Scientists Develop Bizarre Helmet for Brain Scan

A brain-scanning MRI machine at Carnegie Mellon University in Pittsburgh, November 26, 2014.Credit: Keith Srakocic / AP
A brain-scanning MRI machine at Carnegie Mellon University in Pittsburgh, November 26, 2014.Credit: Keith Srakocic / AP
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Scientists Develop Bizarre Helmet for Brain Scan

A brain-scanning MRI machine at Carnegie Mellon University in Pittsburgh, November 26, 2014.Credit: Keith Srakocic / AP
A brain-scanning MRI machine at Carnegie Mellon University in Pittsburgh, November 26, 2014.Credit: Keith Srakocic / AP

A research team at the University of Boston’s Photonics Center developed an imaging tool that could replace the traditional form of MRI scan and ensure more accurate results and less anxiety.

Usually, patients undergoing such a medical procedure could experience stress and discomfort, however, the new helmet-like tool, which marks a revolution in the field of medical imaging, is characterized with a funny look that alleviates stress. During the study published Feb. 12 in the scientific journal Advanced Material, the researchers reported the metamaterial used in the design, packing in a ton of physics, engineering, and mathematical know-how. The design was overseen by Xin Zhang, professor of mechanical engineering at BU's Photonics Center.

“The metamaterials used in the helmet is a type of engineered structure created from small unit cells that might be unspectacular alone, but when grouped together in a precise way, get new superpowers not found in nature. Metamaterials, for instance, can bend, absorb, or manipulate waves -- such as electromagnetic waves, sound waves, or radio waves. Each unit cell is typically arranged in a repeating pattern in rows and columns; they can be designed in different sizes and shapes, and placed at different orientations, depending on which waves they're designed to influence,” explained Zhang.

The materials used in the helmet include a component that blocks sound without stopping airflow (imagine quieter jet engines and air conditioners) and a magnetic metamaterial that can improve the quality of magnetic resonance imaging (MRI) machines used for medical diagnosis. These materials were deployed in a helmet-like device, which fits over a person's head and can be worn during a brain scan, boosts MRI performance, creating crisper images that can be captured at twice the normal speed. According to Zhang, the helmet makes MRIs less costly and more time efficient for doctors, radiologists, and patients -- all while improving image quality, which will help make the technology more widely available, particularly in the developing countries.



3 Astronauts Return to Earth after 6 Months on China's Space Station

FILE PHOTO: A Long March-2F rocket carrying the Shenzhou-19 spacecraft sits at the launch pad before taking off from the Jiuquan Satellite Launch Center for a crewed mission to China's Tiangong space station, near Jiuquan, Gansu province, China October 30, 2024. REUTERS/Florence Lo/File Photo/File Photo
FILE PHOTO: A Long March-2F rocket carrying the Shenzhou-19 spacecraft sits at the launch pad before taking off from the Jiuquan Satellite Launch Center for a crewed mission to China's Tiangong space station, near Jiuquan, Gansu province, China October 30, 2024. REUTERS/Florence Lo/File Photo/File Photo
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3 Astronauts Return to Earth after 6 Months on China's Space Station

FILE PHOTO: A Long March-2F rocket carrying the Shenzhou-19 spacecraft sits at the launch pad before taking off from the Jiuquan Satellite Launch Center for a crewed mission to China's Tiangong space station, near Jiuquan, Gansu province, China October 30, 2024. REUTERS/Florence Lo/File Photo/File Photo
FILE PHOTO: A Long March-2F rocket carrying the Shenzhou-19 spacecraft sits at the launch pad before taking off from the Jiuquan Satellite Launch Center for a crewed mission to China's Tiangong space station, near Jiuquan, Gansu province, China October 30, 2024. REUTERS/Florence Lo/File Photo/File Photo

Three Chinese astronauts landed back on Earth on Wednesday after six months on China's space station.
The crew’s landing module came down slowly after separating from the return vehicle, descending on a red-and-white parachute, in Dongfeng, in China’s northern Inner Mongolia region on the edge of the Gobi Desert. Their return had been delayed by a day due to strong winds and low visibility, The Associated Press reported. The area is prone to sandstorms this time of year.
The astronauts, Cai Xuzhe, Song Lingdong and Wang Haoze, were launched to the Tiangong space station in October, and they turned over control of the station Tuesday to the new crew that recently arrived to replace them.
The Shenzhou 20 that brought the new crew also carried equipment for space life sciences, microgravity physics and new technology for the space station.
The Tiangong, or “Heavenly Palace,” space station has made China a major player in a new era of space exploration and the use of permanent stations to conduct experiments in space, especially since it was entirely Chinese-built after the country was excluded from the International Space Station over US national security concerns.
China’s space program is controlled by the People’s Liberation Army, the military branch of the ruling Communist Party.
The three Chinese astronauts have carried out experiments and improvements to the space station during their time in space. Two of the astronauts, Cai and Song, conducted a nine-hour spacewalk, the world’s longest, during their mission, China's space agency said.
The country’s space program has grown rapidly in recent years. The space agency has landed an explorer on Mars and a rover on the far side of the moon. It aims to put a person on the moon before 2030.