Volunteers will test a pill designed to remove radioactive contamination from the body.
Category Archives: Mind Building
Rare skin condition leads to stares and comments from strangers
Rhiannon Morgan has grown used to people making comments or asking if her condition is contagious.
Can’t find your phone? There’s a robot for that

Engineers at the University of Waterloo have discovered a new way to program robots to help people with dementia locate medicine, glasses, phones and other objects they need but have lost.
And while the initial focus is on assisting a specific group of people, the technology could someday be used by anyone who has searched high and low for something they’ve misplaced.
“The long-term impact of this is really exciting,” said Dr. Ali Ayub, a post-doctoral fellow in electrical and computer engineering. “A user can be involved not just with a companion robot but a personalized companion robot that can give them more independence.”
Ayub and three colleagues were struck by the rapidly rising number of people coping with dementia, a condition that restricts brain function, causing confusion, memory loss and disability. Many of these individuals repeatedly forget the location of everyday objects, which diminishes their quality of life and places additional burdens on caregivers.
Engineers believed a companion robot with an episodic memory of its own could be a game-changer in such situations. And they succeeded in using artificial intelligence to create a new kind of artificial memory.
The research team began with a Fetch mobile manipulator robot, which has a camera for perceiving the world around it.
Next, using an object-detection algorithm, they programmed the robot to detect, track and keep a memory log of specific objects in its camera view through stored video. With the robot capable of distinguishing one object from another, it can record the time and date objects enter or leave its view.
Researchers then developed a graphical interface to enable users to choose objects they want to be tracked and, after typing the objects’ names, search for them on a smartphone app or computer. Once that happens, the robot can indicate when and where it last observed the specific object.
Tests have shown the system is highly accurate. And while some individuals with dementia might find the technology daunting, Ayub said caregivers could readily use it.
Moving forward, researchers will conduct user studies with people without disabilities, then people with dementia.
A paper on the project, Where is my phone? Towards developing an episodic memory model for companion robots to track users’ salient objects, was presented at the recent 2023 ACM/IEEE International Conference on Human-Robot Interaction.
Researchers discover brain circuit underlying spontaneous synchronized movement of individuals in groups

Individual fish in schools scatter in unison when a predator is in their midst.
Similar examples of precisely coordinated group movements and immobility during threats have long been observed in insects and mammals.
Now, for the first time, a brain pathway has been discovered that enables individual animals to rapidly coordinate a unified response, with no rehearsal required.
Publishing recently in the print edition of the journal Biological Psychiatry, Virginia Tech scientists with the Fralin Biomedical Research Institute at VTC described how they studied synchronized immobility in pairs of mice and identified the underlying brain circuit responsible for this behavior.
The study provides an identified target to advance research on the poorly understood brain activity that underlies coordinated group movement and, more broadly, social communication in general, which is compromised in a variety of human neuropsychiatric conditions such as attention hyperactivity disorder (ADHD), autism spectrum disorders (ASD) and social communication disorder (SCD).
“Examples of coordinated defensive responses in nature are numerous — oxen, for example, form a circle when they face a threat,” said Alexei Morozov, assistant professor of the Fralin Biomedical Research Institute and corresponding author of the study. “Synchronization under threat is an evolutionary-conserved survival mechanism and occurs across species, including humans. This type of behavior has never been measured in a lab before, but now we can now quantify this response and explore the underlying mechanisms.”
Mice were trained to associate an auditory cue to a potential threat, like a fire drill. The researchers studied parts of the brain that process and remember fear and social information, and they found that a specific connection between two parts of the brain, the ventral hippocampus and basolateral amygdala, plays an important role in coordinating behavior when faced with a threat.
The information suggests a method to investigate these brain connections in more complicated situations. Although the study began with pairs of individuals, more research is needed to determine whether the same pathway is responsible for coordinating larger group behavior, such as huddling, in larger groups.
“This gives us a way toward a deeper understanding of social behavior,” Morozov said. “At home and at work, people coordinate and exchange information with partners. Now we have a model that helps us understand the underlying brain pathway.”
“This is among the most significant discoveries made in recent years on identifying the sites and the potential underlying mechanisms in the brain that mediate these types of important social interactions,” said Michael Friedlander, Virginia Tech vice president for health sciences and technology and executive director of the Fralin Biomedical Research Institute. “While the pathologies in these behaviors are well characterized in human clinical populations, attempts at effective therapies have been hampered by a lack of understanding of which brain circuits and biological processes are impacted. Dr. Morozov and his team have designed and implemented an elegant series of experiments in mice to provide a potentially powerful base from which to advance this science and hopefully shorten the time to develop more strategically targeted therapies for humans.”
Research assistant professor Wataru Ito and research assistant Alexander Palmer, also of the Fralin Biomedical Research Institute’s Center for Neurobiology Research, participated in the research study.
Out of this world control on Ice Age cycles

