Skip to main content
  1. Home
  2. Emerging Tech
  3. Health & Fitness
  4. News

Super absorbent wound dressing will swell up to save soldiers’ lives in combat

Add as a preferred source on Google

According to the U.S. Army, around 80 to 90 percent of potentially survivable deaths among American soldiers on the battlefield occur as the result of uncontrolled bleeding. This refers to soldiers who are injured in combat, but bleed out before they can be taken to a hospital. With that shocking stat in mind, it’s no surprise to hear that the Army is working on a new kind of wound dressing which could help patch up bleeding wounds — and hopefully save hundreds, or even thousands, of lives in the process.

The new polystyrene and rubber wound dressing boasts an amazing amount of absorbency, letting it absorb up to 800 percent of the material’s weight in liquid. By comparison, that’s up to 5.7 times as absorbent as current state-of-the-art gauze-based hemostatic dressing, the kind of dressing currently used for bandaging up wounds.

Recommended Videos

The plastic material makes the new wound dressing strong and flexible, while acrylic acid is responsible for making it super absorbent, allowing it to pull the water out of blood to prompt it to clot more quickly. As it swells, the bandage forms a tough hydrogel, resulting in a wound patching material that is more than three times as tough as gauze.

“Thickness-dependent swelling is as much as an order of magnitude faster than many tough hydrogels … yet toughness is comparable as a function of water content,” reads the abstract to a research paper recently published about the work. “The polymer is combined with gauze to form a rapidly swelling, fiber-reinforced hydrogel composite with promising mechanical properties.”

This isn’t the first advanced wound dressing we’ve written about at Digital Trends. Earlier in 2018, we wrote about two novel nanofiber wound dressings developed at Harvard University, designed to rapidly accelerate the healing process, while also improving tissue regeneration. We also covered some futuristic-sounding cold plasma technology, described by its creators as being similar to the dermal regenerator from Star Trek. What makes the U.S. Army’s wound dressing so good, however, is that it is designed to be used as an emergency measure in life and death situations, in which a person may only have a couple of minutes before they hemorrhage too much blood to stay alive.

At present, this remains a research project. Going forward, the team hopes to scale up the project, with animal tests set to be the next step in the testing process. Let’s hope it’s not long before this is saving lives for real!

Luke Dormehl
I'm a UK-based tech writer covering Cool Tech at Digital Trends. I've also written for Fast Company, Wired, the Guardian…
Google Flow Music Spaces is becoming an all-in-one AI music studio
The latest update brings song editing, stem splitting, image generation, lyrics, and video creation into a single workspace.
Google Flow Music Featured

The company has announced a major update for Flow Music Spaces, bringing a suite of new AI-powered creative tools directly into collaborative workspaces. Instead of jumping between different apps or sessions, users can now generate and edit songs, split audio stems, create images, write lyrics, and even generate videos without leaving a Space.

What's new in Flow Music Spaces?

Read more
A Florida pastor asked ChatGPT if he was okay. It nearly got him killed.
When "just relax and recover" turns out to be the worst medical advice you could get.
ChatGPT on iPhone

Scott Winters, a pastor from Florida, is suing OpenAI after ChatGPT allegedly gave him what his lawsuit calls "extremely dangerous" medical advice, advice that nearly cost him his life.

What happened to the pastor?

Read more
Scientists made robots curious like toddlers, and it helped them learn language twice as fast
Give a robot curiosity, and it starts learning language (and misbehaving) just like a toddler.
robots and kids photo

Scientists have been trying to figure out how kids pick up language so fast for decades, and a new study out of the Okinawa Institute of Science and Technology (OIST) might have cracked part of the puzzle: curiosity.

Researchers built a virtual robot with a brain-inspired neural network and set it loose in a simulated 3D world full of shapes, colors, and simple commands like "push left magenta dumbbell." 

Read more