Science, Art, Litt, Science based Art & Science Communication
JAI VIGNAN
All about Science - to remove misconceptions and encourage scientific temper
Communicating science to the common people
'To make them see the world differently through the beautiful lense of science'
Members: 22
Latest Activity: 9 hours ago
WE LOVE SCIENCE HERE BECAUSE IT IS A MANY SPLENDOURED THING
THIS IS A WAR ZONE WHERE SCIENCE FIGHTS WITH NONSENSE AND WINS
“The greatest enemy of knowledge is not ignorance, it is the illusion of knowledge.”
"Being a scientist is a state of mind, not a profession!"
"Science, when it's done right, can yield amazing things".
The Reach of Scientific Research From Labs to Laymen
The aim of science is not only to open a door to infinite knowledge and wisdom but to set a limit to infinite error.
"Knowledge is a Superpower but the irony is you cannot get enough of it with ever increasing data base unless you try to keep up with it constantly and in the right way!" The best education comes from learning from people who know what they are exactly talking about.
Science is this glorious adventure into the unknown, the opportunity to discover things that nobody knew before. And that’s just an experience that’s not to be missed. But it’s also a motivated effort to try to help humankind. And maybe that’s just by increasing human knowledge—because that’s a way to make us a nobler species.
If you are scientifically literate the world looks very different to you.
We do science and science communication not because they are easy but because they are difficult!
“Science is not a subject you studied in school. It’s life. We 're brought into existence by it!"
“A society that loses science loses the future.”
Links to some important articles :
1. Interactive science series...
a. how-to-do-research-and-write-research-papers-part 13
b. Some Qs people asked me on science and my replies to them...
Part 6, part-10, part-11, part-12, part 14 , part- 8,
part- 1, part-2, part-4, part-5, part-16, part-17, part-18 , part-19 , part-20
part-21 , part-22, part-23, part-24, part-25, part-26, part-27 , part-28
part-29, part-30, part-31, part-32, part-33, part-34, part-35, part-36, part-37,
part-38, part-40, part-41, part-42, part-43, part-44, part-45, part-46, part-47
Part 48, part49, Critical thinking -part 50 , part -51, part-52, part-53
part-54, part-55, part-57, part-58, part-59, part-60, part-61, part-62, part-63
part 64, part-65, part-66, part-67, part-68, part 69, part-70 part-71, part-73 ...
.......306
BP variations during pregnancy part-72
who is responsible for the gender of their children - a man or a woman -part-56
c. some-questions-people-asked-me-on-science-based-on-my-art-and-poems -part-7
d. science-s-rules-are-unyielding-they-will-not-be-bent-for-anybody-part-3-
e. debate-between-scientists-and-people-who-practice-and-propagate-pseudo-science - part -9
f. pseudoscience
g. How Science is demolishing patriarchal ideas - part-39
2. in-defence-of-mangalyaan-why-even-developing-countries-like-india need space research programmes
3. Science communication series:
a. science-communication - part 1
b. how-scientists-should-communicate-with-laymen - part 2
c. main-challenges-of-science-communication-and-how-to-overcome-them - part 3
d. the-importance-of-science-communication-through-art- part 4
e. why-science-communication-is-getting worse - part 5
f. why-science-journalism-is-not-taken-seriously-in-this-part-of-the-world - part 6
g. blogs-the-best-bet-to-communicate-science-by-scientists- part 7
h. why-it-is-difficult-for-scientists-to-debate-controversial-issues - part 8
i. science-writers-and-communicators-where-are-you - part 9
j. shooting-the-messengers-for-a-different-reason-for-conveying-the- part 10
k. why-is-science-journalism-different-from-other-forms-of-journalism - part 11
l. golden-rules-of-science-communication- Part 12
m. science-writers-should-develop-a-broader-view-to-put-things-in-th - part 13
n. an-informed-patient-is-the-most-cooperative-one -part 14
o. the-risks-scientists-will-have-to-face-while-communicating-science - part 15
p. the-most-difficult-part-of-science-communication - part 16
q. clarity-on-who-you-are-writing-for-is-important-before-sitting-to write a science story - part 17
r. science-communicators-get-thick-skinned-to-communicate-science-without-any-bias - part 18
s. is-post-truth-another-name-for-science-communication-failure?
t. why-is-it-difficult-for-scientists-to-have-high-eqs
u. art-and-literature-as-effective-aids-in-science-communication-and teaching
v.* some-qs-people-asked-me-on-science communication-and-my-replies-to-them
** qs-people-asked-me-on-science-and-my-replies-to-them-part-173
w. why-motivated-perception-influences-your-understanding-of-science
x. science-communication-in-uncertain-times
y. sci-com: why-keep-a-dog-and-bark-yourself
z. How to deal with sci com dilemmas?
