Published
Aug 17, 2026 12:17 PM EDT
Get the Popular Science daily newsletterđĄ
Breakthroughs, discoveries, and DIY tips sent six days a week.
This back to school season, U.S. Fish and Wildlife Service (FWS) biologists are testing out a backpack of their own. But this one doesnât carry notebooks and pens. It tracks crayfish movements and survival.Â
The trial is part of the FWSâ efforts to boost the populations of the Big Sandy crayfish (Cambarus callainus), a freshwater crustacean that lives in the rivers and streams of Appalachia. Since 2016, these four-inch long creatures have been considered a federally threatened species as water pollution and habitat loss have shrunk their range.Â
Thatâs why the White Sulphur Springs National Fish Hatchery in West Virginia is trying to propagate this rare species with the help of the West Virginia Ecological Services Field Office. The hatchery raises crayfish for one or two months, putting about a yearâs growth into them in that time. Then, theyâre released into their habitat in the fall.Â
âAt that point, we need to be able to track them,â Andrew Phipps, a fish biologist at the hatchery, tells Popular Science. âWe need to build on that, to go back to the creek, and say, hey, these little guys lived, or they didnât live.âÂ
Right now, Phipps and his colleagues use visible implant elastomer (VIE) tagging to mark the fish. They inject a colored tag under the crayfishâ pleon (a fancy way to say its tail region), which lets them know that a specimen is from the hatchery. âBut it doesnât give us an individual ID,â Phipps explains.Â
Phipps and his colleagues typically release nearly 300 animals with these tags, which also makes tracking them down a painstaking process. They have to go out in the crayfish habitats and keep sampling until they find one, a difficult task given that the crayfish are small and the river is not.Â
So, FWS biologists are developing a new tagging protocol for their Big Sandy crayfish. Other options, like the VI Alpha tag, allow researchers to individually identify specimens, but the crayfish would have to be a lot bigger. âIf you put it in and theyâre too small, itâll kill them,â Phipps says.Â
Holding the crayfish over winter for them to reach the right size for the tag, however, is too much of a risk. âWeâre looking for a happy medium,â Phipps explainsâsomething safe for 25 millimeter crayfish.Â
Thatâs where the âbackpacksâ come in. They encase a Passive Integrated Transponder (PIT) tag, a tiny, batter-free microchip with a unique code thatâs activated when scanned, since injecting it into the tiny crayfish would be too dangerous. And the key to attaching the tag onto the crayfish?
âWe basically superglue that thing on there,â Phipps says.Â
First, regular superglue attaches the tag on the back of the crayfish. This glue is then covered in another type of more flexible superglue, and finally, the team squirts baking soda water on it to help the backpack system set more quickly.
The tagging system was first trialled in a common surrogate crayfish species, Faxonius sanbornii, to make sure it was safe. âWe didnât want to do a test on a listed species,â Phipps notes.Â


