Changing stroke rehab and research worldwide now.Time is Brain! trillions and trillions of neurons that DIE each day because there are NO effective hyperacute therapies besides tPA(only 12% effective). I have 523 posts on hyperacute therapy, enough for researchers to spend decades proving them out. These are my personal ideas and blog on stroke rehabilitation and stroke research. Do not attempt any of these without checking with your medical provider. Unless you join me in agitating, when you need these therapies they won't be there.

What this blog is for:

My blog is not to help survivors recover, it is to have the 10 million yearly stroke survivors light fires underneath their doctors, stroke hospitals and stroke researchers to get stroke solved. 100% recovery. The stroke medical world is completely failing at that goal, they don't even have it as a goal. Shortly after getting out of the hospital and getting NO information on the process or protocols of stroke rehabilitation and recovery I started searching on the internet and found that no other survivor received useful information. This is an attempt to cover all stroke rehabilitation information that should be readily available to survivors so they can talk with informed knowledge to their medical staff. It lays out what needs to be done to get stroke survivors closer to 100% recovery. It's quite disgusting that this information is not available from every stroke association and doctors group.

Wednesday, September 2, 2026

Study reveals why many patients fail to recover after stroke

Simple, because NO ONE looked at the recovery protocol that Pedro Bach-y-Rita  used to recover fully back in 1958 with only a partial brain! But you don't have anyone COMPETENT AT ALL, DO YOU?

Study reveals why many patients fail to recover after stroke

A clot forms. Blood flow to the brain is blocked. Starved of oxygen, neurons begin to die.

This scenario, known as an ischemic stroke, plays out in roughly 21,000 people worldwide each day, threatening them with long-term disability or even death. In recent decades, the advent of drugs and mechanical tools for removing clots has revolutionized stroke care.

Yet, even with the clot gone and the vessel clear, up to 50% of patients never recover neurologically. New research from the University of Colorado Boulder and the University of Antwerp helps explain why.

The study, published in the journal PNAS, reveals in unprecedented detail how the brain's own defense mechanisms against stroke can backfire, triggering yet more clots-micro-clots-in minor vessels, damaging tissue long after the primary culprit is gone.

We now have a way to explain why so many of these patients are not seeing neurological improvements. Our findings also point to a new potential target for therapeutics that could be extremely impactful for stroke patients."

Debanjan Mukherjee, co-author, assistant professor of mechanical engineering, CU Boulder

The mystery behind "no reflow"

Doctors have long known that removing a stroke-causing clot cannot always restore full blood flow to the brain. But why this phenomenon, known as "no reflow," occurs has remained a mystery. (Just maybe because Capillaries that don't open due to pericytes and then there is the neuronal cascade of death in the first week)

To unravel it, Mukherjee, who studies the physics of blood flow, teamed up with senior author Frederik Denorme, an assistant professor of biology at the University of Antwerp who studies, as he puts it, "life after the clot."

"The dogma used to be that you just need to get rid of that blood clot and then all problems should be solved," said Denorme. "We now know that is not the case."

In fact, only about 1 in 10 surviving stroke patients recover completely after a stroke; 25% have minor impairments; and half have moderate to severe impairments.

To examine what, precisely, goes on in the brain after a clot is removed, the research team first turned to mice.

Using a technique called intravital microscopy, they observed in real time how blood flowed in the brain and cells behaved in the hour after the mice suffering from stroke underwent endovascular thrombectomy-a procedure in which a tool is threaded through a blood vessel to pluck out an obstructive clot.

While blood quickly started flowing again post-procedure, the researchers were stunned to see that in many mice, it flowed haphazardly, in fits and starts, even reversing course at certain points.

"We saw it happening with our own eyes. Blood that was flowing left all of a sudden flowed right and vice versa," said Denorme. "It was remarkable."

A Jekyll and Hyde protein

An even closer look revealed that, as the brain tried to divert blood around the original obstruction, tiny clots formed where the haphazard channels converged.

To drill down on why those clots formed, Mukherjee's FLOWLab recreated this scenario using computer simulations. In other research, his lab has recreated similar scenarios using a 3D artificial brain filled with fake blood.

These experiments implicated Von Willebrand Factor - a protein best known for stopping us from bleeding when we get a cut.

In its resting state, Mukherjee explained, Von Willebrand Factor is coiled up like a ball of string inside blood vessels, waiting for distress signals from the body that make it stretch out and start forming clots to stop bleeding.

In a brain experiencing a stroke, something else unfolds the ball.

"If there is some kind of fluid motion induced after the clot is removed, it can stretch out that ball into an extended thread that attracts platelets, forms new clots and blocks flow even after the original culprit clot is gone," Mukherjee said.