A+. sci-com-what-makes-a-story-news-worthy-in-science
B+. is-a-perfect-language-important-in-writing-science-stories
C+. sci-com-how-much-entertainment-is-too-much-while-communicating-sc
D+. sci-com-why-can-t-everybody-understand-science-in-the-same-way
E+. how-to-successfully-negotiate-the-science-communication-maze
4. Health related topics:
a. why-antibiotic-resistance-is-increasing-and-how-scientists-are-tr
b. what-might-happen-when-you-take-lots-of-medicines
c. know-your-cesarean-facts-ladies
d. right-facts-about-menstruation
e. answer-to-the-question-why-on-big-c
f. how-scientists-are-identifying-new-preventive-measures-and-cures-
g. what-if-little-creatures-high-jack-your-brain-and-try-to-control-
h. who-knows-better?
k. can-rust-from-old-drinking-water-pipes-cause-health-problems
l. pvc-and-cpvc-pipes-should-not-be-used-for-drinking-water-supply
m. melioidosis
o. desensitization-and-transplant-success-story
p. do-you-think-the-medicines-you-are-taking-are-perfectly-alright-then revisit your position!
q. swine-flu-the-difficlulties-we-still-face-while-tackling-the-outb
r. dump-this-useless-information-into-a-garbage-bin-if-you-really-care about evidence based medicine
s. don-t-ignore-these-head-injuries
u. allergic- agony-caused-by-caterpillars-and-moths
General science:
a.why-do-water-bodies-suddenly-change-colour
b. don-t-knock-down-your-own-life-line
c. the-most-menacing-animal-in-the-world
d. how-exo-planets-are-detected
e. the-importance-of-earth-s-magnetic-field
f. saving-tigers-from-extinction-is-still-a-travail
g. the-importance-of-snakes-in-our-eco-systems
h. understanding-reverse-osmosis
i. the-importance-of-microbiomes
j. crispr-cas9-gene-editing-technique-a-boon-to-fixing-defective-gen
k. biomimicry-a-solution-to-some-of-our-problems
5. the-dilemmas-scientists-face
6. why-we-get-contradictory-reports-in-science
7. be-alert-pseudo-science-and-anti-science-are-on-prowl
8. science-will-answer-your-questions-and-solve-your-problems
9. how-science-debunks-baseless-beliefs
10. climate-science-and-its-relevance
11. the-road-to-a-healthy-life
12. relative-truth-about-gm-crops-and-foods
13. intuition-based-work-is-bad-science
14. how-science-explains-near-death-experiences
15. just-studies-are-different-from-thorough-scientific-research
16. lab-scientists-versus-internet-scientists
17. can-you-challenge-science?
18. the-myth-of-ritual-working
19.science-and-superstitions-how-rational-thinking-can-make-you-work-better
20. comets-are-not-harmful-or-bad-omens-so-enjoy-the-clestial-shows
21. explanation-of-mysterious-lights-during-earthquakes
22. science-can-tell-what-constitutes-the-beauty-of-a-rose
23. what-lessons-can-science-learn-from-tragedies-like-these
24. the-specific-traits-of-a-scientific-mind
25. science-and-the-paranormal
26. are-these-inventions-and-discoveries-really-accidental-and-intuitive like the journalists say?
27. how-the-brain-of-a-polymath-copes-with-all-the-things-it-does
28. how-to-make-scientific-research-in-india-a-success-story
29. getting-rid-of-plastic-the-natural-way
30. why-some-interesting-things-happen-in-nature
31. real-life-stories-that-proves-how-science-helps-you
32. Science and trust series:
a. how-to-trust-science-stories-a-guide-for-common-man
b. trust-in-science-what-makes-people-waver
c. standing-up-for-science-showing-reasons-why-science-should-be-trusted
You will find the entire list of discussions here: http://kkartlab.in/group/some-science/forum
( Please go through the comments section below to find scientific research reports posted on a daily basis and watch videos based on science)
Get interactive...
Please contact us if you want us to add any information or scientific explanation on any topic that interests you. We will try our level best to give you the right information.
