Skip to content
Human History

This Medieval Skeleton Had 160 Broken Bones, and Scientists Just Figured Out What Hit Him

Archaeologists have identified the shattered remains of a 14th-century man whose 160 bone fractures appear to be the first documented crushing from a trebuchet launch.
By

Reading time 3 minutes

Comments (1)

It reportedly took five master carpenters and 50 assistant laborers three months to build the “War Wolf” back in 1304 CE. Possibly the largest trebuchet ever built, it was a true product of the rage inside King Edward I of England as he sought to subdue what was then the last stronghold of an independent Scotland, Stirling Castle, during the First War of Scottish Independence. Historical accounts allege that the War Wolf could cast a stone through castle walls like “an arrow flying through cloth.”

But trebuchets were already devastating compared to the catapults that inspired them, capable of launching boulders over 220 pounds (100 kilograms) across multiple football fields in length. King Edward I is said to have deployed at least 17 of these killing machines against Stirling Castle during his siege. And now, over 700 years later, archaeologists have brought forward what they’re calling the first ever confirmed evidence of a human death by trebuchet: the impressively shattered skeletal remains of a young man excavated from beneath Stirling Castle’s chapel.

Labelled Skeleton 150 by researchers, the late Scotsman’s remains revealed over 160 separate bone-crunching injuries that were coincident with his time of death (or “peri-mortem”), including a skull caved in along 61 different fractures.

“While the use of siege engines is well documented, we believe this is the first evidence of trebuchet trauma in the archaeological record,” University of Bradford archaeologist Jo Buckberry wrote ahead of her presentation to the Paleopathology Association in Berlin this August. “Detailed analysis indicates this peri-mortem trauma was all blunt-force,” according to Buckberry, who serves as head of Bradford’s Biological Anthropology Research Centre (BARC). “It highlights the brutality of medieval warfare.”

Bone-smashing

Skeleton 150 was once a 5-foot, 4-inch (165-centimeter) tall male between the ages of 22 and 34 years old, according to Buckberry. She relied on tools like the 3D X-ray imaging of micro-computed tomography (CT), traditional X-rays, and microscopic imaging to better assess the cause of each of the skeleton’s bone fractures.

One of the clues that most of these bone fractures occurred at the time of death, as Buckberry explained it to the docuseries History Hit last year, is how cleanly the breaks reassemble like a jigsaw puzzle. Post-mortem bone injuries—say, for example, those due to rodent gnawing or weather erosion—won’t line up as neatly as these peri-mortem breaks.

Stirling Castle Skeleton 150 Skull fractures
3D imaging of Skeleton 150’s apparently rock-crushed skull, broken by a trebuchet attack in 61 places during the siege of Stirling Castle in 1304 CE. Credit: Jo Buckberry / University of Bradford

“Patterning of fractures indicates that the focus of impact was around the right shoulder and the back of the cranium, with higher fragmentation in this area,” Buckberry explained. This pattern included a jagged, zig-zagging break along the shoulder and roughly 60 cracks to the skeleton’s ribs.

“Comparison with known forensic cases indicates this trauma was the result of a single, high-velocity impact,” she noted, “probably to a living individual with forearms flexed in front of the body and bearing weight through the lower limbs and feet.”

Siege-maxxing

In some ways, the new research on Skeleton 150 is a victim of its own novelty. Buckberry cautioned that the dearth of similar forensic cases documenting the physical toll on those pancaked by trebuchet projectiles leaves some room for doubt in these findings. But she voiced hope that ongoing research might focus on similar cases of blunt force trauma “alongside weapon trauma in medieval contexts.”

That said, at least one forensic osteologist who spoke to the journal Science, Lukas Waltenberger at Vilnius University, described the current state of this case as “convincing.”

“It seems like a high-velocity, high-force, high-speed impact in a short amount of time,” according to Waltenberger, who has investigated similar kinds of bone fractures but did not play a role in Buckberry’s project. “In skeletons from past times you rarely see this.”

Share this story

Sign up for our newsletters

Subscribe and interact with our community, get up to date with our customised Newsletters and much more.