Covid inquiry: Former first minister says UK should have made NI decisions

Former first minister tells Covid inquiry UK government should have stepped in between 2017 and 2020.

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Tom Holland says he felt ‘enslaved’ to alcohol

The film star says he is “healthier and fitter” since deciding to quit drinking at the start of 2023.

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Making headway in precision therapeutics with novel fully organic bioelectronic device

As researchers make major advances in medical care, they are also discovering that the efficacy of these treatments can be enhanced by individualized approaches. Therefore, clinicians increasingly need methods that can both continuously monitor physiological signals and then personalize responsive delivery of therapeutics.

Need for safe, flexible bioelectronic devices

Implanted bioelectronic devices are playing a critical role in these treatments, but there are a number of challenges that have stalled their widespread adoption. These devices require specialized components for signal acquisition, processing, data transmission, and powering. Up to now, achieving these capabilities in an implanted device has entailed using numerous rigid and non-biocompatible components that can lead to tissue disruption and patient discomfort. Ideally, these devices need to be biocompatible, flexible, and stable in the long term in the body. They also must be fast and sensitive enough to record rapid, low-amplitude biosignals, while still being able to transmit data for external analysis.

Columbia researchers invent first stand-alone, flexible, fully organic bioelectronic device

Columbia Engineering researchers announced today that they have developed the first stand-alone, conformable, fully organic bioelectronic device that can not only acquire and transmit neurophysiologic brain signals, but can also provide power for device operation. This device, about 100 times smaller than a human hair, is based on an organic transistor architecture that incorporates a vertical channel and a miniaturized water conduit demonstrating long-term stability, high electrical performance, and low-voltage operation to prevent biological tissue damage. The findings are outlined in a new study, published today in Nature Materials.

Both researchers and clinicians knew there was a need for transistors that concurrently pose all of these features: low voltage of operation, biocompatibility, performance stability, conformability for in vivo operation; and high electrical performance, including fast temporal response, high transconductance, and crosstalk-free operation. Silicon-based transistors are the most established technologies, but they are not a perfect solution because they are hard, rigid, and unable to establish a very efficient ion interface with the body. ]

The team addressed these issues by introducing a scalable, self-contained, sub-micron IGT (internal-ion-gated organic electrochemical transistor) architecture, the vIGT. They incorporated a vertical channel arrangement that augments the intrinsic speed of the IGT architecture by optimizing channel geometry and permitting a high density arrangement of transistors next to each other — , 155,000of them per centimeter square.

Scalable vGITs are the fastest electrochemical transistors

The vIGTs are composed of biocompatible, commercially available materials that do not require encapsulation in biological environments and are not impaired by exposure to water or ions. The composite material of the channel can be reproducibly manufactured in large quantities and is solution-processible, making it more accessible to a broad range of fabrication processes. They are flexible and compatible with integration into a wide variety of conformable plastic substrates and have long-term stability, low inter-transistor crosstalk, and high-density integration capacity, allowing fabrication of efficient integrated circuits.

“Organic electronics are not known for their high performance and reliability,” said the study’s leader Dion Khodagholy, associate professor of electrical engineering. “But with our new vGIT architecture, we were able to incorporate a vertical channel that has its own supply of ions. This self-sufficiency of ions made the transistor to be particularly fast — in fact, they are currently the fastest electrochemical transistors.”

To push the speed of operation even further, the team used advanced nanofabrication techniques to miniaturize and densify these transistors at submicro-meter scales. Fabrication took place in the cleanroom of the Columbia Nano Initiative.

Collaborating with CUIMC clinicians

To develop the architecture, the researchers first needed to understand the challenges involved with diagnosis and treatment of patients with neurological disorders like epilepsy, as well as the methodologies currently used. They worked with colleagues at the Department of Neurology at Columbia University Irving Medical Center, in particular, with Jennifer Gelinas, assistant professor of neurology, electrical and biomedical engineering and director of the Epilepsy and Cognition Lab.

