Snake Robot Capable of Treating Spinal Cord Injuries

In this undated photo, a timber rattlesnake, is cautiously displayed. John Weiss / AP
In this undated photo, a timber rattlesnake, is cautiously displayed. John Weiss / AP
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Snake Robot Capable of Treating Spinal Cord Injuries

In this undated photo, a timber rattlesnake, is cautiously displayed. John Weiss / AP
In this undated photo, a timber rattlesnake, is cautiously displayed. John Weiss / AP

A Japanese-US research team has made a major step towards treating spinal cord injuries by designing artificial neurons that can replace biological cells, after they created a robot that resembles a snake in both its shape and movements.

During the study published in the Atlantis Press Journal on April 12, the researchers managed to simulate the so-called "central pattern generation networks" (CPG) in the spinal cord, found in humans and snakes. CPGs are neuronal circuits that are responsible for walking, breathing, swimming.

Previous studies sought to develop animal-like robots replicate inspired by the central pattern generation networks models, but with no the biological simulation achieved by the researchers from the University of Bordeaux and the University of Tokyo.

"By using a digital neural system, we managed to efficiently simulate the biological behavior of a snake. The robot included two main components: one that acts like the brain and another that acts like the body; the signal kicks off from the brain and propagates all over the body; these processes are controlled by the central pattern generation network," Timothée Levi, the study lead author, told Asharq Al-Awsat.

In Levi's opinion, the most meaningful aspect of the study is that they tried to be faithful to biology, as the robot they designed has the same features of a real snake in terms of motor patterns and reaction to noises, which makes it highly efficient for researches seeking a better understanding of the behavior of reptilians.

"This is a just another application of the robot; but the main objective of this research was to develop a robot for biomedical applications, especially spinal cord injuries. We are now planning to add more intelligence in the robot's brain with learning rules, as well as using the different sensors. Moreover, one of our long term goals is to combine living neurons," Levi concluded.



US Finalizes $9.63 billion Loan for Ford, SK On Joint Battery Venture

Ford cars are displayed at the 39 Thailand International Motor Expo, in Bangkok, Thailand, November 30, 2022. REUTERS/Athit Perawongmetha/File Photo
Ford cars are displayed at the 39 Thailand International Motor Expo, in Bangkok, Thailand, November 30, 2022. REUTERS/Athit Perawongmetha/File Photo
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US Finalizes $9.63 billion Loan for Ford, SK On Joint Battery Venture

Ford cars are displayed at the 39 Thailand International Motor Expo, in Bangkok, Thailand, November 30, 2022. REUTERS/Athit Perawongmetha/File Photo
Ford cars are displayed at the 39 Thailand International Motor Expo, in Bangkok, Thailand, November 30, 2022. REUTERS/Athit Perawongmetha/File Photo

The US Energy Department on Monday said it has finalized a $9.63 billion loan to a joint venture of Ford Motor and South Korean battery maker SK On to help finance construction of three new battery manufacturing plants in Tennessee and Kentucky.

The low-cost government loan for the BlueOval SK joint venture is the largest ever from the government's Advanced Technology Vehicles Manufacturing loan program. SK On is the battery unit of energy group SK Innovation.

The final award - first reported by Reuters - is one of a series of actions by the Biden administration to boost electric vehicle production before President-elect Donald Trump takes office next month, Reuters reported.

The amount is higher than the $9.2 billion conditional commitment announced in June 2023 for the BlueOval project. Trump and his advisers have been critical of the Biden administration's efforts to incentivize EV production.

"This program is essential to getting people to choose the United States of America," said Jigar Shah, who heads the DOE Loan Programs office, in an interview. "When you look at the competition that we have from China, it is very clear to me that they have used low-cost debt for a very long time to promote a lot of manufacturing capacity that has hollowed out many communities in Kentucky, Tennessee, and other states around the country."

The joint venture is building battery manufacturing facilities in Kentucky and Tennessee that will enable more than 120 gigawatt hours of U.S. battery production annually.

BlueOval SK said it has invested more than $11 billion to date in the construction of the three 4-million-square-foot facilities and plans to begin production at the first Kentucky plant in 2025 and will be ready to begin production in Tennessee in late 2025.

Asked why it took nearly 18 months to complete the loan, Blue Oval SK said the DOE undertook rigorous due diligence that had to conduct technical, market, financial, credit, legal, regulatory, and other reviews.

Earlier this month, the DOE said it is planning to loan up to $7.54 billion to the StarPlus Energy joint venture of Chrysler-parent Stellantis and Samsung SDI to help build two EV lithium-ion battery plants in Indiana.

The conditional commitment award must still be finalized and includes $6.85 billion in principal and $688 million in capitalized interest

The DOE said last month it was proposing to loan Rivian up to $6.6 billion to build a plant in Georgia to begin building smaller, less expensive EVs in 2028.

In December 2022, the DOE finalized a $2.5 billion low-cost loan to a joint venture of General Motors and LG Energy Solution to help pay for three new lithium-ion battery cell manufacturing facilities in Ohio, Tennessee and Michigan.