This is funny
They keep their cool: https://news.mit.edu/2023/new-way-quantum-computing-systems-keep-their-cool-0221
In this experiment, the researchers utilized a discrete time crystal as a control mechanism to safeguard the GHZ states within their quantum computer, which consists of qubits made from tiny circuits capable of conducting electricity without resistance. These qubits can exist in a quantum superposition, analogous to Schrödinger’s cat thought experiment, where the cat is simultaneously alive and dead until its state is observed.
Think of it as a control knob for a quantum computer, New Scientist explained.
It's like he's trying to tell me something, I just know it!
I'm not scared of the technology, I care for the state of souls.
I hope you're right
Shuffling Madness!
And wait til they get to 'ai robots' with it
I think they have been creating diseases to attack the brain and central nervous system. I think even before the corona stuff but that was their heaviest hitter so far then they come in with this messenger rna to mess even further with peoples cells and Voila' you have a transhumanist wet dream with this shite as a 'solution'.
https://dgrayman.fandom.com/wiki/Akuma_Egg
Pitiful Akuma! Let your soul be saved!
Video from the picture: https://odysee.com/@Merkarenicus:c/world's-first-logical-quantum-processor,:3
This is a sillypost but it's funny to me
7 ish min video. I wonder if they've created a new demand of neurological disorders in the population to create a desperate demand for their abominable creations?
WHAT IS THE CUSTOM ACCELERATOR?
The CuSTOM Accelerator Lab is a part of the larger Center for Stem Cell and Organoid Medicine (CuSTOM) at Cincinnati Children’s. While scientists at CuSTOM continue the wide-ranging basic research needed to develop increasingly sophisticated organoids, the accelerator lab works to scale up biotech business applications.
“The CuSTOM Accelerator provides a runway to develop, manufacture and deliver innovative stem cell and organoid-based research tools,” says CuSTOM’s director, Aaron Zorn, PhD.
In summary, stem cell-based method and composite material-based method for kidney repair and regeneration are effective measures to treat kidney diseases, which are expected to improve the quality of patients life by addressing the issues with immune rejection and donor scarcity associated with kidney transplantation. This article will focus on stem cells and composite materials, and provide a detailed introduction to the research progress in the field of kidney repair and regeneration from the perspectives of stem cell therapy, composite material therapy, tissue engineering of kidneys and kidney organoids based on the combination of stem cell and composite material. We also analyze the mechanisms of different methods for treating kidney diseases. At the same time, we provide a detailed analysis of the advantages and disadvantages of the various approaches and suggest possible future developments in kidney regeneration
In conclusion, the development of this novel in vitro model enabling real-time electrophysiological recordings within interconnected organoids represents a significant advancement in the field. This platform overcomes the limitations of assembloids by providing a means to study and characterize the functional properties of neural connections between two distinct organoids without imaging modalities. It offers new avenues for streamlined disease modeling and drug discovery, allowing the recreation of specific pathologies and the evaluation of therapeutic interventions in a more physiologically relevant context.
Abstract
Existing mRNA COVID-19 vaccines have shown efficacy in reducing severe cases and fatalities. However, their effectiveness against infection caused by emerging SARS-CoV-2 variants has waned considerably, necessitating the development of variant vaccines. Ideally, next-generation vaccines will be capable of eliciting broader and more sustained immune responses to effectively counteract new variants. Additionally, in vitro assays that more closely represent virus neutralization in humans would greatly assist in the analysis of protective vaccine-induced antibody responses. Here, we present findings from a SARS-CoV-2 VLP vaccine encompassing three key structural proteins: Spike (S), Envelope (E), and Membrane (M). The VLP vaccine effectively produced neutralizing antibodies as determined by surrogate virus neutralization test, and induced virus-specific T-cell responses: predominantly CD4+, although CD8+ T cell responses were detected. T cell responses were more prominent with vaccine delivered with AddaVax compared to vaccine alone. The adjuvanted vaccine was completely protective against live virus challenge in mice. Furthermore, we utilized air–liquid-interface (ALI)-differentiated human nasal epithelium (HNE) as an in vitro system, which authentically models human SARS-CoV-2 infection and neutralization. We show that immune sera from VLP-vaccinated mice completely neutralized SARS-CoV-2 virus infection, demonstrating the potential of ALI-HNE to assess vaccine induced Nab
Conclusion
Overall, the study findings demonstrated the ability of 3D printing to generate functioning brain tissues for simulating network activity in normal and pathological settings. The bioink-created tissues establish functional synaptic connections between neuronal subtypes and neuron-astrocyte networks in two to five weeks. The 3D platform provides a defined environment for studying human brain networks in healthy and pathological settings; however, it has limitations, such as the softness of the gel and the 50mm thickness of the printed tissues.
Summary
Human brain development involves an orchestrated, massive neural progenitor expansion while a multi-cellular tissue architecture is established. Continuously expanding organoids can be grown directly from multiple somatic tissues, yet to date, brain organoids can solely be established from pluripotent stem cells. Here, we show that healthy human fetal brain in vitro self-organizes into organoids (FeBOs), phenocopying aspects of in vivo cellular heterogeneity and complex organization. FeBOs can be expanded over long time periods. FeBO growth requires maintenance of tissue integrity, which ensures production of a tissue-like extracellular matrix (ECM) niche, ultimately endowing FeBO expansion. FeBO lines derived from different areas of the central nervous system (CNS), including dorsal and ventral forebrain, preserve their regional identity and allow to probe aspects of positional identity. Using CRISPR-Cas9, we showcase the generation of syngeneic mutant FeBO lines for the study of brain cancer. Taken together, FeBOs constitute a complementary CNS organoid platform.
PDF warnings are nice
All good friend
I know, I took an opportunity to be funny
I actually do not enjoy dreaming, I don't ususally remember and that's cool with me. When I do tho it feels disorienting and I'm not a fan.
I don't think anyone should mess with this device ever, no matter what.
Frens can use it for free