Meanwhile, the study showed, the brain's inflammatory response to stress interferes with safeguards that normally keep the protein's clotting efforts in check, creating what the authors call "a perfect storm" of collateral damage.

Other experiments, looking at blood from stroke patients at the University of Washington in St. Louis, suggest a similar phenomenon happens in humans too.

"We are the first to really show in this hyperacute phase of stroke what is happening with these cells inside blood vessels," said Denorme. "Seeing is believing."

More research is necessary to determine why no reflow happens in some stroke patients but not others. But the study did find that stroke patients with higher blood levels of a pro-inflammatory compound called Interleukin 6 had more overactive Von Willebrand Factor and worse long-term outcomes.

The researchers envision a day when therapeutics targeting Von Willebrand Factor, or the inflammatory compounds that exacerbate its clotting capabilities, could be given to stroke patients alongside clot-busting drugs and surgery.

Notably, several drugs targeting Von Willebrand Factor already exist and are approved for use for other disorders.

"It's early days. But now that we have a lead on what drives these micro-clots, we have a promising new avenue to explore for improving recovery," said Denorme.

Source:
Journal reference:

Laroche, A., et al. (2026). Mechanisms of von Willebrand factor activation driving no reflow in ischemic stroke. Proceedings of the National Academy of Sciences. DOI: 10.1073/pnas.2610397123. https://www.pnas.org/doi/10.1073/pnas.2610397123

Some people carry Alzheimer’s damage yet stay sharp, and scientists think they know why

 

Will your competent? doctor and hospital get further research going so you can be like Bernadette the nun?(The link has disappeared but any competent doctor will know exactly what Bernadette represents!)

Some people carry Alzheimer’s damage yet stay sharp, and scientists think they know why

Some people carry the biological hallmarks of Alzheimer’s disease in their brains yet stay mentally sharp, and scientists believe they are closing in on why. According to ScienceDaily, a study from the Netherlands Institute for Neuroscience suggests the answer may lie in how a rare group of brain cells responds to damage.

The existence of people who resist Alzheimer’s despite having its physical signature has long puzzled researchers and hinted at a hidden protective mechanism. Understanding that resilience could be as valuable as understanding the disease itself, because it points toward what keeps a brain functioning even under attack.

Resilience despite the damage

Researchers have long puzzled over individuals whose autopsies reveal the plaques and tangles associated with Alzheimer’s but who showed little or no cognitive decline in life. The new work points to immature neurons — a small population of cells — and how they react when the brain is under assault, as a possible source of that resilience.

 Related video: Study identifies protein that could help protect memory as we age (WKYC-TV Cleveland) 

These immature neurons, capable of adapting and maturing, may help the brain compensate for damage rather than succumb to it. If their response is what preserves memory in resilient individuals, then bolstering that same response could, in principle, help others withstand the disease’s physical toll — a very different goal from simply removing the toxic proteins.

Why this angle is promising

Much Alzheimer’s research has focused on removing the toxic proteins that accumulate in the disease. Studying resilience flips the question: instead of asking only what causes decline, it asks what protects against it. If the brain has natural defenses that keep some people sharp, understanding those defenses could point toward ways to strengthen them in others. Years of drug development aimed at clearing plaques have produced only modest results, which has pushed the field to look for complementary strategies. Learning how some brains stay sharp despite the damage offers one such path: rather than fighting the pathology directly, treatments might aim to enhance the brain’s own capacity to cope with it.

A different route to treatment

Identifying the cells and mechanisms behind cognitive resilience could eventually inform therapies aimed at preserving memory rather than only clearing plaque. That approach is early and far from a treatment, but it reflects a broader shift in the field toward understanding why some brains withstand Alzheimer’s pathology — a question whose answer could matter as much as understanding the damage itself. Turning insights about immature neurons into a therapy would require far more research, and animal or laboratory findings do not always translate to patients. But the resilience angle broadens the search for solutions beyond the plaque-clearing strategies that have dominated the field, and it holds out the possibility of protecting cognition even when the disease’s physical hallmarks are present. This article was researched with the help of AI, with human editors creating the final content.

Correlations of systemic immune-inflammation index and systemic inflammation response index with the risk for early-onset post-stroke depression in patients with minor stroke: a prospective observational study

 Why this useless research when you should be creating EXACT 100% RECOVERY PROTOCOLS! That would prevent depression! And you are so blitheringly stupid you can't see that?

