ULVAC シャッフルカジノ トークンndustry-Academia Co-creation Initiatives and Doctoral Talent Development with Osaka University Graduate School of Engineeringシャッフルカジノ トークンchievements in Freeze-Drying Technology for Cells at the ULVAC-Osaka University Joint Research Labo
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  • ULVAC Announced Industry-Academia Co-creation Initiatives and Doctoral Talent Development with Osaka University Graduate School of Engineeringシャッフルカジノ トークンchievements in Freeze-Drying Technology for Cells at the ULVAC-Osaka University Joint Research Labo
2024.11.26
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ULVAC シャッフルカジノ トークンndustry-Academia Co-creation Initiatives and Doctoral Talent Development with Osaka University Graduate School of Engineering
シャッフルカジノ トークンchievements in Freeze-Drying Technology for Cells at the ULVAC-Osaka University Joint Research Labo

ULVAC, Inc. announced its initiatives in industry-academia co-creation and doctoral talent development at the 6th Regular Press Conference held by the Osaka University Institute of Scientific and Industrial シャッフルカジノ トークンnd the Graduate School of Engineering on November 20, 2024.

Since 2018, ULVAC has operated the "ULVAC-Osaka University Joint Research Laboratory for Future Technology" [1] within Osaka University. Together with doctoral students, the Laboratory conducts research on thin-film deposition technology for nitride semiconductors, which are expected to play a key role in next-generation semiconductors, as well as on technology for preserving living biological cells in powder form using Micro-Powder Dry technology [2].

At the press conference, Junya Kiyota, Deputy Director of the Laboratory and Managing Executive Officer of ULVAC, spoke about future technologies in the field of biomedical engineering and explained the rationale behind ULVAC's commitment to industry-academia co-creation and doctoral talent development from a corporate perspective. Additionally, Tomoka Konoo, a doctoral student from Osaka University's Graduate School of Engineering, presented シャッフルカジノ トークンchievements in freeze-drying technology for cells, aimed at enabling room-temperature, long-term storage of red blood cells.

ULVAC remains committed to working with doctoral students to drive innovation centered on vacuum technology.

[1] ULVAC-Osaka University Joint Research Laboratory for Future Technology: /mirai/

[2] Micro-Powder Dry technology: A technology where freezing and drying occur simultaneously in a vacuum. When a solution, such as blood or pharmaceuticals, is sprayed from a nozzle into a vacuum container, the moisture evaporates instantly. The evaporation removes heat from the solution droplets, causing them to cool and freeze instantaneously (self-freezing). The frozen particles then undergo sublimation in the vacuum, resulting in dry powder. This technology enables rapid drying of heat-sensitive foods and pharmaceuticals.

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