
AI & Clinical Practice - Ethical Challenges and Evolving Strategies
Artificial Intelligence AI with it’s widespread use in various sectors has also taken a dive into healthcare by transforming clinical practice and improving patient care.
Showing results for: "Type 2 Diabetes" (86 results)

Artificial Intelligence AI with it’s widespread use in various sectors has also taken a dive into healthcare by transforming clinical practice and improving patient care.

Discover how the SNAP29 gene guides cellular traffic, and how its mutation leads to CEDNIK syndrome, affecting brain, nerves, and skin.

The current trajectory of epilepsy management has encountered a formidable "refractory wall." Despite the accelerated expansion of the neuropharmacological pharmacopeia,

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.

Learn what dehydration does inside your body from brain function and circulation to temperature control, symptoms, risks, and prevention tips.

Scientists are closer than ever to detecting life beyond Earth. From Mars to distant exoplanets, modern astronomy is transforming the search for alien life.

Lithium-ion batteries are the most popular type of rechargeable battery in use today. They power many of the devices we rely on daily, including mobile phones and electric vehicles. These batteries are lightweight,

Ageing is accompanied by a gradual decline in physiological functions, among which deterioration of the immune system termed immunosenescence—has profound implications for human health.

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

(DCTs) are redefining how pharmaceutical studies are designed, conducted, and analyzed by moving away from traditional site-centric models toward patient-centric, digitally enabled trial ecosystems.

What allows anything stable to exist at all? Before objects, laws, or equations can be described, something more basic must occur: something must persist long enough to be identified. This shifts the focus from what exists to the conditions under which anything can exist stably.

A future without transplant waitlists? Tissue engineering blends biology and engineering to build living, functional human tissue.

Discover how AI surveillance impacts psychological safety in the workplace and why constant monitoring might be killing your team's innovation.

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

Epigenetics is transforming how scientists understand the bridge between genes and behavior, opening the door to a new era of mental health treatment.

How does one egg form? Inside the fruit fly ovary, discover how cells organize, migrate, and cooperate to turn an egg chamber into one egg—step by step

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.

Mathematics is often described as the universal language of the universe, a field that transcends cultures and eras to provide the tools for understanding the world. From the ancient geometries of Egypt to modern computational algorithms, mathematics is at the heart of human discovery and technological progress.

Relational Field Theory (RFT) has matured into a predictive framework with operational definitions, numerical demonstrations, and practical inference tools.

Physical quantities and laws emerge from the geometry, coherence, and flow of relational fields. A central idea is relational closure: high-coherence domains form effectively closed regions where stable invariants can persist.