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Jun 5, 2024

Dr. Eliah Overbey, Ph.D. — Assistant Prof., Bioastronautics, UATX — Making Humanity Multi-Planetary

Posted by in categories: biotech/medical, computing, health, space travel

Making Humanity A Multi-Planetary Species — Dr. Eliah Overbey, Ph.D. — Assistant Professor, Bioastronautics, University of Austin; CSO, BioAstra.


Dr. Eliah Overbey, Ph.D. is Assistant Professor of Bioastronautics at The University of Austin (UATX — https://www.uaustin.org/people/eliah–…) where she is involved in pioneering research in the field of astronaut health, specializing in spaceflight-induced genomic changes. Her work focuses on mapping changes in the human body during spaceflight and developing Earth-independent laboratories to make humans a multi-planetary species (https://www.eliahoverbey.com/).

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Jun 5, 2024

Strong Emergence vs. The Core Theory (Response to Sean Carroll)

Posted by in categories: neuroscience, physics

The core theory, weak vs. strong emergence, micro-reductionism, and Sean Carroll’s skeptical argument against everything. Is Dr. Carroll correct in holding that physics has ruled out the afterlife, an immaterial soul, fundamental consciousness, and parapsychology?

Linktree https://linktr.ee/emersongreen.

Continue reading “Strong Emergence vs. The Core Theory (Response to Sean Carroll)” »

Jun 5, 2024

Metastatic Colorectal Cancer CAR-T Therapy GCC19CART Demonstrates Safety and Clinical Activity in US Patients

Posted by in categories: biotech/medical, innovation

GCC19CART has previously been evaluated in an investigator-initiated clinical trial (ChiCTR2000040645) in China for the treatment of relapsed/refractory metastatic colorectal cancer (r/r mCRC).2 Data from that trial showing improvements over standard of care (SOC) third-line therapies were presented at the American Association for Cancer Research (AACR) Annual Meeting 2023, held April 14–19, 2023, in Orlando, Florida. Among the 21 patients included in the efficacy analysis, superior results were observed in patients (n=8) who received the higher dose level (2×106 CAR-T cells/kg; DL2) than in patients (n=13) who received the lower dose level (1×106 CAR-T cells/kg; DL1). The objective response rate was 50% (n=4) for DL2, 15% (n=2) for DL1, and 29% (n=6) for all patients.

“The new AE specific to this product is diarrhea because the target is guanylate cyclase 2C (GCC), which plays a role in intestinal homeostasis… So, that’s expected, theoretically,” Victor Lu, PhD, the chief technology officer of Innovative Cellular Therapeutics, who presented the data, said during his presentation.2 “Most patients treated with this product experienced diarrhea, but it can be controlled and because of the diarrhea management most of the patients actually recovered very quickly.”

GCC19CART targets both GCC and CD19.1 It was designed using ICT’s CoupledCAR platform, which combines 2 CAR T cells engineered to release cytokines that are thought to promote proliferation and infiltration.3 The platform was designed following observations that CD19-directed CAR T cells also stimulated the immune system, which could lead to increase proliferation for other CAR T cells, specifically those directed toward solid tumor antigens, like GCC.

Jun 5, 2024

WATCH LIVE: NASA and Boeing launch first crewed Starliner mission to International Space Station

Posted by in category: space

Subscribe: Newsletters: https://www.pbs.org/newshour/subscribePBS NewsHour podcasts: https://www.pbs.org/newshour/podcastsStream your PBS favorites with the P…

Jun 5, 2024

Researchers Investigate Quantum Entanglement as Next-Gen Computing Fuel

Posted by in categories: computing, quantum physics

Researchers in China have demonstrated how entanglement might potentially power future generations of computers, according to a story in the South China Morning Post. This advance, achieved by scientists from the Chinese Academy of Sciences’ Innovation Academy of Precision Measurement Science and Technology, points toward how quantum engines can use their own entangled states as a form of fuel.

Entanglement is a quantum phenomenon where a pair of separated photons seem to be intimately linked, regardless of the distance between them. Scientists have long theorized that this characteristic, once robustly managed, could hold vast potential for quantum computing, and this study adds further evidence to its viability in practical applications, the researchers suggest.

“Our study’s highlight is the first experimental realization of a quantum engine with entangled characteristics. [It] quantitatively verified that entanglement can serve as a type of ‘fuel’,” said Zhou Fei, one of the corresponding authors, as reported in the SCMP.

Jun 5, 2024

Physicists take molecules to a new ultracold limit to create a Bose-Einstein condensate

Posted by in categories: particle physics, quantum physics

There’s a hot new BEC in town that has nothing to do with bacon, egg, and cheese. You won’t find it at your local bodega, but in the coldest place in New York: the lab of Columbia physicist Sebastian Will, whose experimental group specializes in pushing atoms and molecules to temperatures just fractions of a degree above absolute zero.

Writing in Nature (“Observation of Bose-Einstein Condensation of Dipolar Molecules”), the Will lab, supported by theoretical collaborator Tijs Karman at Radboud University in the Netherlands, has successfully created a unique quantum state of matter called a Bose-Einstein Condensate (BEC) out of molecules.

Their BEC, cooled to just five nanoKelvin, or about-459.66 F, and stable for a strikingly long two seconds, is made from sodium-cesium molecules. Like water molecules, these molecules are polar, meaning they carry both a positive and a negative charge. The imbalanced distribution of electric charge facilitates the long-range interactions that make for the most interesting physics, noted Will.

Jun 5, 2024

Exploring the Unknown: A Unique Quantum State of Matter Emerges at Columbia

Posted by in categories: particle physics, quantum physics

Physicists at Columbia University have taken molecules to a new ultracold limit and created a state of matter where quantum mechanics reigns.

There’s a hot new BEC in town that has nothing to do with bacon, egg, and cheese. You won’t find it at your local bodega, but in the coldest place in New York: the lab of Columbia physicist Sebastian Will, whose experimental group specializes in pushing atoms and molecules to temperatures just fractions of a degree above absolute zero.

Writing in Nature, the Will lab, supported by theoretical collaborator Tijs Karman at Radboud University in the Netherlands, has successfully created a unique quantum state of matter called a Bose-Einstein Condensate (BEC) out of molecules.

Jun 5, 2024

Astrophotographer captures planetary parade with the moon in stunning photo

Posted by in category: cosmology

The much-hyped planetary alignment of June may not have been the jaw-dropping naked-eye spectacle some made it out to be, but it still made for some stunning astrophotography.

Josh Dury of Somerset, England caught the planetary parade on June 1, 2024, from atop Crooks Peak, a popular and historic outcropping of rock in the Mendip Hills.

Jun 5, 2024

Tim Cook is about to reveal Apple’s plan to dominate the internet for another decade

Posted by in categories: internet, robotics/AI

Apple is hoping to recreate the success of a deal it struck with Google back in 2005 by announcing a partnership with OpenAI fit for the AI age.

Jun 5, 2024

Our universe may have an anti-universe twin on the other side of the Big Bang, say physicists

Posted by in categories: cosmology, particle physics

It’s possible that our universe is the antimatter counterpart of an antimatter universe that existed earlier in time than the Big Bang. So claim physicists in Canada, who have devised a new cosmological model positing the existence of a “antiuniverse” which, paired to our own, preserves a fundamental rule of physics called CPT symmetry. Though many details in their theory still need to be worked out, the researchers claim that it naturally explains the existence of dark matter.

According to standard cosmological models, the universe—which consists of space, time, and mass/energy—exploded into being about 14 billion years ago. Since then, it has expanded and cooled, causing subatomic particles, atoms, stars, and planets to gradually form.

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