The combination of high-speed, flexibility. and low-voltage operation enables the transistors to not only be used for neural signal recording but also for data transmission as well as powering the device, leading to a fully conformable implant. The researchers used this feature to demonstrate fully soft and confirmable implants capable of recording and transmitting high resolution neural activity from both outside, on the surface of the brain, as well as inside, deep within the brain.

“This work will potentially open a wide range of translational opportunities and make medical implants accessible to a large patient demographic who are traditionally not qualified for implantable devices due to the complexity and high risks of such procedures,” said Gelinas.

“It’s amazing to think that our research and devices could help physicians with better diagnostics and could have a positive impact on patients’ quality of life,” added the study’s lead author Claudia Cea, who recently completed her PhD and will be a postdoctoral fellow at MIT this fall.

Next steps

The researchers plan next to join forces with neurosurgeons at CUIMC to validate the capabilities of vIGT-based implants in operating rooms. The team expects to develop soft and safe implants that can detect and identify various pathological brain waves caused by neurological disorders.

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Next-generation flow battery design sets records

A common food and medicine additive has shown it can boost the capacity and longevity of a next-generation flow battery design in a record-setting experiment.

A research team from the Department of Energy’s Pacific Northwest National Laboratory reports that the flow battery, a design optimized for electrical grid energy storage, maintained its capacity to store and release energy for more than a year of continuous charge and discharge.

The study, just published in the journal Joule, details the first use of a dissolved simple sugar called β-cyclodextrin, a derivative of starch, to boost battery longevity and capacity. In a series of experiments, the scientists optimized the ratio of chemicals in the system until it achieved 60 percent more peak power. Then they cycled the battery over and over for more than a year, only stopping the experiment when the plastic tubing failed. During all that time, the flow battery barely lost any of its activity to recharge. This is the first laboratory-scale flow battery experiment to report more than a year of continuous use with minimal loss of capacity.

The β-cyclodextrin additive is also the first to speed the electrochemical reaction that stores and then releases the flow battery energy, in a process called homogeneous catalysis. This means the sugar does its work while dissolved in solution, rather than as a solid applied to a surface.

“This is a brand new approach to developing flow battery electrolyte,” said Wei Wang, a long-time PNNL battery researcher and the principal investigator of the study. “We showed that you can use a totally different type of catalyst designed to accelerate the energy conversion. And further, because it is dissolved in the liquid electrolyte it eliminates the possibility of a solid dislodging and fouling the system.”

What is a flow battery?

As their name suggests, flow batteries consist of two chambers, each filled with a different liquid. The batteries charge through an electrochemical reaction and store energy in chemical bonds. When connected to an external circuit, they release that energy, which can power electrical devices. Flow batteries differ from solid-state batteries in that they have two external supply tanks of liquid constantly circulating through them to supply the electrolyte, which is like the “blood supply” for the system. The larger the electrolyte supply tank, the more energy the flow battery can store.

If they are scaled up to the size of a football field or more, flow batteries can serve as backup generators for the electric grid. Flow batteries are one of the key pillars of a decarbonization strategy to store energy from renewable energy resources. Their advantage is that they can be built at any scale, from the lab-bench scale, as in the PNNL study, to the size of a city block.

Why do we need new kinds of flow batteries?

Large-scale energy storage provides a kind of insurance policy against disruption to our electrical grid. When severe weather or high demand hobble the ability to supply electricity to homes and businesses, energy stored in large-scale flow battery facilities can help minimize disruption or restore service. The need for these flow battery facilities is only expected to grow, as electricity generation increasingly comes from renewable energy sources, such as wind, solar and hydroelectric power. Intermittent power sources such as these require a place to store energy until it’s needed to meet consumer demand.

While there are many flow battery designs and some commercial installations, existing commercial facilities rely on mined minerals such as vanadium that are costly and difficult to obtain. That’s why research teams are seeking effective alternative technologies that use more common materials that are easily synthesized, stable and non-toxic.

“We cannot always dig the Earth for new materials,” said Imre Gyuk, director of energy storage research at DOE’s Office of Electricity. “We need to develop a sustainable approach with chemicals that we can synthesize in large amounts — just like the pharmaceutical and the food industries.”