Our mail ID: kkartlabin@gmail.com
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa 9 hours ago. 1 Reply 0 Likes
Rheumatoid arthritis is an autoimmune disease that causes pain, swelling and stiffness when the immune system attacks the synovium, the tissue lining the joints. Over time, this inflammation can damage cartilage, bone and surrounding…Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa 12 hours ago. 1 Reply 0 Likes
Behavioural insulation is a psychological and sociological concept describing how private technological fixes—such as air conditioning—shield individuals from immediate environmental discomfort, which in turn weakens their motivation to support…Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa yesterday. 1 Reply 0 Likes
Q: Is it a scientist's responsibility to correct people when they say things that are factually wrong?Krishna: This is the situation I face day in and day out.I, as a highly qualified person of science, have to deal with people who are unaware of…Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa yesterday. 1 Reply 0 Likes
Q: Are titanium and enamel coated iron cookware safe?Krishna:High-quality enamel cookware from reputable brands is completely safe. The coating is made of melted glass (porcelain enamel), meaning it is non-toxic, inert, and free from harmful…Continue
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Female gut muscles reshape to meet the demands of reproduction, preclinical study suggests
Organs don't just grow in early life; they can change in response to physiological or environmental challenges in adulthood. Researchers have now identified an active role for the intestinal muscles in remodelling the gut after reproduction.
Reproduction remodels intestinal smooth muscle in female fruit flies and mice, elongating contractile filaments without increasing cell number and reducing contractility. In flies, mating lowers juvenile hormone receptor signalling in muscle, permitting growth, while epithelial growth is promoted by the same hormone. These changes may enhance nutrient absorption during reproduction.
Alessandro Mineo et al, The sex and reproductive plasticity of intestinal muscles instruct gut size, Cell (2026). DOI: 10.1016/j.cell.2026.07.024
For decades we have known that rheumatoid arthritis selectively targets particular joints, but one of the great unanswered questions is why?
These new findings suggest that the answer lies not only in the immune system but also in the tissues themselves. The cellular and structural characteristics established during development may help determine where inflammation takes hold later in life.
Researchers found that the developing joints were made up mainly of structural cells, including cartilage-forming cells and fibroblasts, rather than immune cells. They then investigated what drives these cells to develop into their different specialized forms.
One population that drew particular attention was the synovial lining fibroblasts. These cells produce substances that lubricate the joint to help protect and maintain smooth movement, yet they can also behave abnormally in arthritis. Further analysis suggested that the lining may come from two different sources, both the cartilage and surrounding joint fibroblasts.
The process appeared to be influenced by specific localized signals such as low oxygen levels. This may provide insights into the mechanisms driving their function and help identify ways to restore their normal protective role in disease.
The researchers found important differences between the PIP and DIP joints. A bespoke image analysis tool showed that PI16+ fibroblasts that were enriched in the PIP joints were specifically located around blood vessels and at sites where tendons and ligaments connect with surrounding tissue.
They also showed that PI16+ fibroblasts responded differently to inflammatory signals compared with other fibroblast populations. While PI16+ fibroblasts shared a common pro-inflammatory response with PI16- fibroblasts, they also displayed distinct changes in pathways linked to tissue organization and immune regulation.
The team also identified striking structural differences between the joints. Using high-resolution 3D imaging at Diamond Light Source at the Harwell Science and Innovation Campus, they found that the synovial tissue surrounding PIP joints was larger and organized differently from that seen in joints that are not usually affected by rheumatoid arthritis. Together, these cellular and structural differences may help explain why inflammation develops in some locations but not others.
Together, the findings suggest that the tendency of rheumatoid arthritis to affect particular joints may be shaped by tissue architecture established during development. Rather than being determined by immune activity alone, vulnerability to inflammation may depend on the local cellular and structural environment of each joint.
Sarah Davidson et al, The embryonic origins of site-specific arthritis, Nature Immunology (2026). DOI: 10.1038/s41590-026-02542-2
Arthritis origins may begin before birth
Researchers have discovered that some joints may be more susceptible to inflammatory arthritis before birth, offering new insight into why rheumatoid arthritis attacks particular joints while sparing others.
"The embryonic origins of site-specific arthritis", published in Nature Immunology, provides new insight into one of the long-standing mysteries of rheumatoid arthritis: why inflammation targets certain joints while leaving others relatively unaffected.
Rheumatoid arthritis is an autoimmune disease that causes pain, swelling and stiffness when the immune system attacks the synovium, the tissue lining the joints. Over time, this inflammation can damage cartilage, bone and surrounding tissues.
The study compared two finger joints that differ in their susceptibility to rheumatoid arthritis. Researchers compared proximal interphalangeal (PIP) joints, which are commonly affected by the disease, and distal interphalangeal (DIP) joints near the fingertips, which are usually spared.
They found that the PIP joints contained larger synovial volumes and higher levels of PI16-positive (PI16+) fibroblasts, a specialized type of connective tissue cell. These differences were established before birth, suggesting that the tissues themselves may play an important role in determining where disease occurs.
