
AI for Early Disease Prediction: How Algorithms Detect Illness Before Symptoms
Can algorithms predict sickness before you feel it? Explore how AI is using smartwatch data and ECGs to detect diseases like Alzheimer's and AFib early.
Showing results for: "safely patient" (77 results)

Can algorithms predict sickness before you feel it? Explore how AI is using smartwatch data and ECGs to detect diseases like Alzheimer's and AFib early.

The tumor microenvironment (TME) is a complex and dynamic ecosystem composed of malignant cells, immune infiltrates, stromal elements, and vascular components that collectively influence tumor initiation, progression, immune escape, and therapeutic response. Traditional bulk transcriptomic approaches obscure this complexity by averaging gene expression across heterogeneous cell populations.

How a 150-year-old food industry technique became essential for creating stable biologics and inhaled medicines, transforming liquid drugs into life-saving powders.

Learn how data privacy affects daily technology use, the risks of oversharing personal information, and practical ways to stay protected online.

Stem cell therapy research is a promising area of interest for a number of scientists working to understand Parkinson’s disease and develop treatments for it. Read below to learn more about the advancements of stem cell therapy for Parkinson’s.

Tiny but powerful, basement membranes support cells, regulate barriers, and drive disease when disrupted—key players in health, aging, and cancer.

A Full Blood Count (FBC) is a blood test that measures different types of blood cells and related parameters, including red blood cells, white blood cells, platelets, haemoglobin, haematocrit and red blood cell indices. It can help healthcare professionals investigate conditions such as anaemia, infection, inflammation and certain blood disorders.

From innovative methods for cancer treatment to understanding the complexities of the human gut biome, these discoveries not only enhance our comprehension of the world but also lay the foundation for future groundbreaking advancements.

Haploinsufficient genes show how losing one gene copy can affect brain development, increasing risk for neurodevelopmental disorders and behaviour changes.

Explore how Carbon Capture, Utilization, and Storage (CCUS) works, its role in hard-to-abate industries, and how geology helps trap CO₂ to combat climate change.

Animal models have traditionally served as the cornerstone of drug safety evaluation; however, major translational challenges persist due to interspecies differences in physiology, metabolism, and genetic regulation. Many compounds demonstrating favorable toxicity profiles in animals later fail during human trials or are withdrawn post-marketing due to unforeseen adverse effects, especially hepatotoxicity and cardiotoxicity (Lee et al., 2025).

Understanding the human brain remains one of the greatest challenges in modern science. With billions of neurons forming intricate networks and constantly changing connections, the brain’s complexity makes it extremely difficult to study directly.

A magnificent nonsurgical radiofrequency (RF) therapy, which involves using energy waves to heat the dermis (the deep layer of the skin), has evolved as one of the finest treatments for skin tightening. The healthcare provider uses an electromagnetic device that generates heat to stimulate collagen production, the production of elastin, and the growth of new skin cells. This therapy helps firm and lift sagging skin. However, the results are temporary.

Messenger RNA (mRNA) vaccines represent one of the most significant scientific advances in modern therapeutics. Unlike conventional vaccines that use weakened or inactivated pathogens, mRNA vaccines deliver genetic instructions that enable host cells to synthesize a target antigen and stimulate an immune response.

Vaccines need precise temperature control to work but maintaining the cold chain wastes half of all doses globally. New thermostable formulations could change everything.

See how the PSA blood test works, what causes elevated PSA levels, and how this important laboratory test supports prostate health and early cancer detection.

Disorders of Gut–Brain Interaction (DGBIs), such as Functional Dyspepsia (FD) and Irritable Bowel Syndrome (IBS), present a formidable clinical impasse due to their profoundly heterogeneous and multifactorial nature.

See what kidney function tests measure, including creatinine, eGFR, and urinalysis. Discover how these tests help detect kidney disease and monitor kidney health.

Explore the multi-organ cellular mapping of GLP-1 receptor agonists. Discover how GLP-1RAs act as a systemic shield across T2DM, obesity, PMOS, MASH and so on.

What does stress actually do to your body? Explore the neurobiology of the survival response, from the immediate SAM axis to the the HPA axis, and learn how to restore your biological equilibrium.