the most disruptive technology for treating patients in the ICU turns out to be an MP3 file

When we think about the advances in hospitals to improve survival or recovery of patientswe can come to think of better respirators, monitors that offer thousands of data or new drugs that are almost miraculous. However, science has given us a blow of reality by demonstrating that accompanying families during hospital stays offers great results. This is something that has been seen directly in a hospital’s ICU itself, where patients are between life and death. That is why a study decided to use something as ‘low-tech’ as It is a voice recording of a family member to see the real impact it could have on his recovery. And the truth is that we have been underestimating the usefulness of this clinical tool. The problem. One of the big problems faced by patients entering the ICU is the ‘delirium’. A state of great confusion resulting from an acute failure of the nervous system that affects up to 80% of patients that have mechanical ventilation. And this is something terrible within these units. Not because it is annoying for the patient to be in a great state of confusion, but because it has been seen that mortality, hospital stay and all this increase. leads to higher costs for the healthcare system. Something that has been calculated and that points to an expense of between 6,000 and 20,000 million dollars annually. And the worst thing: current drugs (sedatives, antipsychotics) are often part of the problem or are not entirely effective in preventing it. The solution. Once we had the problem, Cindy Munro proposed a simple but powerful hypothesis to solve it: if the brain “disconnects” from reality due to isolation and sedation, can we use a familiar voice to bring it back? The test. In order to see if this was possible or not, a study was carried out that included 178 patients from two large hospitals in Florida and which had the collaboration of five large universities. The goal was clear: treat sound almost as if it were medicine. To do this, a protocol was created to play the audio so that it was not simply connecting the radio or mobile phone and allowing the patient to listen. The standard was to use common audio players, with two-minute clips recording the families and a playback that would be done twice a day: at 9 in the morning and at 4 in the afternoon. The time was not chosen at random, but was designed to ‘hack’ the circadian rhythm. Listening to familiar voices during the day helps the brain orient itself temporally, reinforcing the difference between day and night, something that is completely lost under the artificial lights of an ICU. The result. In addition to offering a positive result to the patients’ condition, it was also seen to have a dose-dependent effect like medications. That is, the more messages patients received, the greater the reduction in delirium in the ICU. Why this matters. Today the industry does not cease its attempts to search for complex molecules to protect the brain, regenerate cells and countless other techniques. But the reality is that the solution seems to lie in our evolutionary biology (or at least a little help): reacting to the voices of our ‘tribe’. Images | Stephen Andrews In Xataka | Science wants to put ‘microrobots’ into our bodies to medicate us. They have already given good results

After triumphing with its chips for AI, Nvidia has set another disruptive technology: quantum computers

Nvidia’s bet for Quantum computers It is less and less shy. Jensen Huang, the co -founder and general director of this company, has announced A few hours ago at its annual developer conference that will open a laboratory expressly dedicated to Quantum computing research. It will be housed in Boston (Massachusetts) and will allow NVIDIA engineers to work side by side with the researchers at Harvard University and the Massachusetts Technology Institute (MIT). It will begin operating at the end of 2025. This strategic movement puts on the table with absolute clarity that Huang does not want to stay out of technology that will presumably cause a medium -term disruption. The most curious thing is that before formalizing the implementation of its new quantum technologies development laboratory, this executive has not let out the opportunity to retract. At the beginning of last January A few statements They caused a very abrupt fall of the actions of some of the companies that are dedicated to the development of quantum computers. “If you said 15 years you would probably be optimistic. And if you said 30 you would be pessimistic. But if you opt for 20 years I think many of us would believe it,” Jensen Huang argued At that time. With this reflection I tried to predict when the really useful quantum machines will be ready, and, therefore, capable of dealing with a very wide range of problems. But he has changed his mind. Just two and a half months later seems to be convinced that fully functional quantum computers will be ready much earlier. With the correction of errors of quantum computers in the spotlight Nvidia flirting with quantum computers is not really new. And is that He has been collaborating for more than two years With the Israeli company Quantum Machines. This company specialized in the development of hardware and software for quantum machines, and has been ready with NVIDIA a low -performance and high performance architecture that seeks to promote the progress of quantum computing. DGX quantum seeks to help researchers who work in the field of quantum computing to develop new quantum algorithms NVIDIA has contributed its CPU/GPU grace hopper system, a beast that is designed to execute applications of artificial intelligence and offer productivity at high performance computer scenarios, and also its open source programming model CUDA QUANTUM. His partner in this project, Quantum Machines, has been in charge of the integration and set -up of a quantum platform that, according to these two companies, is specifically designed to work in hybrid systems in which classical hardware and quantum coexist in harmony. The purpose of the DGX Quantum platform, which is what is called the hardware that these two companies have developed, is to help researchers who work in the field of quantum computing to develop new quantum algorithms. It may seem surprising that it is possible to use classic hardware to develop quantum algorithms, but it is something perfectly viable. In fact, this strategy helps to put quantum computing within the reach of many more researchers who can implement and test their ideas without having access to a quantum computer prototype. However, the DGX quantum platform also serves, according to NVIDIA, to calibrate quantum systems, control them, and even aspires to have a prominent role in the tuning of a correction system that allows quantum computers amend your own mistakes. Jensen Huang emphasized this idea during his GTC 2023 conference, and there is no doubt that It is a very attractive possibility. Extraordinarily attractive. And is that, As Ignacio Cirac explained to us In the conversation we had with him, the correction of errors will give us the opportunity to solve with quantum computers really significant problems. Image | Nvidia More information | Reuters | SCMP In Xataka | Quantum computers find it impossible to do nothing. It is a mystery that has scientists on alert

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