The embryonic origins of site-specific arthritis. Credit: NDORMS
Part 1
What if there's a star inside a black hole?
A dark-matter halo with an exotic pressure–density relation can mathematically surround a neutron star with an event horizon while leaving the star nonsingular and structured inside. Such configurations exist only within a narrow halo-density range and require dark-matter densities far above expected astrophysical values, so they remain theoretical.
Chen Tan et al, A Neutron Star Hidden Inside a Black Hole, arXiv (2026). DOI: 10.48550/arxiv.2608.06224
What made the visible-eyes videos different? To answer that question, researchers used EEG readings. The adult speaker's EEG readings were recorded in advance during video production, while the babies wore EEG caps as they watched the videos. Analyzing brain signals allowed researchers to determine the degree of matching between the adult's and baby's brain activity.
Researchers found that adult-to-infant neural coupling—the one-way matching of adult brain waves to infant brain waves—predicted the infants' ability to learn. Only adult→infant neural coupling, not the infants' own rhythmic brain activity, predicted learning ability.
"The key insight," the authors point out, "is that speaker-to-listener neural coupling is a better predictor of selective learning than infants' own neural activity." Statistical tests supported this: Once researchers accounted for the strength of adult-to-infant coupling, the direct effect of gaze on learning essentially vanished. In short, eye contact drove a brain-to-brain signal that explained the learning boost.
Wei Zhang et al, Adult-to-infant unidirectional neural coupling mediates selective social learning in infants from the United Kingdom and Singapore, Nature Communications (2026). DOI: 10.1038/s41467-026-75831-x
Part 2
Eye contact may help babies learn
Have you ever noticed how babies get hooked the moment someone makes eye contact with them? That eye contact is not only cute; it may also send a powerful message to a baby. For years, scientists have been investigating whether social messages like eye contact and baby talk do more than engage babies. They may help synchronize babies' brains with adult brain waves. But the biggest question remained: Does it actually help babies learn?
A new study, published in Nature Communications, offers an answer. Scientists found that 9-month-old infants were able to learn a novel language when the face in a video looked directly at them with fully visible eyes.
Using electroencephalography, or EEG, brain scanning, scientists detected a kind of "neural handshake" between the adult's and infant's brains, synchronized through eye contact.
The results showed how vital eye contact may be for babies' learning. When the person in the video made eye contact while their eyes were fully visible, the infants succeeded in learning the invented language. They recognized which combinations of sounds formed "words" and demonstrated this understanding by spending more time looking at novel sound combinations than ones they had heard before.
The findings provide support for a key assumption of developmental psychology: "Adults curate infants' information selection through ostensive marking of valuable content using social cues such as eye contact." In other words, adults not only provide information for infants but also help them select what to learn.
However, when the speaker's eyes were partly obscured by dark glasses or entirely covered by opaque ones, the babies did not learn. It was as if the switch for learning was off. This was not because they stopped paying attention; the babies looked at the screen for roughly the same amount of time whether the speaker's eyes were visible or not.
Although their eyes were glued to the screen, hiding the speaker's eyes appeared to "scramble" the message, and the participants did not acquire the new language.
The intriguing pattern held for all infants, regardless of whether they were from Singapore or the UK. Babies in both groups were selective learners only when learning from a speaker making visible eye contact.
Part 1
Too Cool To Care? Air Conditioning Weakens Climate Action Support: behavioural insulation
Study finds that the more people rely on air conditioning to stay cool, the less likely they are to support broader efforts to cool cities and cut energy use.
As global temperatures rise, air conditioning has become essential to protect people from extreme heat. But a new study has found that widespread reliance on private cooling may be creating a paradox in cities: the more effectively households cool themselves indoors, the less urgency they feel to support the broader climate measures needed to cool cities.
The study has found that households that depend heavily on air conditioning are less likely to adopt energy-saving habits or support community-wide heat mitigation strategies. The findings, published in Sustainable Cities and Society, describe this phenomenon as “behavioural insulation”, where effective indoor cooling dampens the perceived urgency to address heat through collective action.
Heat awareness does not always change behaviour
To explore how people respond to rising temperatures, the researchers analysed survey responses from 967 adults across 416 households in Singapore, together with spatial heat indicators and household electricity consumption records.
The results revealed a clear divide. People who felt more affected by heat were more likely to discuss climate issues and encourage others to act. But this rarely translated into lower household energy use. Those who relied most on air-conditioning tended to consume more electricity and were less likely to adopt energy-saving habits.
One of the key findings is that experiencing heat does not automatically translate into lower-energy behaviour or stronger collective climate action.
