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Keyword:X-ray
OXOS Medical and Others Deploy Portable X-Ray Systems to Disaster Zones in Venezuela
On August 12, U.S.-based OXOS Medical announced that it will partner with the non-profit organization Love & Life Foundation and the rapid response and disaster intervention team MEDIC Corps to deploy the MC2 portable X-ray system to Venezuela to support post-disaster humanitarian medical relief efforts. According to reports, the strong earthquake that struck Venezuela on June 24 has caused more than 16,000 injuries. For medical teams treating patients on the front lines in rubble and disaster zones, timely assessment of injuries such as fractures and chest or abdominal trauma is critical, but in areas with damaged infrastructure and limited resources, routine medical imaging examinations are often difficult to obtain in a timely manner. The materials also cite World Health Organization data stating...
2026-08-13
LG Electronics Launches FDA-Approved 40-Inch Diagnostic Monitor for B2B Medical Imaging Market
LG Electronics announced on August 12 that it has launched a new 40-inch diagnostic monitor, the 40HT513D, targeting the business-to-business (B2B) medical display market. The product has received approval from the U.S. Food and Drug Administration (FDA) and is primarily intended for medical image interpretation. According to the company, the 40HT513D features a curved IPS black panel with a 21:9 aspect ratio and a resolution of 5120×2160, delivering approximately 11 million pixels. LG Electronics stated that this design consolidates image reading tasks that previously required three 3-megapixel monitors into a single screen. Physicians can simultaneously view and compare current and historical images from X-ray, CT scans, and MRI scans on the same display...
2026-08-12
PETRA III Synchrotron Radiation Study Reveals New Clues to Aging Mechanisms of the Uterine Broad Ligament
Austrian and German research teams recently used the PETRA III facility at the German Electron Synchrotron (DESY) to conduct X-ray analysis of the broad ligament, an important ligament supporting the uterus, providing new biomechanical clues for understanding the mechanisms of pelvic organ prolapse. The findings were published in *Acta Biomaterialia*. Pelvic organ prolapse is a common but poorly understood issue in women's health, affecting approximately 40% of women, and predominantly occurring in the latter half of life. Medical researchers have previously speculated that age-related loosening of the ligaments surrounding the uterus may be a significant contributing factor to prolapse. The broad ligament connects the uterus to the pelvic wall, and its strength and elasticity primarily derive from collagen...
2026-08-09
DXA Screening Among U.S. Medicare Population Declines 35% Over Nearly Two Decades
A new study shows that between 2005 and 2023, the rate of dual-energy X-ray absorptiometry (DXA) examinations among U.S. Medicare beneficiaries declined significantly, by 35%. DXA is commonly used for bone density testing and osteoporosis-related screening, and the findings suggest that disparities in screening access across different populations are widening. Researchers analyzed claims data from more than 5 million Medicare beneficiaries. The results showed that DXA utilization fell from 7,255 exams per 100,000 beneficiaries in 2005 to 4,690 per 100,000 beneficiaries in 2023. The study was published in Osteoporosis International. The decline was not uniform across populations...
2026-08-08
KEK in Japan Completes World's First "Quantum Multi-Beam Utilization" Synchrotron Radiation Beamlines
On August 6, the High Energy Accelerator Research Organization (KEK) announced that the BL-11A and BL-11B beamlines at its Photon Factory (PF) synchrotron radiation experimental facility have been completed as the world's first quantum multi-beam utilization beamlines, enabling the simultaneous use of hard X-ray and soft X-ray beams. According to reports, BL-11A and BL-11B were constructed in collaboration with the Synchrotron Radiation Academic Infrastructure Network. This network consists of synchrotron radiation facilities operated by university joint-use organizations and joint-use/joint-research centers, positioned as scientific research and educational infrastructure. The main feature of the new beamlines is the ability to simultaneously use hard X-ray and soft X-ray under the same experimental conditions, completing observations that previously required separate measurements...
