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: 15 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 yesterday. 21 Replies 0 Likes
How can you achieve these targets in sport: "Faster, Higher, Stronger"?Very often people in this part of the world wonder why some developed countries do very well in Olympics and other International sporting competitions and get the maximum number…Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa yesterday. 6 Replies 0 Likes
In medicine, a nocebo (Latin for "I shall harm") is an inert substance that creates harmful effects in a patient. The nocebo effect is the adverse reaction experienced by a patient who receives a nocebo. Conversely, a placebo is an inert substance…Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa yesterday. 1 Reply 0 Likes
The deadly H5N1 strain of bird flu has now spread from migratory birds to infect resident Australian birds. Clusters of dead birds have …Continue
Started by Dr. Krishna Kumari Challa. Last reply by Dr. Krishna Kumari Challa yesterday. 2 Replies 2 Likes
I get very interesting questions. The ones that keep awake the scientist in me always. Recently I got one such question. One student asked me, " Can ground water be found using coconuts?" It seems he watched a video on line and he also sent me the…Continue
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Act now on microplastic risks, businesses urged
All available evidence points to both types of microplastics being pervasive and persistent. Evidence is emerging that they're implicated in harm to human health and global ecosystems."
The white paper, "Microplastics: Preparing for Australia's Next Regulatory Shift," highlights evidence that global plastic production now exceeds 450 million tonnes (496 million tons) per year and could almost triple to 1.2 billion tonnes (1.3 billion tons) under a business-as-usual scenario.
Microplastics are pervasive in products, supply chains and ecosystems, with emerging evidence of human-health and environmental harm. Plastic production exceeds 450 million tonnes annually and may nearly triple without intervention. Businesses face increasing regulatory, reputational and litigation risks, requiring monitoring, reporting and reduction of primary and secondary microplastic pollution.
As the science and engineering behind industrial monitoring advance, businesses will be expected to track the level of microplastics in their products and control secondary microplastic pollution."
The white paper highlights many actions businesses can take now to proactively manage risks related to microplastic exposure.
Increased monitoring and transparent reporting, circular business models, recycled-content products and materials innovation can build trust and generate efficiencies in the face of consumer concern.
Businesses that communicate credibly about their microplastic footprints and align marketing practices with actual reduction commitments will be better placed to build durable brand equity.
The question is not whether supply chains including plastics will change but how quickly, and who will lead it.
Martina Linnenluecke et al, Microplastics: Preparing for Australia's Next Regulatory Shift, University of Technology Sydney (2026). DOI: 10.71741/4pyxmbnjaq.32583060
In this study, scientists analyzed a health records database of more than 10 million individuals from more than 5 million two-child families. The data were collected over two decades from commercial insurance claims.
The team screened for 569 disease categories using two approaches. First, they compared 1.6 million first-borns with second-borns from different families who were matched by sex, birth year, location and similar parental ages. They also directly compared first-born and second-born siblings within the same household across all families. This helped account for shared genetics, parenting and home environments.
Of 418 diseases with enough cases to analyze, the scientists found that 150 showed significant birth-order associations. First-borns were more often diagnosed with neurodevelopmental and some mental health conditions, including autism and ADHD, tics and Tourette syndrome, depression and anxiety. They also had higher diagnosis rates for allergy-related conditions like asthma, allergic rhinitis and food allergies.
Meanwhile, second-born children more often had diagnoses of substance abuse, migraines, digestive issues like gastritis, shingles and some joint conditions. "Birth order is associated with disease risk more broadly than previously appreciated," the study authors wrote.
The researchers suggested several possible reasons birth order might influence disease risk. One possibility is that first-time parents may watch their first child more closely, leading to earlier diagnoses of conditions like autism and ADHD.
Second-borns may also be exposed to everyday microbes brought home by older siblings, which may help their immune systems develop greater tolerance and lower the risk of allergies. For behavioral risks like substance abuse, younger siblings may also be exposed to older peer groups at an earlier age.
"The most conservative interpretation is that neurodevelopmental associations probably reflect a mixture of pregnancy-order biology, parental surveillance, diagnostic timing, and residual confounding rather than one uniform mechanism."
The findings show that these statistical links are clear across millions of people, but the actual risk difference for any single child is quite small.
