Blue Light (Credit: Canva)
Blue light emitted by devices like smartphones, computers, and televisions is becoming a major factor disrupting our sleep cycles. Research reveals that a significant number of Americans use electronic devices close to bedtime, contributing to poor sleep quality. Reducing exposure to blue light, particularly in the evening, is a simple yet effective way to help your body prepare for restful sleep.
Circadian rhythms are 24-hour cycles that control essential bodily functions, including sleep. Light is the primary factor that aligns these rhythms with day and night. Historically, exposure to sunlight during the day helped set our body clocks, signaling when to be awake and when to sleep. However, the widespread use of artificial lighting and electronic devices has introduced more light exposure after dark, disrupting these natural cycles.
Blue light, in particular, has the strongest impact on circadian rhythms. During daylight hours, blue light helps us feel alert by stimulating the brain, raising body temperature, and increasing heart rate. But in the evening, exposure to blue light can confuse the body’s internal clock, suppressing melatonin—the hormone responsible for making us feel sleepy. As a result, our brains may remain in “daytime mode,” preventing us from winding down for the night.
Persistent disruption of circadian rhythms can lead to a range of health issues, including metabolic disorders, poor mental health, and increased risk for conditions like depression and anxiety. Furthermore, the inability to sleep well at night affects cognitive performance, mood, and overall well-being. Chronic exposure to blue light in the evening may significantly contribute to these negative health outcomes.
Many common devices in our daily lives emit blue light, including:
- Smartphones and tablets
- Computer monitors and laptops
- Televisions and e-readers
- LED and fluorescent lighting
- Video game consoles
To reduce the effects of blue light on your sleep, here are some practical strategies:
1. Turn off screens before bed: Try to avoid using electronic devices at least two to three hours before bedtime. Reducing screen time helps prevent blue light from interfering with melatonin production.
2. Adjust your lighting: Dim your home’s lights or switch to warmer-toned lighting in the evening. You can also use lamps with red or orange light, which are less likely to impact your circadian rhythms.
3. Night mode settings: Many smartphones and computers have a "night mode" feature that reduces blue light emission. Make use of these features to limit exposure in the hours leading up to bedtime.
4. Blue light-blocking glasses: Special glasses designed to filter out blue light may be helpful for some individuals. These glasses can block or reduce the melatonin-suppressing effects of blue light.
5. Apps for blue light reduction: There are several smartphone and computer apps available that reduce blue light emission, allowing you to use your devices before bed without disturbing your sleep.
6. Create a sleep-friendly environment: If you can’t control light sources in your bedroom, consider using an eye mask to block out ambient light and promote better sleep.
Credit: AI
A new study has revealed an alarming trend in stroke cases in the past three decades. Strokes have often been associated as an age-related disease. But according to a study published in Neurology, the rate of stroke among adults aged 20 to 54 has nearly doubled between 1993-94 and 2020.
Researchers examined data from the Greater Cincinnati and Northern Kentucky Stroke Study and identified 2,076 first-time strokes among people in this age group.
The rate of stroke rose from 33.9 cases per 100,000 person-years in 1993-94 to 62.2 in 2020. The increase was largely driven by ischemic stroke, which happens when a blood vessel in the brain becomes blocked.
The study points towards an alarming pattern, especially among younger age groups. It raises the question of why are strokes are occurring earlier in life?
The researchers found that several risk factors of stroke became more common among younger people. These included lifestyle disorders like high blood pressure, diabetes and atrial fibrillation, an irregular heart rhythm that can increase the risk of blood clots.
Apart from lifestyle diseases, researchers also saw an increase in substance use. Among younger adults who had suffered a stroke, substance use rose from 4.6% in 1993-94 to 40.2% in 2020. Much of this increase was linked to marijuana use.
However, the study does not prove that these factors caused the overall rise in stroke rates. Researchers did not have comparable information from people who had not suffered a stroke, making it impossible to determine whether the changing risk factors directly explain the surge in cases.
According to the study, the increase was concentrated mainly in ischemic strokes. The rate of ischemic stroke among 20- to 54-year-olds rose from 23.8 to 47.3 cases per 100,000 person-years during the study period.
Researchers did not observe a similar increase in intracerebral haemorrhage, which involves bleeding within the brain, or subarachnoid haemorrhage, which involves bleeding around the brain.
An ischemic stroke occurs when a blood vessel supplying part of the brain becomes blocked, cutting off oxygen and nutrients. Brain cells can start dying within minutes, which is why stroke treatment is highly time-sensitive.
The warning signs of stroke can appear suddenly. They include:
The commonly used FAST acronym stands for Face, Arm, Speech and Time. If these symptoms appear, emergency medical care should be sought immediately.
Also read: UK Student Nearly Dies After Accidental Paracetamol Overdose: Why It Can Cause Liver Failure
This is another interesting finding. Although stroke became more common among younger adults, the study found that the 30-day death rate declined modestly, from 11.7% in 1993-94 to 9.4% in 2020 after adjusting for age, race and sex.
That means more younger people may be surviving strokes but potentially living with their long-term consequences.
The researchers say the findings highlight the importance of identifying and managing stroke risk factors earlier in adulthood. More research is still required to understand what is behind the changing pattern and how it can be prevented.
Credit: SWNS/Canva
A 20-year-old UK student nearly died after accidentally taking two over-the-counter medicines that both contained paracetamol.