The work on flow batteries is part of a large program at PNNL to develop and test new technologies for grid-scale energy storage that will be accelerated with the opening of PNNL’s Grid Storage Launchpad in 2024.

A benign ‘sugar water’ sweetens the pot for an effective flow battery

The PNNL research team that developed this new battery design includes researchers with backgrounds in organic and chemical synthesis. These skills came in handy when the team chose to work with materials that had not been used for battery research, but which are already produced for other industrial uses.

“We were looking for a simple way to dissolve more fluorenol in our water-based electrolyte,” said Ruozhu Feng, the first author of the new study. “The β-cyclodextrin helped do that, modestly, but it’s real benefit was this surprising catalytic ability.”

The researchers then worked with co-author Sharon Hammes-Schiffer of Yale University, a leading authority on the chemical reaction underlying the catalytic boost, to explain how it works.

As described in the research study, the sugar additive accepts positively charged protons, which helps balance out the movement of negative electrons as the battery discharges. The details are a bit more complicated, but it’s like the sugar sweetens the pot to allow the other chemicals to complete their chemical dance.

The study is the next generation of a PNNL-patented flow battery design first described in the journal Science in 2021. There, the researchers showed that another common chemical, called fluorenone, is an effective flow battery component. But that initial breakthrough needed improvement because the process was slow compared with commercialized flow battery technology. This new advance makes the battery design a candidate for scale up, the researchers say.

At the same time, the research team is working to further improve the system by experimenting with other compounds that are similar to β-cyclodextrin but smaller. Like honey, β-cyclodextrin addition also makes the liquid thicker, which is less than ideal for a flowing system. Nonetheless, the researchers found its benefits outweighed its drawbacks.

Understanding the complex chemistry happening inside the new flow battery design required the expertise of many scientists, including Ying Chen, Xin Zhang, Peiyuan Gao, Ping Chen, Sebastian Mergelsberg, Lirong Zhong, Aaron Hollas, Yangang Lian, Vijayakumar Murugesan, Qian Huang, Eric Walter and Yuyan Shao of PNNL, and Benjamin J. G. Rousseau and Hammes-Schiffer of Yale, in addition to Feng and Wang.

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New fish species discovered after decades of popularity in the aquarium trade

With just a few clicks of a mouse, you can purchase your very own redtail garra, a type of fish that feeds on algae. Information about the fish’s biology, however, is much less easily obtained. That’s because redtail garra, although popular in the aquarium trade since the early 2000s, has until now been unknown to science.

Researchers were peripherally aware of the fish’s existence, but “discovering” a new species requires scientific description based on specimens collected in their natural environment. Redtail garras appear to be restricted to a small stretch of river straddling the border between Thailand and Myanmar. The locality is isolated and difficult to reach, so wild redtail garras have existed in relative obscurity, despite their global appeal.

Larry Page, curator of ichthyology at the Florida Museum of Natural History, has surveyed fishes in Thailand every year since 2007. He recently encountered a few redtail garras while conducting fieldwork along the Kasat River, a tributary of the Ataran River in neighboring Myanmar.

“When we first collected specimens, we thought it must be widespread in Myanmar because of its popularity in the aquarium trade. But it turns out it’s not. It’s only in the Ataran River basin,” he said.

Page and his colleagues published the new species description in the journal Zootaxa. Redtails take their place among nearly 200 additional species in the genus Garra, one of the most diverse and widely distributed fish groups anywhere on Earth. Garra can be found in streams and rivers from the farthest reaches of western Africa through the Middle East, India and southern and eastern Asia, including parts of China. Yet their ubiquity has not resulted in a corresponding amount of research on the group.

“There’s surprisingly little information on their natural history,” Page said. There are few studies that broadly assess diversity in the genus, and little is known about relationships or how various groups within Garra have diversified.

According to Page, basic information about the fishes’ biology is available, but often in the form of studies on individual species or regions. “Most of them live in fast-moving water, and they have a disclike structure formed from a modification of the lower lip, which they use as an adhesive pad to cling to rocks and maintain their position in the water column as they feed,” he said.

