jeongwoo Park , Interdisciplinary Bioscience , Professor Hyung Ham Kim , Professor Unyong Jeong , Materials Science , Professor Hong Kyun Kim , Kyungpook National University School , National Academy , Basic Science Research Program ,

Soft and comfortable e-textiles that can be used to measure photoplenthysmography


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IMAGE: Electrodes are transcribed by printing electrodes on hydrogels and rolling fibers over electrodes(Left), Characteristics of modality and actual cardiac measurement applied to phototematic flow measurement at the fingertips by inserting.
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Credit: Korea Institute of Science and Technology(KIST)
Advances in wearable devices have enabled e-textiles, which fuse lightweight and comfortable textiles with smart electronics, and are garnering attention as the next-generation wearable technology. In particular, fiber electronic devices endowed with electrical properties, while retaining the specific characteristics of textiles, are key elements in manufacturing e-textiles.
Optoelectronic devices are generally constructed using layers of semiconductors, electrodes, and insulators; their performance is greatly affected by the size and structure of the electrodes. Fiber electronic components for e-textiles need to be fabricated on thin, pl ....

South Korea , Hyunjung Yi , Material Technology Development Program , Ministry Of Science , Jung Ah Lim , Post Silicon Semiconductor Institute , Korea Institute , Nano Letters , National Research Foundation , Basic Science Research Program , Nano Material Technology Development Program , Chemistry Physics Materials Sciences , Technology Engineering Computer Science , தெற்கு கொரியா , பொருள் தொழில்நுட்பம் வளர்ச்சி ப்ரோக்ர்யாம் , அமைச்சகம் ஆஃப் அறிவியல் , போஸ்ட் சிலிக்கான் குறைக்கடத்தி நிறுவனம் , கொரியா நிறுவனம் , நானோ எழுத்துக்கள் , தேசிய ஆராய்ச்சி அடித்தளம் , அடிப்படை அறிவியல் ஆராய்ச்சி ப்ரோக்ர்யாம் , நானோ பொருள் தொழில்நுட்பம் வளர்ச்சி ப்ரோக்ர்யாம் , வேதியியல் இயற்பியல் பொருட்கள் அறிவியல் , தொழில்நுட்பம் பொறியியல் கணினி அறிவியல் ,