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Biologist reaches into electric eel tank, comes out with equation to measure shocks

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A series of photos captures Finless, a juvenile electric eel, jumping out of the water to shock Catania’s arm. (Ken Catania/Vanderbilt University)

The shock from a young electric eel feels like accidentally touching a horse fence. A big one is more like getting tasered — by nine of those devices at once.

Ken Catania (Steve Green/Vanderbilt)

Vanderbilt University researcher knows because he stuck his arm into a tank with small eel 10 times. It was the only way to get accurate measurements of the circuit created by animal, arm and water. Measuring the shock from those interactions allowed him to solve an equation he can extrapolate to measure the power released by bigger eels, which can grow to 8 feet or longer.

Catania, Stevenson Professor of Biological Sciences, studies the neurobiology of predators and prey and last year proved the validity of a controversial 200-year-old account of eels leaping out of Amazonian waters to shock horses. But documenting their leaping ability left him wondering about the resistances and current for each component of an attack.

鈥淚t was definitely a good lesson in how efficient the electric eel would be at deterring a predator,鈥 said Catania, who worked with a 16-inch-long juvenile eel he affectionately named Finless. 鈥淓els are essentially batteries immersed in water, and I wanted to solve the question of how powerful those batteries are. What鈥檚 the internal resistance of the battery? What鈥檚 the resistance of the water? My past research left out the last variable: my arm.鈥

A graphic of the device Ken Catania used to complete the circuit among eel, arm and water. (Ken Catania/Vanderbilt University)

To close the circuit and get the measurement, he created a device that used copper wire to conduct the electricity from the shock to his arm back to the water, one of the methods documented in his paper 鈥淧ower Transfer to a Human during an Electric Eel鈥檚 Shocking Leap.鈥 It will be published in the Sept. 25 issue of Current Biology.

Catania said the research reminded him that there鈥檚 always something more to learn about electric eels, even though they鈥檝e been studied for 200 years.

鈥淭hey鈥檙e so much more sophisticated than we possibly could have imagined,鈥 he said. 鈥淭his animal can generate hundreds of volts, but they鈥檝e also evolved to very efficiently deliver that electricity.鈥