Garra primarily subsist on algae and the occasional arthropod, which they eat by scraping detritus off rocks with specialized mouthparts. Like other species in the genus, redtails lack stomachs and have a snout encrusted with modified and hardened scales called tubercles. Similar structures in other fish groups are temporary; they’re used to defend nests but fall off after the breeding season has ended. Redtail tubercles are permanently attached and seem to be used as weapons, based on aggressive behavior observed in aquaria.

Redtail garra can be distinguished by their unique, elongated snout, covered in even more tubercles, which they can raise or lower, ostensibly as a means of intimidating opponents during combative encounters. And, as their common name suggests, their tails are emblazoned in red like a signal fire.

Their unique color pattern and their industrious ability to clear away algae have made them a coveted component of aquarium tanks, but their late addition to the roster of scientifically described species underscores a pressing need to take stock of biodiversity in understudied regions.

Page, who is working on a book describing the fishes of the Mae Klong River basin in Thailand, said the belated description of redtail garra is part of a larger recurring pattern. “Many of the fishes in Southeast Asia are referred to by names given to species discovered in India or Indonesia because they look similar.” People know particular species exist, Page said, but they are mistaken for those from other geographic areas, and their diversity has consequently been drastically underestimated.

Page and his colleagues named the new species Garra panitvongi after the author of another book on Thailand’s fishes, Nonn Panitvong. Lauded as a biodiversity hero by the Association of Southeast Asian Nations, Panitvong is both a businessman and an avid naturalist. He’s nurtured a passion for nature since his childhood days spent translating books about animals written in English with the help of his mom. He developed a special appreciation for Thailand’s aquatic life from his dad, who took him on fishing trips.

“Over the years, I found that in many of the places we went fishing, the environments were getting worse. There were fewer fish overall, and the fish assemblage changed for the worse, with a decreasing number of native species and more invasives,” he said.

Panitvong obtained a Master of Business Administration at the University of North Carolina Wilmington so he could effectively run his family’s sugarcane farm, but when it came time for a doctorate, he opted to study environmental science. After returning to Thailand, he created the website Siamensis.org, an open platform on which nature enthusiasts could share information about Thailand’s flora and fauna and plan excursions to wilderness areas.

In 2006, Panitvong and a friend discovered one of Thailand’s redtail garra populations and helped introduce the fish to the aquarium trade. Now, more than 15 years later, he said the official naming of redtail garra — and the discovery of species like it — help bring the world into clearer focus.

“I like to imagine humanity in a big room, painted in white. As we turned around, we would have no conception of which direction we were facing,” he said. “With each new discovery, a dot is added, a point made, and we know more and more about where we stand as a species.”

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Nottingham maternity review to become UK’s largest

A senior midwife leading the inquiry in Nottingham says 1,700 families’ cases will be examined.

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Ian Paterson: Eleven further inquests set to open

Ian Paterson is serving a 20-year sentence after he carried out unnecessary or unapproved procedures.

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Weight-loss jabs investigated for suicide risk

Europe’s drugs regulator has been alerted to a possible link to thoughts of suicide among some users.

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Direct Core Relationships

Have you thought much about the core relationships you’d like to cultivate with life, such as your relationships with work, people, physical reality, your body, government, creativity, entertainment, time, food, intimacy, home, etc?

You surely have many specific instances of these relationships showing up in your life, such as a particular job or family member. But have you ever stepped back from the specifics to make some high-level decisions about the purest forms of these relationships that you want to experience? There’s tremendous power in doing this since it helps you elevate your standards, define boundaries, sculpt your character, and make wiser decisions.

Remember this: You won’t necessarily get what you want; you’ll get what you tolerate.

If you want to experience your desires, stop tolerating less than your desires. Don’t be so easily seduced by partial matches.

Repeatedly engaging with whatever shows up in your life and making decisions based on the menu that life presents you, however randomly, can eventually lead to a semi-chaotic mess. You may end up with a job that’s so-so, work that lacks purpose, a place to live that’s just okay, a romantic relationship that sometimes works but is mostly stringing you along, a body you wish would be better, and so on. Ordering off the limited standard menu is a surefire pathway to the land of partial matches.