The researchers also observed that heavy air-conditioning users showed less support for public heat mitigation measures such as expanding urban greenery, increasing tree cover and improving neighbourhood shading, even while spending more on keeping their own homes cool.
According to the researchers, the findings point to something more systemic than individual indifference — a gradual shift in which widespread private cooling may weaken the behavioural conditions associated with support for collective climate action.
The researchers say they are not arguing against air-conditioning, as cooling is essential for comfort, health and wellbeing. Rather, they argue that cooling should be complemented by urban design strategies which include shading, greening, improved ventilation, reflective building materials and climate-sensitive planning, that reduce outdoor temperatures in the first place.
https://www.sciencedirect.com/science/article/pii/S2210670726003318...
Growing rice on the moon
The Moon's surface is a tough place to farm. It has no organic material, and the nitrogen sources that plants need, like ammonia and nitrate, are essentially absent.
Scientists in Japan have created a portable plasma device that can turn air into fertilizer, helping rice grow in simulated lunar soil.
It may sound like science fiction, but a team of researchers from Japan have made it possible to harvest fresh rice on lunar soil.
The researchers developed a portable plasma device that converts ordinary air into nitrogen fertilizer, When applied to soil designed to simulate the Moon's surface, it neutralized the soil's harsh alkalinity and released trapped nutrients like calcium, magnesium and potassium. This enabled the researchers to grow rice seedlings in the lunar soil.
Beyond its off-world potential, the researchers note that their low-power, fossil-fuel-free technology could help make farming on Earth more sustainable too.
Female Brains Wake Up from Anesthesia Differently Than Male Brains
Ketamine anesthesia drives female-specific microglial activity in mice, offering insight about the anesthetic and highlighting the need to study sex as a biological variable.
All over the world, doctors perform more than 300 million surgeries each year. While some procedures require local anesthetics, other ones and people undergoing them go under general anesthesia .
While doctors must ensure that patients go under anesthesia for the procedure, it is equally important that they wake up after the surgery. Researchers have previously found that male and female animals respond differently to the general anesthetic ketamine, but they did not fully understand its underlying molecular basis.
Now, scientists found that sex differences in ketamine recovery arise due to distinct dynamics of neurons and immune cells called microglia in male and female brains. Their findings, published in Science Advances, offer a deeper understanding of ketamine anesthesia recovery and highlight the need to study sex as a biological variable.
Genome study reveals centromeres as one of the fastest-changing regions in human DNA
A centromere is a specific region on a chromosome that ensures that, when a cell divides, the chromosome separates accurately so each new cell receives the correct amount of genetic material. Despite their essential role, centromeres remain one of the last major blind spots in the human genome.
A recent study published in Nature set out to reveal what had been hidden inside human centromeres, using advanced long-read sequencing and custom-built computational tools to piece together 2,110 complete centromeres. The researchers sampled individuals from 28 population groups across five continents, then compared their centromeres with 5,747 assembled by the Human Pangenome Reference Consortium to trace how these regions differ and evolve.
They discovered 226 major centromere haplotypes—distinct genetic patterns—and 1,870 new genetic variants. By studying a four-generation family, they were able to follow centromeres as they changed from parent to child, tracking genetic changes across generations.
They discovered that centromeres mutated faster than any other part of the human genome, with certain chromosomes accumulating changes at up to 20 times the rate of others.
The kinetochore attachment site, the anchor point where the chromosome attaches to the cell machinery during division, mutated faster than any other part.
The results revealed that centromeres have far more genetic and structural diversity than previously appreciated. When a cell divides, it attaches each chromosome to a protein handle called a kinetochore. For years, scientists assumed there was only one handle per chromosome.
This sequencing found that some centromeres break that rule: Around 6% have two kinetochores, and about 1% have three. Even more importantly, these multi-handled centromeres run in families, passing from parents to children across generations.
While mapping centromeres, the researchers noticed something remarkable: On chromosomes 10 and 21, some people carried centromeres that were separated by more than a million years of evolution from the other modern versions.
Comparing these sequences with ancient genomes indicated that modern humans outside Africa might have inherited these unique centromeres from ancient human relatives through interbreeding with Neanderthals and Denisovans.
Based on the findings, the researchers proposed a kind of evolutionary tug-of-war between centromere DNA and its binding proteins. The anchor point mutates so often that they keep changing both the DNA sequence and the chemical markers that control how it's used, driving rapid evolution in these critical regions of our genome.
Shenghan Gao et al, A global view of human centromere variation and evolution, Nature (2026). DOI: 10.1038/s41586-026-10841-9
© 2026 Created by Dr. Krishna Kumari Challa.
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