2026-08-07
MIT Develops Ultrafast X-ray Thermometry Method to Observe Heat Transfer in Multilayer Chip Structures
Researchers at the Massachusetts Institute of Technology (MIT) have developed a new method for observing how heat transfers through multilayer materials, which can be used to precisely measure heat flow variations inside electronic devices such as computer chips. The findings have been published in Nature Communications. As computer chips continue to shrink in size and power density keeps rising, device overheating has become a major factor limiting performance improvements. Traditional heat flow measurement methods face limitations when dealing with the multilayer structures of real electronic devices—for example, the commonly used time-domain thermoreflectance method struggles to distinguish heat transport in different material layers, while infrared imaging and other approaches also fail to capture rapid changes at microscopic scales. To address this issue...
2026-08-06
Dark Energy Survey Releases Six-Year Results: Data from 669 Million Galaxies Helps Constrain Cosmic Accelerated Expansion
On August 4, the Dark Energy Survey (DES) project released its six-year findings on dark energy detection. The project compiled 18 related papers, based on nearly 300,000 astronomical images captured between 2013 and 2019, recording information on 669 million galaxies, thousands of galaxy clusters, and more than 3,000 supernovae to study the accelerated expansion of the universe and the evolution of cosmic structure. To carry out DES, Fermi National Accelerator Laboratory built an extremely sensitive 570-megapixel digital camera, DECam, which was installed on the Blanco 4-meter telescope at the National Science Foundation's Cerro Tololo Inter-American Observatory in the Chilean Andes. (Image courtesy of Reidar Hahn/Fermi National Acceler...
2026-08-06
U.S. Laboratories Plan "Materials Discovery Cloud" to Use AI to Predict Impact of Defects in Microelectronic Devices
Researchers at the U.S. Department of Energy's Argonne National Laboratory, Lawrence Berkeley National Laboratory, Oak Ridge National Laboratory, and Northwestern University are planning to develop a Materials Discovery Cloud platform that leverages a physics-based artificial intelligence framework to predict how tiny defects affect the performance and lifespan of microelectronic devices. Visualization of the Materials Discovery Cloud, a physics-based AI framework that integrates experimental data, simulations, and high-performance computing to predict how tiny defects affect the performance and lifespan of microelectronic devices. (Image provided by ChatGPT.) Microelectronic devices are widely used in smartphones, laptops, secure communications, and artificial intelligence hardware. As device dimensions continue to shrink and operating speeds increase, tiny defects within materials and at interfaces have a more pronounced impact on device stability. These defects can cause overheating, leakage current, switching instability, and other issues, or in certain conditions, improve electrical or thermal performance. Identifying critical defects and understanding their evolution under real-world operating conditions has become a key challenge in the design of next-generation microelectronic materials.
2026-08-06
CGN Dasheng Launches Nondestructive Testing Solutions for Power Batteries to Address New Safety Requirements for Electric Vehicle Batteries
The national mandatory safety standard "Safety Requirements for Traction Batteries for Electric Vehicles" officially takes effect on July 1, 2026, further raising the requirements for power battery safety inspection. In response to the needs for internal defect identification, fault tracing, and in-line production testing, CGN Dasheng Accelerator Technology Co., Ltd. has launched multiple nondestructive testing solutions, utilizing X-ray imaging, industrial CT, and electron beam scanning microfocus X-ray source technologies to provide inspection means for power battery quality control. The internal structure of power batteries is complex, with cells typically composed of multiple layers of materials wound or stacked. During production, subtle defects such as electrode plate wrinkles, metal debris contamination, positive-negative electrode misalignment, and welding porosity can...
