Background: The patterns and mechanisms of injuries of all Dutch battle casualties (BCs) were analyzed to improve the care for injured service members. We performed an in-depth analysis of all Dutch BCs during the participation of The Netherlands as lead nation in the International Security Assistance Force mission in southern Afghanistan.
Methods: Participants were selected from the trauma registry at the Dutch Role 2 Medical Treatment Facility if they met the criteria for Dutch BC between August 2006 and August 2010.
Results: The trauma registry query resulted in 199 Dutch BCs. The battle injuries were predominantly caused by explosions (83.9 %). The case-fatality rate was 9.5 %: 16.5 % were killed in action, and 1.1 % died of wounds. The wounding pattern was as follows: head and neck (32.2 %), thorax (7.8 %), abdomen (12.7 %), upper extremity (17.6 %), lower extremity (29.7 %). The mean Abbreviated Injury Scale and Injury Severity Score were 3 (range 0-5) and 11 (range 1-43), respectively in the wounded-in-action group.
Conclusions: Explosive devices accounted for almost 85 % of the casualties-much higher than in previous wars. Knowledge of the management of these injuries is also valuable in treating casualties from natural disasters or (terrorist) mass casualty situations. An integral multinational joint approach is highly recommended to develop more effective protective equipment and body armor. Prospective registration in a standardized system of data collection that encompasses all echelons of the medical support organization should be implemented.
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Sensors (Basel)
January 2025
Laboratory of Sensors/Actuators and Energy Harvesting, National Institute for Research and Development in Electrical Engineering ICPE-CA, 030138 Bucharest, Romania.
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College of Optical Science and Engineering, Zhejiang University, Hangzhou, 310058, China.
Photonic manipulation of large-capacity data with the advantages of high speed and low power consumption is a promising solution for explosive growth demands in the era of post-Moore. A well-developed lithium-niobate-on-insulator (LNOI) platform has been widely explored for high-performance electro-optic (EO) modulators to bridge electrical and optical signals. However, the photonic waveguides on the x-cut LNOI platform suffer serious polarization-mode conversion/coupling issues because of strong birefringence, making it hard to realize large-scale integration.
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December 2024
National Institute of Physical Education of Catalonia (INEFC), 08038 Barcelona, Spain.
Several microtechnology devices quantify the external load of team sports using Global Positioning Systems sampling at 5, 10, or 15 Hz. However, for short, explosive actions, such as collisions, these sample rates may be limiting. It is known that very high-frequency sampling is capable of capturing changes in actions over a short period of time.
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Consultant, Pittsford, NY, USA.
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January 2025
School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan, 232001, Anhui, China.
To investigate the changes in the strength and deformation of the blast load-damaged sandstone roof plate under cyclic loading and unloading conditions at different confining pressures, a triaxial loading device was used to carry out graded cyclic unloading tests on specimens with different degrees of damage, and the test results were summarized. The effects of blast-load-induced damage, confining pressure and loading stage on the strength, cohesion, internal friction angle, residual strain and volumetric strain were analyzed. (1) Compared with that of the undamaged specimen at a confining pressure of 0 MPa, the peak stress reductions in the vibration-damaged and blast-damaged specimens were 4.
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