The Science Behind Sensation: How Our Brain Understands Temperature Changes
Thermal sensations are consciously differentiated as hot or cold by the brain; however, the neural mechanism that enables this differentiation is not well understood. To address this, researchers have used electroencephalography to record brain activity during hot or cold stimuli. They found that while both temperatures activate the same ten cortical regions, their patterns of
Pioneering Developments in Bioprinting: Crafting Life-Like Human Heart Tissue
Researchers have developed a way of bioprinting tissues that change shape as a result of cell-generated forces, in the same way that it happens in biological tissues during organ development. The breakthrough science focused on replicating heart tissues, bringing research closer to generating functional, bioprinted organs, which would have broad applications in disease modelling, drug
The Science Behind Sensation: How Our Brain Understands Temperature Changes
Thermal sensations are consciously differentiated as hot or cold by the brain; however, the neural mechanism that enables this differentiation is not well understood. To address this, researchers have used electroencephalography to record brain activity during hot or cold stimuli. They found that while both temperatures activate the same ten cortical regions, their patterns of
More News
The Science Behind Sensation: How Our Brain Understands Temperature Changes
Thermal sensations are consciously differentiated as hot or cold by the brain; however, the neural mechanism that enables this differentiation is not well understood. To address this, researchers have used electroencephalography to record brain activity during hot or cold stimuli. They found that while both temperatures activate the same ten cortical regions, their patterns of
Decoding Cellular Mysteries: The Power of Single-Cell Elemental Analysis with ICP-MS
Inductively coupled plasma mass spectrometry (ICP-MS) is prominently used for analyzing elemental composition in individual cells. However, the conventional sample introduction system of ICP-MS causes damage to large mammalian cells. Now, researchers suggest an efficient method of introducing mammalian cells using a microdroplet generator that maintains the cell's structure without compromising elemental composition. These findings
Pioneering Developments in Bioprinting: Crafting Life-Like Human Heart Tissue
Researchers have developed a way of bioprinting tissues that change shape as a result of cell-generated forces, in the same way that it happens in biological tissues during organ development. The breakthrough science focused on replicating heart tissues, bringing research closer to generating functional, bioprinted organs, which would have broad applications in disease modelling, drug
Explore more
How Nerve Cells Age: Exploring the Youthfulness of Neurons
At the Salk Institute, has uncovered the remarkable resilience of nuclear pore complexes (NPCs) within nerve cells. These NPCs, responsible for regulating the traffic of molecules in and out of the cell's nucleus, are found to remain intact and functional throughout the cell's lifespan. This groundbreaking discovery sheds light on the fundamental mechanisms that enable nerve cells to maintain their identity and function over decades. Understanding the longevity of NPCs could have profound implications for neurological diseases and aging-related cognitive decline. Hetzer's findings open new avenues for developing targeted therapies to preserve nerve cell health and combat neurodegenerative conditions. This research not only uncovers a fundamental aspect of nerve cell biology but also offers hope for advancing treatments for a range of neurological disorders
Minimally Invasive Breast Cancer Surgery for Swollen Arms and Recovery
Of the lymph nodes in the armpit, even with larger metastases, as demonstrated in a recent international trial. This breakthrough offers a less invasive surgical option for women with breast cancer, providing a gentler approach without compromising effectiveness
Exploring the Human Ovary: A Detailed Atlas with Cell-Level Resolution
This groundbreaking resource, developed by engineers, offers a comprehensive look at the structure and function of the human ovary, with the potential to revolutionize fertility treatments. Its pivotal features include detailed imaging and mapping of ovarian tissue, providing invaluable information for researchers and medical professionals. The advantages of this innovative "atlas" lie in its potential to drive new advancements in reproductive medicine, offering hope to those struggling with fertility issues. Its distinctive qualities set it apart as a game-changing tool in the quest for improved fertility treatments
“Safer Option for Benign Pancreatic Tumor Removal Uncovered in Recent Study” – Less Invasive Treatment, Pancreatic Tumor Removal, Benign Tumor Removal
While avoiding major open surgery and its associated risks. This groundbreaking method reduces patient recovery time, post-operative pain, and potential complications, leading to improved outcomes. The retro-laparoscopic approach offers a less invasive option for patients with benign pancreatic tumors, revolutionizing treatment and setting a new standard for surgical care
Breaking News: New Antibiotic Class Battles Multidrug-Resistant Bacteria
University in Sweden developed this groundbreaking antibiotic, which has the potential to combat the growing threat of antibiotic resistance. The antibiotic's success in curing bloodstream infections in mice highlights its promising potential for human use. This achievement underscores the vital role of public funding and collaborative research initiatives in advancing antibiotic development
Revolutionary Gene Scissors: Curing Hereditary Liver Disease
Known as argininosuccinic aciduria, is a rare genetic disorder that affects the liver's ability to process ammonia, leading to a buildup of toxins in the body. This groundbreaking study offers hope for those suffering from this debilitating condition by providing a potential gene therapy solution. The team's success in correcting the gene defect marks a significant advancement in the field of genetic medicine and paves the way for potential treatments for other genetic liver diseases. This innovative research showcases the power of gene therapy in addressing complex genetic disorders and represents a promising step forward in the quest for effective treatments for ASLD
Prairie Voles Exhibit Human-Like Depression: Understanding the Science Behind It
Cause of disability worldwide. By utilizing prairie voles as a model, they hope to uncover new insights into the neurobiological mechanisms of depression and potential therapeutic interventions. This groundbreaking research has the potential to revolutionize our understanding and treatment of depression, offering hope for millions of individuals affected by this debilitating condition
An Investigation into the Impact of Environmental Carcinogens on Happiness and Life Expectancy
Research has shown that being exposed to environmental carcinogens and experiencing psychological distress are directly related to a decrease in the number of years a person can expect to live happily. Happy life expectancy measures the length of time that an individual can experience emotional wellbeing. This discovery indicates that creating public health strategies aimed at reducing exposure to these substances could potentially result in longer and happier lives for people. If bettering your well-being is a priority for you, then taking steps to limit exposure to these harmful elements could be a crucial part of your overall health plan