It is also worth noting that these are statistical associations and cannot be interpreted as direct evidence that birth order causes a particular disease.
Benjamin Kramer et al, Birth order and disease risk across the human phenome, Nature Health (2026). DOI: 10.1038/s44360-026-00177-z
Brain scans reveal tau buildup in late-onset psychosis
Hallucinations and delusions that appear for the first time in midlife or later are often treated as psychiatric symptoms whose biological cause is unclear. The study, published in Molecular Psychiatry suggests that, for many patients, these symptoms may be linked to brain changes also seen in dementia.
Among 37 people with psychosis onset after age 40, 65% had tau PET positivity and 35% had amyloid positivity, versus 15% and 2% of 47 healthy controls. Tau patterns included amyloid-positive Alzheimer-type and amyloid-negative forms; greater parietal tau in amyloid-positive patients correlated with poorer executive function.
Using positron emission tomography, or PET, the research team found that about 65% of patients who developed psychosis after age 40 showed abnormal buildup of tau, a protein associated with Alzheimer's disease and other forms of dementia. By comparison, tau PET positivity was seen in about 15% of healthy older controls. The study also found amyloid PET positivity in 35% of patients, compared with 2% of controls.
The findings provide the first in vivo evidence that diverse tau-related brain changes may be involved in late-onset psychosis. Until now, earlier epidemiological and postmortem studies had suggested a possible relationship between late-life psychotic symptoms and neurodegeneration, but direct evidence in the living brain had been limited.
Patients can show the same symptoms, such as hallucinations or delusions, but their clinical course and response to treatment can be very different.
Manabu Kubota et al, High prevalence of tau pathologies in late-onset psychosis: A PET study, Molecular Psychiatry (2026). DOI: 10.1038/s41380-026-03749-3
Social determinants of health linked to more fatalistic cancer beliefs
New research shows that greater cumulative exposure to adverse social determinants of health is associated with beliefs that cancer is unavoidable or a death sentence. This can influence whether people choose to be screened for common cancers or seek treatment after a diagnosis.
Among 1,400 respondents, greater cumulative exposure to adverse social determinants of health was associated with stronger fatalistic beliefs that cancer is unavoidable or inevitably fatal. Poverty, housing insecurity, lack of insurance, discrimination, and social isolation may contribute to reduced screening follow-up and treatment engagement.
Jaitri Joshi et al, Effect of social stressors and social determinants of health (SDOH) on cancer beliefs: Analysis of a cancer center catchment area, Journal of Psychosocial Oncology (2026). DOI: 10.1080/07347332.2026.2666535
Like Zika, Oropouche virus can also affect the brains of unborn babies
Oropouche virus infected human neural stem cells and brain organoids, reducing proliferation, disrupting tissue organization, and increasing inflammatory and cell-death pathways. Historical and recent strains caused similar effects, suggesting inherent neurodevelopmental risk. Organoid results support biological plausibility for congenital abnormalities but do not establish pregnancy outcomes.
Gabrielle Brum et al, Microcephaly-like phenotype triggered by novel reassortant and prototypic Oropouche virus strains in brain organoids, eBioMedicine (2026). DOI: 10.1016/j.ebiom.2026.106408
Forest floors reveal overlooked seed dispersers: Slugs, beetles and crabs spread viable seeds
A review by researchers has revealed that tiny ground-dwelling invertebrates are overlooked but important seed dispersers, challenging the traditional focus on birds and mammals and offering new insights into forest regeneration and biodiversity conservation.
A synthesis of 43 publications documented viable seed dispersal by at least 51 invertebrate species across 186 plant taxa. Slugs, earthworms, beetles, crickets and crabs can deposit seeds in favourable microsites, sometimes enhancing germination. This short-range dispersal may support regeneration where vertebrate dispersers decline.
The findings highlight an important but underappreciated pathway of seed dispersal that may help sustain plant regeneration, especially in fragmented or degraded ecosystems where larger animal dispersers are declining.
Si-Chong Chen et al, Invertebrate endozoochory: An overlooked pathway of seed dispersal, Trends in Plant Science (2026). DOI: 10.1016/j.tplants.2026.06.004
Seaweed-derived coating keeps strawberries fresher than a fridge
Researchers have developed an edible, seaweed-derived coating that can keep strawberries fresh for at least four days at room temperature, outperforming uncoated berries stored in the refrigerator.
