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Carotid injury during transsphenoidal surgery is a dreaded event for neurosurgeons. Preoperative knowledge of the anatomy, essential intraopertive tools (Doppler) and a methodical, deliberate action plan by the surgical team is necessary to avoid and mitigate this morbid surgical complication. Thanks to Michael Oh MD Baxter International and Stryker...

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NEURALINK: CJ suffered a spinal cord injury and is ventilator-dependent. A few months ago, he was selected for the Neuralink PRIME Study at The Miami Project to Cure Paralysis. He recently underwent N1 implant surgery. at the University of Miami's Miller School of Medicine, with Neuralink co-investigator Dr. Michael E. Ivan, UoM Associate Professor of at the Miller School of Medicine Neurological Surgery and The Miami Project to Cure Paralysis. Per CJ, "In addition to being a stellar neurosurgeon, Dr. Ivan is really quite hilarious. Totally put me at ease even knowing that I was about to get a hole put in my head and wake up a cyborg!" Right after surgery in the hospital, Neuralink Software Engineer Natalie Cygan stopped by his room, set up the Neuralink laptop, showed the brain waves, and gave his wife her personal cell number for future questions. Per CJ, "Shortly after my surgery, a Neuralink engineer stopped by my hospital room to show my wife my brain waves. For the purpose of future arguments, Sweetie, this proves once and for all that I do have a brain..." A day or two later at home, Neuralink's Sehej Bindra visited to assist with the N1 implant setup and training. CJ reached 6.23 BPS on WebGrid according to Sehej and they celebrated the success. Sehej is the the brainchild behind SimpleCell, a platform to integrate and streamline the bioinformatics research. Per CJ, "Sehej is awesome. Came to my house three days straight to train me on my N1 and still meets with me virtually." At his 1-month post-op visit, Dr. Ivan confirmed the surgery healed and the N1 implant was in the right place. The CT scan above shows how the implant looks in his skull. CJ called the clinical trial very encouraging because participants recovered tremendous respiratory function and the work of weaning from the ventilator helps keep motor neurons alive. CJ (Neuralink P24), Michael Ivan, MD, MBS, FAANS

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BOOM! Humanoid Robots Just Performed Surgery for the First Time! REAL VIDEO! In a groundbreaking preclinical breakthrough, researchers at UC San Diego have achieved what many thought was years away: teleoperated humanoid robots successfully completing live surgeries. Published in Nature, the study marks the world’s first use of humanoid robots for in-vivo laparoscopic procedures on large animals (pigs). Two separate surgeries were completed: Key Details •. Procedure: Laparoscopic gallbladder removal (cholecystectomy) •. Team 1: Human surgeon + one humanoid robot (the robot performed core tasks while the human assisted) •. Team 2: Two humanoid robots working together with no human at the operating table •. Robots: Custom “Surgie” humanoids (~5 ft tall, ~60 lbs) using standard surgical tools •. Control: Fully teleoperated by surgeons (remote human control, not autonomous) •. Significance: First demonstration of humanoid robots handling real surgical workflows in a live setting, proving compatibility with existing OR tools and spaces This proof shows humanoid robots could one day help address surgeon shortages, enable remote procedures in rural areas, battlefields, or even space all at a fraction of the cost and space of traditional surgical robots like da Vinci. Read the full publication here: Project page with video: The future of surgery just got a whole lot more interesting. And medical cost for the first time in decades will be scheduled to go down, much further down.

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