Investigators Cast Juvenile Bigfoot Footprints Found in Oklahoma Lake Bed
Posted Monday, August 03, 2026
By Squatchable.com staff
A trackway discovery in central Oklahoma is making waves in the Sasquatch research community, and honestly, this one has all the hallmarks of something special. Researchers with the Native Oklahoma Bigfoot Research Organization recently uncovered what appears to be the footprints of two juvenile Sasquatch wandering along a dry lake bed, and the details are fascinating.
The discovery came about thanks to ongoing drought conditions in the region. As lake levels drop and shorelines recede, muddy areas that would normally be underwater become exposed, revealing tracks that might otherwise go unnoticed. The team headed out to a lake in central Oklahoma on a hunch, knowing the area from previous investigations, and what they found was a trackway featuring two distinct individuals.
One set of prints measures around 7 inches, while the larger tracks come in at approximately 10 to 10.5 inches long and roughly 5 inches wide. Based on the stride patterns and the spacing between prints, the researchers believe these were made by two juveniles moving through the area together. The ground was cracked and dry by the time they returned to cast the prints, which made the casting process trickier than usual, but the results still cleaned up nicely.
What really stands out about these tracks is the morphology. The prints show a pointed heel, a deep arch with a ridge, a big toe, and smaller toes with visible gaps between them. For anyone familiar with Sasquatch footprint research, that detail about the toe gaps is significant. Human toes are typically compressed together from years of wearing shoes, but these prints show clear spacing between the digits, which is consistent with what's been documented in credible Sasquatch track finds over the years.
The team referenced Dr. Jeff Meldrum's work on Sasquatch foot morphology, particularly his observations that juvenile Sasquatch prints sometimes show a semblance of an arch, unlike the flat-footed impressions typically associated with adult specimens. That's a theory worth keeping in mind when examining prints like these.
The gait analysis is another compelling piece of the puzzle. The researchers pointed out that the stride pattern doesn't match a typical human walking gait. The long strides between prints suggest these individuals were moving with purpose from point A to point B, possibly foraging. And that brings us to one of the most intriguing details in the whole video.
Along the trackway, the team found cattails that had been completely pulled out of the ground, with the roots missing. Cattail roots are edible, and some of the stems still showed green coloring, indicating this wasn't old damage. Whoever pulled these plants out had the strength to rip them from the soil, and the researchers noted it would take considerable force to accomplish that. The theory is that the juveniles were wandering around the lake bed digging up freshwater clams, known as muscle shells in the area, and possibly snacking on cattail roots along the way.
The video also captures the casting process in real time, including a father-son moment where a young investigator, dubbed "Squatch Ranger Jr.," gets his first hands-on experience making plaster casts. It's a wholesome reminder that this research is being passed down to the next generation.
Central Oklahoma has been a hotspot for Sasquatch sightings and reports for decades, and discoveries like this one only add to the growing body of evidence in the region. Trackways are particularly valuable to researchers because they provide multiple prints in sequence, allowing for gait analysis and a better understanding of how these creatures move through their environment.
For anyone interested in seeing the full investigation, the casting process, and the researchers' analysis, the video is worth checking out. It's a solid example of field research done right, with proper documentation, measurement, and casting techniques. The kind of work that helps build the case, one footprint at a time.