Riley Lubas, a first-year University of Bath student, developed a bad cold in March 2025. Days later, he developed severe stomach pain and was found to have serious liver damage.
Doctors initially suspected hepatitis, but Riley's condition rapidly worsened. He became delirious and hallucinated as his liver began to fail. His lungs and kidneys also stopped working, leaving him in multiple organ failure.
He was placed on life support and dialysis before being transferred to King's College Hospital in London, where doctors identified the cause after asking about his paracetamol use.
"It didn't necessarily help with a solution, but it was good to know the cause at last," his father, Chris, said.
Riley was assessed for a liver transplant after his parents were warned that some of the damage could be "irreversible". But his liver began to recover.
"We watched Riley's situation closely for a couple of days, and he continued to improve, until he was taken off dialysis and life support just a week later."
Riley spent six weeks at King's College Hospital and later moved to an ICU in Newport. After a tracheostomy and multiple organ failure, he had to relearn how to speak and walk.
"But just seeing him up and alive again was unbelievable," his father said.
Riley has since recovered and returned to work as a bartender.
"It was mad how quickly it all escalated," he said.
"Because I was already sick, when my stomach hurt I just assumed I'd caught a stomach bug, so I didn't notice the pain in my liver specifically."
"I'm just so grateful that I was able to come out the other end alright."
Read More: Are GLP-1 Drugs Safe for Children? Study Finds Nutritional Deficiency in Nearly 17% Within a Year
Riley's case highlights the risk of taking multiple medicines without realizing they contain the same active ingredient.
Dr Will Mackintosh, a GP and chairman of RCGP Cymru Wales, said accidental paracetamol overdose in young people was "a fairly rare occurrence", but warned that people can inadvertently take two products containing paracetamol, BBC reported.
The Medicines and Healthcare products Regulatory Agency (MHRA) has warned that "simple misunderstandings" about medicines can have serious consequences, highlighting the importance of checking the ingredients beforehand.
The Royal College of General Practitioners Cymru Wales also advised people to "read the label carefully" before taking medicines.
For most adults, the usual dose is 500 mg to 1,000 mg at a time, with at least four hours between doses.
The usual maximum is 4,000 mg in 24 hours, although some people may need a lower dose because of their weight, liver or kidney problems, alcohol use or other health conditions.
The important point is to count paracetamol from all medicines, including cold and flu products.
The liver breaks down paracetamol. When too much is taken, a toxic substance can build up and damage liver cells. Severe overdose can lead to liver failure and death.
Early symptoms may include nausea, vomiting and stomach pain, but serious poisoning may not cause obvious symptoms immediately. Later signs can include jaundice, confusion and extreme sleepiness.
If you think you have taken too much paracetamol — including by combining medicines that contain it — seek urgent medical advice immediately.
Do not wait for symptoms. Early treatment can reduce the risk of serious liver damage.
Always check the active ingredients on painkillers and cold and flu medicines before taking them together.
Credit: AI
Doctors at a Mumbai hospital successfully performed a complex coronary angioplasty on an elderly diabetic patient with severely calcified coronary arteries using an advanced technique called Intravascular Lithotripsy (IVL), helping restore blood flow to the heart despite multiple procedural challenges.
The patient, who had been experiencing symptoms suggestive of coronary artery disease, was found to have extensive calcium deposits in the coronary arteries. Further evaluation also revealed poor blood flow in the leg arteries, making conventional vascular access for the procedure difficult.
Coronary artery calcification is commonly seen in elderly individuals and people with long-standing diabetes. Excessive calcium makes the arteries rigid and narrow, often making routine angioplasty technically challenging and increasing the risk of incomplete stent expansion, which can affect long-term outcomes
Severely calcified coronary arteries remain one of the biggest challenges in interventional cardiology. The calcium makes the arteries extremely rigid, making it difficult to properly expand the stent. In such situations, conventional angioplasty alone may not be sufficient.
Despite the patient’s complex anatomy and poor peripheral vascular access, the team successfully performed the procedure through the radial artery in the wrist, avoiding access through the diseased leg vessels.
Also read: Stopping Ozempic, Wegovy, Mounjaro Linked To 22% Higher Heart Attack, Stroke Risk: Study
To prepare the artery for stenting, doctors used Intravascular Lithotripsy (IVL), an advanced technology that delivers controlled sonic pressure waves to fracture deep calcium deposits within the artery wall. This allows the blood vessel to expand more effectively, enabling safe and optimal placement of the coronary stent.
IVL works on a principle similar to the technology used for breaking kidney stones, but it is specifically designed for heavily calcified coronary arteries. By modifying the calcium before placing the stent, we can achieve better stent expansion, reduce procedural complications and improve long-term outcomes in appropriately selected patients.
The procedure was completed successfully, with excellent blood flow restored to the affected coronary artery. The patient recovered well and was discharged in a stable condition.
Doctors say the case highlights how newer technologies are expanding treatment options for patients who were once considered extremely difficult to treat due to severe coronary calcification.
Advanced techniques such as IVL are transforming the management of complex coronary artery disease, particularly in elderly diabetic patients, allowing us to safely treat lesions that would have been significantly more challenging with conventional techniques alone.
The case underscores the growing role of advanced interventional cardiology in treating complex heart disease while minimising procedural risk and improving patient outcomes.
© $2026 Times Horizon Private Limited