Consider the difference between these three options:

  1. Go to a typical restaurant, and make the best choice you can by ordering off the menu.
  2. Pre-decide what type of meal (from anywhere) would please you most, and then either make it yourself or go to the restaurant where you expect to find that meal.
  3. Reflect and decide what kind of high-level relationships you want to have with food, dining, and your body; then determine which meals would most honor those relationships and where you can find those meals.

In the first case you’re more likely to receive a partial match or a mismatch. In the second case, you’re being more proactive about clarifying what a match looks like and where you can expect to find it. In the third case, you’re assuming even more responsibility by reflecting upon the big picture and how you can honor your most consciously chosen standards.

The third case let’s you channel more power and make lower level decisions that you might not otherwise consider. For instance, you might move to a different part of town to be closer to the healthiest food options. Or move to a city with the kind of culture you really want to experience. It’s difficult to justify these kinds of decisions, if you haven’t clarified and committed to your high-level standards.

Accepting the Obvious

One benefit of thinking at the higher level and making decisions there first is that it helps you accept the obvious. You’ll recognize when you’re going to the wrong restaurant for you because it won’t satisfy your high-level standards. It won’t honor the direct core relationship you want to experience.

Many people don’t want to face this simple truth, so they remain in denial, telling themselves they’ll just have to make the best of what shows up. I get emails from people living in the Bible Belt, for instance, lamenting that they can’t seem to find intelligent, open-minded relationship partners there. Ya think?

Another common instance is when someone would choose to do creative work yet finds themselves in an uncreative department, an uncreative school, an uncreative company, or an uncreative field. They may get sucked into thinking of their career options based on the limited field of “opportunities” around them, instead of acknowledging the obvious.

When you look deeply into your desires and decide what you want at the higher levels, it’s important to accept the obvious, which is that you won’t get far unless you commit to those standards, which means you’re going to have to start dismissing and rejecting partial matches.

Passing the Test

Most likely when you make some high-level decisions – real decisions, not wishy-washy pretend ones – about the direct core relationships you want with different area of life, you’ll find life testing your resolve. You may encounter even more partial matches or mismatches, as if life is tempting you to settle for less. It is tempting you. Life wants to find out how certain and committed you are. It doesn’t want to meet your standard if it doesn’t have to.

This is the time when it’s most important to maintain your standards and keep them high. Accept the test that life is offering you, and pass it by rejecting the partial matches. Keep reaffirming what you want. Don’t settle. Reminder yourself that the direct core relationship you want is possible, but not if you settle for less.

If you want to do work that feels meaningful and purposeful to you, decline the job that’s almost purposeful. Hold out for the one that really lights you up.

If you want a sexually engaging relationship, decline the partial match that feels sexually stunted.

Passing the test includes dealing with the inner objections that may arise along the way, like the voice that tells you you’re being unreasonable, the voice of impatience, and so on.

Reciprocity

Don’t expect a free ride because relationships run both ways. Clarify what you’re willing and able to give to each relationship as well as what you desire to receive. What’s the overall experiential package?

If you want to do creative work sustainably, what’s your commitment on the giving side? In addition to publishing your work, will you also mentor and support others? Will you share openly about your creative process to help other creative people?

If you want a generous lover, will you also be a generous lover? Is that part of your commitment too?

For many people it’s easier to raise their standards on one side (giving or receiving) and harder on the other. Some people find it relatively easy to clarify their personal desires, but they aren’t offering much to life in exchange, so the offer falls flat. Other people find it natural to give and serve others, but they find it difficult to decline situations where they aren’t receiving much.

Regardless of the challenges, life seems to appreciate (and often require) reciprocity, especially when it’s so deeply woven into the offer that we no longer see much separation between the two sides.