An edible agar–zinc–tannic acid coating reduced moisture loss, maintained firmness, and preserved vitamin C and antioxidants in strawberries. Coated berries remained mold-free for ≥4 days at room temperature and ≥6 days refrigerated, exceeding untreated fruit. The coating showed antibacterial activity, no intestinal-cell toxicity, and a lower estimated carbon footprint than refrigeration.
Published in the Journal of Agricultural and Food Chemistry, the findings offer a simple approach for extending produce shelf life and reducing reliance on refrigeration across the supply chain. Maintaining cold temperatures from farm to warehouse to truck to grocery store requires significant energy and infrastructure, especially for fresh produce transported over long distances.
The coating is made from agar, a substance derived from red seaweed that is widely used as a vegan alternative to gelatin and as a thickener in foods like puddings and jellies. On its own, agar forms a thick gel. But when researchers combined it with zinc, an essential nutrient, and tannic acid, a naturally occurring plant compound found in grapes and tea, the material transformed—self-assembling into tiny microparticles that create a thin protective layer around the fruit.
When dipped in the solution, strawberries, grapes and apple slices emerged with a thin, edible coating that dried completely clear.
The breakthrough could help address one of the food industry's most persistent challenges: reducing food waste.
Ivy Chiu et al, Self-Assembled Metal–Phenolic–Agar Microparticle-Derived Coatings Enable Scalable and Sustainable Fresh Produce Preservation, Journal of Agricultural and Food Chemistry (2026). DOI: 10.1021/acs.jafc.6c06531
What's in the dust? Study finds hidden metals in city streets
If you're in an urban area with strong winds, chances are you are breathing in more than a little dust. You could be exposed to metals from cars, construction sites or pesticides used decades ago.
Road dust from cities contained toxic metals, including lead, arsenic, and cadmium, in one-third of samples. Metal concentrations varied with legacy industrial activity, pesticide use, and port operations. Average concentrations remained below health recommendations, but dry conditions may increase exposure.
These dust samples are not from the middle of the highway. They were collected at public spaces, such as parks, schools and downtown areas where residents are likely to be exposed.
Minh Tri Truong et al, Tracing spatial mid-size Eastern U.S. cities road dust pollution: insights from source apportionment and health risk assessment, Environmental Science and Pollution Research (2026). DOI: 10.1007/s11356-026-38034-x
Reducing night lights in cities has ecological effects
Artificial light at night (ALAN) can cause plants to open their buds and sprout leaves earlier in the spring. ALAN can also cause trees to delay changing the colour of their leaves in the fall. These changes can ripple through ecosystems, affecting pollinators, herbivores and insects that lay eggs on plants. ALAN also disorients many migrating birds and other animals.
Some cities have attempted to reduce overall ALAN using techniques such as shielding fixtures, implementing adaptive dimming, reducing light output and choosing warmer colour temperatures.
Urban light-mitigation measures in New York City and Washington, D.C., reduced artificial light at night, particularly blue wavelengths, unlike nearby comparison cities. Reduced lighting was associated with less advanced spring green-up and less delayed autumn leaf coloration, indicating potential mitigation of ALAN-driven shifts in plant phenology.
The authors found that New York City and Washington, D.C., showed a reduction in ALAN after the policies were implemented, especially in the blue band, while Newark and Philadelphia did not.
Plant growth cycles also differed between the cities. ALAN typically advances the start of the growing season and delays the end of the season, but in cities with mitigation policies, the start of the season is several days less advanced than it would otherwise be, as measured by the emergence of new green growth visible in satellite images. Cities with mitigation policies also show a transition to fall colour that is less delayed than in cities without such policies.
According to the researchers, the findings demonstrate the feasibility of using high-resolution satellite images to identify relative differences in ALAN levels and point toward ways in which this tool could support urban ecological research.
Mitigating artificial light at night: effectiveness of policies and implications for plant phenology, PNAS Nexus (2026). DOI: 10.1093/pnasnexus/pgag237 academic.oup.com/pnasnexus/art … /5/8/pgag237/8750162
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