A study found that robotic therapy with high assistance levels improves upper limb function in severe-to-moderate stroke survivors, while moderate-to-mild patients perform better with less assistance. The researchers suggest tailoring robotic assistance to individual patient needs and encourage further research using objective tools.
Researchers develop a novel nanoplatform that can deliver drugs directly to T cells, which play a crucial role in immune reactions. The platform uses pH-sensitive dendrimers with phenylalanine and has shown promising results for cancer immunotherapy.
Researchers have demonstrated the Kondo effect in a transition metal oxide, CCRO, with a high Kondo temperature of at least 500K. The study resolves previous conflicting discussions and brings the Kondo field into the research area of transition metal oxides.
Researchers at Osaka Prefecture University discovered that planteose is a storage carbohydrate distributed in the seeds of root parasitic weeds. Its physiological role involves rapid hydrolysis after strigolactone perception, providing essential nutrients for germination.
Scientists at Osaka Prefecture University have identified specific parts of the dog allergen Can f 1 that can trigger an immune response in people. The researchers used X-ray crystallography to determine the structure of the protein and found several potential epitopes, or regions, that could be targeted by a vaccine.
Scientists at Osaka Prefecture University developed a novel method for creating uniform, electrically conductive nanosheets using oil and water interfaces. The approach resulted in highly organized three-dimensional nanostructures with high electrical conductivity, offering potential applications in energy devices and sensors.
Researchers at Osaka Prefecture University create a high-capacity Li2S-based positive electrode using an oxidation-tolerant solid electrolyte, bringing all-solid-state batteries closer to reality. The study found that the electrochemical window of solid electrolytes must exceed 0.2V for high energy capacity.
Scientists develop a method to precisely control gas-liquid interfaces at the nanoscale, enabling precise enrichment of target molecules. The technology has potential applications in various fields, including chemical and biological processes.
Researchers developed a quick test to identify beneficial bacteria species known to benefit coral, allowing for non-invasive assessment of coral health. The method enables rapid detection of specific bacterial species in seawater and coral samples, suggesting that the bacteria may be concentrated in coral.
A Japanese research team has improved an optical tissue clearing method to diagnose cancer, enabling 3D visualization of tumor tissues in just a week. The new approach uses zwitterionic hydrogels to rapidly remove fats from tissues, reducing processing time and improving diagnosis accuracy.
A team from Osaka Prefecture University has developed a method to design and control the path of electron flow in a polycrystalline material, enabling high conductivity in a controllable direction. This breakthrough paves the way for the creation of next-generation thin-film smart devices.
The team uses a technique called Fourier transform infrared spectroscopy (FT-IR) with an originally designed 3D-printed attenuated total reflectance (ATR) unit to identify the orientation of molecules and chemical bonds in crystalline organic-inorganic hybrid thin films
Researchers from Osaka Prefecture University have successfully isolated canine induced pluripotent stem cells, paving the way for regenerative therapies in dogs. The development of these cells could also have implications for human medicine, as they share similar environmental and genetic factors with humans.