A Personal Example: Community vs. Commerce

One example of a direct core relationship decision was that I wanted to socialize directly with the people I serve through my work and business. This decision was largely born of pain from doing the opposite at first. During the first five years of running my computer games business in the 1990s, I mainly worked with publishers. They would fund my game projects, but all of the customers would be theirs. Note that this was before social media, so there weren’t already established ways to build direct relationships with customers. There was no Twitter, Facebook, YouTube, Instagram, etc. There was no Google yet either.

I soon discovered that I found more joy in these direct customer relationships than I did in going through publishers as gatekeepers. I kept leaning in this direction, releasing some small games directly online, even though it wasn’t working very well financially at first. Customers began emailing me feedback, so I could finally interact with them a little. I added a customer discussion forum to my website way before that was popular. I also hosted an indie developer forum for many years to connect with peers in the field. These weren’t financially lucrative decisions, but I felt more engaged with the business when I made more community-oriented choices. It just seemed like the right standard for my overall happiness, and over time I began clarifying the importance of this community relationship aspect and choosing to do it more consciously.

This direct community aspect remains a big part of my life and work to this day, both with customers and with peers, and I’ve explored it in many more ways, such as with our workshops, courses, and Conscious Growth Club.

Another aspect of my work is that I like to run my life and business based on casual social rules as opposed to commercial rules as much as possible. It’s important to make a sustainable income and to deliver on business commitments and responsibilities, but otherwise I prefer to operate with a more community- and service-oriented mindset and heartset. That’s one reason I like to open Conscious Growth Club for new members only once a year. This allows us to get the transactional part handled in a week, and then we can spend the rest of the year relating, connecting, and growing as human beings without having to deal with any commercial aspects. There aren’t any upsells or financially-oriented decisions to deal with inside the club, and that’s exactly how I like it. I prefer to focus on serving and connecting with people as friends and colleagues inside, and I like having a community that resonates with that approach.

Many businesses are very businessy. It’s obvious that they play mainly by commercial rules, not social ones. I think they have their place in the world, but I never resonated with working in that kind of operation, nor with building one. I love intimacy – and hugs – and too much commercialization gets in the way of that. I do what’s necessary on the financial side to keep my life and work abundantly sustainable, but I’m way more motivated by community and connection. Most days that I’m working, I don’t think about money at all. I spend way more time thinking about the people that I regularly connect with.

So this is an example of acknowledging that the businessy way of doing business isn’t a match for me. It’s not even a partial match. It’s just a mismatch. It doesn’t help me create the kind of life I want to experience.

In considering the direct core relationship I want to have with my work and business, I’ve been able to clarify that I want to prioritize the community and co-creative exploration aspects above the commercial aspects. This helps me make more aligned decisions that feel right to me. I like being a person who can freely explore, share, and connect with people in deep and meaningful ways. I like being a person who doesn’t put so much emphasis on transactions yet who can still manage that aspect of life and business without feeling overly resistant to it. I like earning enough money that I can ignore money most of the time, so I can focus more energy and attention on what matters.

Living by Your Own Rules

Pay attention to how you feel when following different rules and standards. Notice where inner objections arise. How do you feel when a business treats you only like the money you’re worth to them. How do you feel when people set commerce aside and connect like real human beings, even when there’s a transactional aspect involved?

How do you feel about the standards you’re currently honoring in life? Are any of these standards screaming for an upgrade?

It’s a Sunday morning, and I felt inspired to write and publish this right after I got up, before having any breakfast. Is today a workday? I don’t know. I just like honoring the energy of inspiration when it shows up; that’s part of the direct core relationship with life that I enjoy and appreciate.

In a few weeks, I’ll be traveling to Belfast, Edinburgh, and London. I’ve been to London twice before, but this will be my first time in Northern Ireland and Scotland. I love exploring new places; it lights me up inside, and it further honors the core relationship I want to have with life – a highly engaged one.

What are the rules and standards by which you want to live? I encourage you to reflect upon them and clarify what really matters to you. Realize that you needn’t follow anyone else’s rules or expectations. If you don’t like the rules that have been presented to you, rewrite them. You’re not limited to the current menu.

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Ghana’s batmen hunting for pandemic clues

Scientists want to understand exactly how pathogens can jump species and what the next threat may be.

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