Uploaded November 2025 | Updated September 2026, 2 weeks ago
This video contains graphic depictions of simulated injuries. Viewer discretion is advised.
In this immersive overview, guided by the DARPA Triage Challenge program manager, retired Army Col. Jeremy C. Pamplin, M.D., you'll experience how teams of innovators, engineers, and DARPA are redefining the future of combat casualty care. Be sure to look all around!
Check out competition runs, behind-the-scenes of what it takes to put on a DARPA Challenge, and glimpses into the future of lifesaving care.
The DARPA Triage Challenge (DTC) seeks to transform how medical responders triage in mass casualty incidents by advancing scalable, timely, and accurate tools.
Through a series of challenge events, DTC drives innovations in identifying vital signs of injury, locating and assessing casualties, and transmitting critical data. These breakthroughs aim to help responders prioritize care and save lives when medical resources are stretched in both civilian and military crises.
https://www.darpa.mil/news/2025/dart-msai-triumph-darpa-triage-challenge?utm_source=youtube&utm_medium=social&utm_campaign=dtc&utm_term=360
https://www.darpa.mil/research/challenges/darpa-triage-challenge?utm_source=youtube&utm_medium=social&utm_campaign=dtc&utm_term=360
This video contains graphic depictions of simulated injuries. Viewer discretion is advised.
In this immersive overview, guided by the DARPA Triage Challenge program manager, retired Army Col. Jeremy C. Pamplin, M.D., you'll experience how teams of innovators, engineers, and DARPA are redefining the future of combat casualty care. Be sure to look all around!
Check out competition runs, behind-the-scenes of what it takes to put on a DARPA Challenge, and glimpses into the future of lifesaving care.
The DARPA Triage Challenge (DTC) seeks to transform how medical responders triage in mass casualty incidents by advancing scalable, timely, and accurate tools.
Through a series of challenge events, DTC drives innovations in identifying vital signs of injury, locating and assessing casualties, and transmitting critical data. These breakthroughs aim to help responders prioritize care and save lives when medical resources are stretched in both civilian and military crises.
https://www.darpa.mil/news/2025/dart-msai-triumph-darpa-triage-challenge?utm_source=youtube&utm_medium=social&utm_campaign=dtc&utm_term=360
https://www.darpa.mil/research/challenges/darpa-triage-challenge?utm_source=youtube&utm_medium=social&utm_campaign=dtc&utm_term=360
![CRYSTAL: Crystal Substrate Bonding Technologies and Algorithms - Advanced Research Concept
https://www.darpa.mil/research/programs/crystal-substrate-bonding
Bonded single crystal thin film multi-functional materials (electro-optic, acousto-electric, acousto-optic, magneto-optic or multi-ferroic materials) are vital for diverse sensing and communications technologies (integrated quantum, photonic, terahertz [THz], radio frequency [RF], and actuator platforms).
Wafer bonding onto compatible substrates is the critical step for integrating single crystal thin films into multi-functional devices and systems. There is currently no method to analytically investigate wafer bonding processes.
The ability to predictively model wafer bonding of thin film crystals would rapidly accelerate the research and development of multi-functional materials, and their fabrication and scalable integration in diverse applications.
This ARC Opportunity is soliciting ideas to explore the following question: To accelerate development and integration of multi-functional materials, how do we create generalizable models to explore thin film crystal bonding onto suitable substrates under diverse real-world process conditions and parameters? CRYSTAL: Crystal Substrate Bonding Technologies and Algorithms - Advanced Research Concept](https://i.ytimg.com/vi/e_rHSXYV_u0/mqdefault.jpg)