2026-08-04
Montpellier, France, tests control of tiger mosquitoes by releasing 200,000 X-ray-sterilized males weekly
Montpellier, France, is testing a mosquito control strategy that does not rely on chemical insecticides by releasing X-ray-sterilized sterile male tiger mosquitoes, in response to the spread of tiger mosquitoes and the associated disease transmission risks. The trial has been underway since 2025 in the Malbosc residential area of Montpellier. This area is suitable for tiger mosquito breeding, and the trial team releases sterile male tiger mosquitoes at approximately 30 release points twice a week, about 100,000 per release, equivalent to roughly 200,000 per week across an area of about 50 hectares. The method is based on the sterile insect technique. Since only female mosquitoes bite and suck blood and may transmit viruses, and females typically mate only once in their lifetime, researchers release male mosquitoes that have lost their reproductive capacity after X-ray treatment into the wild to mate with wild females. The eggs subsequently laid by females fail to fertilize normally, thereby reducing the next generation of mosquito populations.
2026-08-03
South Korea's Deepnoid Signs M4CXR Supply Contract with Pusan National University Hospital
On August 3, Deepnoid announced the signing of a supply contract for M4CXR with Pusan National University Hospital. M4CXR is a generative AI-based preliminary report generation solution for chest X-rays that generates preliminary reports during chest X-ray examinations to assist medical staff in image interpretation. This is the first supply agreement signed after M4CXR received approval from the Ministry of Food and Drug Safety of South Korea for market release as a digital medical device. According to the introduction, the system is expected to improve the efficiency of chest X-ray reading and provide clinical support for the early detection of lung diseases and suspected cancerous lesions. This collaboration is also part of the AI clinical system support project for regional responsible medical institutions under the Ministry of Health and Welfare of South Korea...
2026-08-03
Germany's eROSITA Second Data Release Unveils Nearly Two Million X-ray Sources
On July 31, the German eROSITA consortium, led by the Max Planck Institute for Extraterrestrial Physics with participation from the University of Bonn, released its second major public dataset, eROSITA Data Release 2 (DR2). Built from the first three all-sky survey observations conducted by the eROSITA telescope aboard the Spectrum-Roentgen-Gamma (SRG) mission, this dataset is considered one of the most sensitive and comprehensive X-ray catalogs currently available to the public. The DR2 main catalog covers the 0.2–2.3 kiloelectron-volt (keV) band in the western hemisphere, containing nearly two million X-ray sources. Among these, over 1.9 million are point-like sources, primarily consisting of stars and actively accreting supermassive black holes; approximately 64,000 are extended sources,...
2026-08-01
U.S. Explores New Methods for Lunar Ice Detection Using Synchrotron X-ray Microtomography and Seismic Models
On July 31, researchers at Lawrence Berkeley National Laboratory, in collaboration with scientists from the University of Maryland and the University of Hawaii, proposed a new method for locating subsurface ice deposits on the Moon using seismic waves. The findings, published in the journal Science Advances, are expected to provide a reference for interpreting detection data and locating water resources in future lunar landing missions. The research focuses on how subsurface lunar materials respond to seismic waves. The team developed computational models to predict the behavior of lunar subsurface media of varying compositions under seismic wave excitation. Experimental results showed differences in seismic response between ice-bearing and dry rocks, indicating that seismological methods have the potential to identify ice layers buried beneath lunar regolith and rock.
2026-08-01
Riliantek and Jiangnan University Jointly Establish the "X-ray Food Inspection Joint Research Center"
Recently, the opening ceremony of the "X-ray Food Inspection Joint Research Center" jointly built with Jiangnan University was successfully held.In recent years, food safety issues have received widespread attention from all walks of life. UFJ T
2026-07-27
Beijing Key Laboratory Unveiled: Focusing on Domestic Production of Liquid-Helium-Free Superconducting MRI and X-ray CT Equipment
Recently, the "Beijing Key Laboratory for Innovation and Translation of Advanced Superconducting MRI and CT Medical Equipment," spearheaded by Wandong Medical, was officially inaugurated. Previously approved by the Beijing Municipal Science &
2026-07-27