A research team, composed of climatologists and an astronomer, have used an improved computer model to reproduce the cycle of ice ages (glacial periods) 1.6 to 1.2 million years ago. The results show that the glacial cycle was driven primarily by astronomical forces in quite a different way than it works in the modern age. These results will help us to better understand the past, present, and future of ice sheets and the Earth’s climate.
Earth’s orbit around the Sun and its spin axis orientation change slowly over time, due to the pull of gravity from the Sun, the Moon, and other planets. These astronomical forces affect the environment on Earth due to changes in the distribution of sunlight and the contrast between the seasons. In particular, ice sheets are sensitive to these external forces resulting in a cycle between glacial and interglacial periods.
The present-day glacial-interglacial cycle has a period of about 100,000 years. However, the glacial cycle in the early Pleistocene (about 800,000 years ago) switched more rapidly, with a cycle of about 40,000 years. It has been believed that astronomical external forces are responsible for this change, but the details of the mechanism have not been understood. In recent years, it has become possible to investigate in more detail the role of astronomical forces through the refinement of geological data and the development of theoretical research.
A team led by Yasuto Watanabe at the University of Tokyo focused on the early Pleistocene Epoch from 1.6 to 1.2 million years ago using an improved climate computer model. Astronomical forces based on modern state-of-the-art theory are considered in these simulations. The large numerical simulations in this study reproduce well the glacial cycle of 40,000-year of the early Pleistocene as indicated by the geological record data.
From analysis of these simulation results, the team has identified three facts about the mechanisms by which astronomical forces caused changes in climate in those times. (1) The glacial cycle is determined by small differences in the amplitude of variation of the spin axis orientation and the orbit of the Earth. (2) The timing of deglaciation is determined mainly by the position of the summer solstice on its orbit, which is at perihelion, not only by the effect of periodical change of the tilt of the Earth’s axis. (3) The timing of the change in the spin axis orientation and the position of the summer solstice on its orbit determines the duration of the interglacial period.
“As geological evidence from older times comes to light, it is becoming clear that the Earth had a different climatic regime than it does today. We must have a different understanding of the role of astronomical forcing in the distant past,” says Takashi Ito from the National Astronomical Observatory of Japan, a member of this research team who led the discussion on astronomical external forces. “The numerical simulations performed in this study not only reproduce the Pleistocene glacial-interglacial cycle well, but also successfully explain the complex effects of how astronomical forcing drove the cycle at that time. We can regard this work as a starting point for the study of glacial cycles beyond the present day Earth.”
Needle-free Covid vaccination trials taking place in Cambridge
Trials are taking place in Cambridge, where the technology was developed.
Senior doctor strike ballot opens over pay dispute
The BMA said talks with the government were deadlocked and their final pay offer was unacceptable.
ADHD: Private clinics exposed by BBC undercover investigation
An undercover journalist for Panorama is diagnosed and given drugs without proper checks.
Scrap tax on sunscreen, say cancer charities
Cancer experts want VAT removed to make sun creams more affordable in the cost-of-living crisis.
Pat Cullen: Nursing union calls for double-digit pay rise to restart talks
The union boss urges ministers to reopen pay talks in England after members rejected a lower offer.
