Research Keyword: memory

Efficacy and safety of MT104, a dietary supplement based on Cuscuta seeds and heat‐killed probiotics, on cognitive function in patients with mild cognitive impairment: A 12‐week, multicenter, randomized, double‐blind, placebo‐controlled clinical trial

Researchers tested a dietary supplement called MT104 made from Cuscuta seeds and special probiotics to see if it could improve memory and thinking in people with mild cognitive impairment, an early stage before dementia develops. In a 12-week study with 200+ participants, those taking MT104 showed better memory recall and overall cognitive function compared to those taking a placebo. The supplement appeared to be safe with no serious side effects, suggesting it could be a helpful natural approach to slow the progression toward Alzheimer’s disease.

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Recalled childhood trauma and post-psychedelic trajectories of change in a mixed-methods study

This study examined how childhood trauma can resurface during psychedelic experiences and what happens afterward. Researchers surveyed over 600 people who had difficult experiences after using psychedelics, and interviewed 18 of them in detail. They found that trauma surfaced in different ways—some people vividly relived events, others felt intense bodily sensations, and some experienced confusion. About half of participants found healing from the experience, while others struggled with ongoing trauma symptoms or mixed outcomes. The research emphasizes the importance of proper preparation, supportive settings, and follow-up integration work to help people process these experiences safely.

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Neuronal TIMP2 regulates hippocampus-dependent plasticity and extracellular matrix complexity

Scientists discovered that a protein called TIMP2, which is naturally higher in young blood, plays a crucial role in maintaining brain memory and learning ability. Using laboratory mice, they found that TIMP2 helps keep the brain’s cellular environment flexible by controlling the buildup of structural proteins around nerve connections. Without adequate TIMP2, the brain develops more rigid connections that interfere with forming new memories and creating new brain cells, mimicking changes seen in aging and cognitive decline.

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The cellular architecture of memory modules in Drosophila supports stochastic input integration

Scientists created a detailed computer model of a memory-processing neuron in the fruit fly brain to understand how memories are stored and recalled. The study found that the neuron’s design allows it to store many different memories using random connections from input neurons, similar to how a brain might encode multiple learned experiences. This research reveals that memories can be efficiently stored without requiring precise positioning of individual neural connections, suggesting the brain uses flexibility and randomness as computational strategies.

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