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Nagoya University


A unique sound alleviates motion sickness

Researchers at Nagoya University have discovered a unique sound stimulation technology that alleviates motion sickness, reducing symptoms by up to a minute of stimulation. The device stimulates the inner ear with a specific wavelength of sound, activating the vestibular system and improving balance.

SourceNagoya University·JournalEnvironmental Health and Preventive Medicine·DateApr 4, 2025

Were our blue oceans once green?

Research suggests the Earth's oceans were green 2.4 billion years ago due to iron precipitation, leading to a new understanding of ancient photosynthetic organisms and their potential for life beyond Earth. The discovery could aid in the search for extraterrestrial life by identifying green oceans as a possible indicator.

SourceNagoya University·JournalNature Ecology & Evolution·DateMar 25, 2025

How crickets co-exist with hostile ant hosts

Researchers at Nagoya University discovered how parasitic crickets, such as Myrmecophilus tetramorii, navigate life among potentially lethal hosts through precise evasion tactics. By employing two behavioral strategies, 'distancing' and 'dodging', crickets reduce the risk of being attacked by ants.

SourceNagoya University·JournalCommunications Biology·DateJan 15, 2025

How do monkeys recognize snakes so fast?

Researchers found that monkeys swiftly identify snakes because of snake scales as a visual cue, revealing an evolutionary adaptation for threat detection. This insight into primate vision and brain evolution can improve our understanding of animal cognition.

SourceNagoya University·JournalScientific Reports·DateDec 26, 2024

New concept for sustainable fuel cell polymer electrolytes overcomes barriers in high-temperature, low-humidity use, advancing net-zero carbon goals

Researchers at Nagoya University have developed a novel fuel cell electrolyte concept using phosphonic acid polymers with hydrocarbon spacers. The new membrane exhibits improved water insolubility, chemical stability and conductivity under high-temperature and low-humidity conditions.

SourceNagoya University·JournalACS Applied Polymer Materials·DateDec 10, 2024

Brighter and more efficient LEDs that don’t droop

A team of researchers at Nagoya University has developed a way to make LEDs brighter while maintaining their efficiency. By tilting the InGaN layers and cutting the wafer into different orientations, they have found that LEDs with lower polarization but in the same direction as standard LEDs show greater efficiency at higher power.

SourceNagoya University·JournalLaser & Photonics Review·DateNov 25, 2024

Solving the side effect problem of siRNA drugs for genetic disease treatment using formamide

Researchers at Nagoya University have developed a method to chemically alter siRNAs, reducing off-target effects and improving the safety of siRNA drugs for genetic therapy. By modifying the seed region of siRNAs with formamide, they achieved suppression of off-target effects with higher efficiency than existing chemical modifications.

SourceNagoya University·JournalNucleic Acids Research·DateSep 6, 2024

Revolutionary loop heat pipe transports 10 kW of waste heat — No electricity required

Researchers at Nagoya University developed a loop heat pipe that can transport up to 10 kW of waste heat without electricity, surpassing previous records. This technology has significant implications for energy efficiency and sustainability, particularly in the electric vehicle industry where it can reduce the need for electrical power.

SourceNagoya University·JournalInternational Journal of Heat and Mass Transfer·DateAug 1, 2024

Treating rare skin diseases by transplanting healthy skin

Researchers from Nagoya University have successfully treated rare genetic skin disorders epidermolytic ichthyosis (EI) and ichthyosis with confetti (IWC) by transplanting genetically healthy skin to inflamed areas. Transplantation of healthy skin has been used as a treatment option for severe burn injuries.

SourceNagoya University·JournalBritish Journal of Dermatology·DateJun 10, 2024