Correlations of systemic immune-inflammation index and systemic inflammation response index with the risk for early-onset post-stroke depression in patients with minor stroke: a prospective observational study


  • 1. Department of Neurology, The Affiliated Changsha Central Hospital, Hengyang Medical School, University of South China, Changsha, Hunan, China

  • 2. Department of Neurology, The Second People’s Hospital of Hunan Province (Brain Hospital of Hunan Province), Changsha, Hunan, China

Abstract

Background: 


Inflammation plays a pivotal role in the pathophysiology of post-stroke depression (PSD). However, the relationship between novel systemic inflammatory indices-the systemic immune-inflammation index (SII) and systemic inflammation response index (SIRI)-and early-onset PSD remains inadequately explored.


Methods: 


Early-onset PSD was diagnosed 2 weeks after acute ischemic stroke (AIS). Depression severity was assessed using the 17-item Hamilton Depression Rating Scale (HAMD-17); patients with scores ≥7 were classified into the early-onset PSD group. Spearman rank correlation analysis was performed to evaluate associations of SII and SIRI with HAMD-17 scores across all participants. Binary logistic regression was used to examine the independent associations of SII and SIRI with early-onset PSD. Receiver operating characteristic (ROC) analysis was employed to assess the SII and SIRI capacity to differentiate early-onset PSD.


Results: 


Of the 1,113 prospectively enrolled patients, 372 (33.42%) were diagnosed with early-onset PSD. HAMD-17 scores showed significant positive correlations with SII (r = 0.440, p < 0.001) and SIRI (r = 0.418, p < 0.001). Both SII (OR = 1.762, 95% CI: 1.261–1.946, p < 0.001) and SIRI (OR = 1.672, 95% CI: 1.348–1.932, p = 0.004) emerged as independent predictors of early-onset PSD. The areas under the curve (AUC) for SII, SIRI, and their combination were 0.767, 0.718, and 0.807, respectively.

Conclusion: 


SII and SIRI may serve as independent risk factors for early-onset PSD. These indices offer potential utility for risk stratification and could inform prevention strategies and prognosis management in this patient population.


More at link.

8 of the Best Drinks to Support Healthy Aging, According to Nutritionists

 I'm sure your incompetent? hospital doesn't have most of these and for sure; NO PROTOCOLS!

8 of the Best Drinks to Support Healthy Aging, According to Nutritionists

 While a well-balanced diet and frequent exercise are often emphasized in discussions about healthy aging, the fluids you drink are just as important. Many beverages are marketed as “good for you,” but they often contain added sugar and fall short on their promises.

To find out which drinks actually support healthy aging, we spoke to registered dietitians. Here, they share some of the best options to include in your diet. Some may surprise you, while others might already be a staple in your daily routine.

  • Adiana Castro, MS, RDN, CLT, New York City-based metabolic dietitian, founder of Compass Nutrition 
  • Shelley Balls, a registered dietitian from Flawless Bloom

Kefir

Probiotics are a vital part of a balanced gut microbiome.1 Kefir, a fermented milk product, is a probiotic powerhouse. It can feature many dozens of 60 strains of bacteria and yeast that promote a healthier microbiome for our gut. “As we age, gut health can play a huge part in disease prevention, immunity, and even mental health,” says Shelley Balls, a registered dietitian from Flawless Bloom.2

If you’re looking to add Kefir to your daily routine, Adiana Castro, a New York City-based metabolic dietitian and founder of Compass Nutrition, recommends choosing the plain version at the grocery store and making sure the label includes information about live and active cultures for maximum health benefits. “I would recommend drinking 4 to 8 ounces of kefir every day. Start with 2 ounces per day and then work your way up to 4 to 8 ounces per day,” says Castro.

Bone Broth

If you enjoy the savory flavors of chicken broth, try incorporating 3 to 4 cups of bone broth into your wellness routine each week. It’s a warm drink that is packed with nutrients to help support the function of the intestinal barrier, says Castro.3 It’s rich in amino acids such as glutamine, glycine, proline, histidine, arginine, as well as minerals including calcium, phosphorus, potassium, magnesium, and zinc. Getting enough minerals is essential to maintaining bone strength.

“Glutamine is especially helpful in reducing inflammation,” says Castro. The gelatin in bone broth helps repair the gut lining, improving absorption, which is crucial as digestion capacity decreases with age.3

In addition to promoting bone and gut health, bone broth can also benefit the skin.4 It contains a significant amount of collagen, which helps with skin elasticity. When buying bone broth, check the label to see if it has been simmered for at least eight hours; “the levels of nutrients released from the bones are higher with longer cooking times,” says Castro.

Herbal Tea

Getting enough sleep each night supports healthy aging, and herbal tea can help.5 These teas are rich in plant compounds such as polyphenols and flavonoids, which protect cells from oxidative stress, which accelerates the aging process. “Chamomile or lemon balm can help with restful sleep and stress reduction, which are both crucial for aging well.6 I recommend 1 cup of any flavor of herbal tea daily,” says Castro.



Coffee

Coffee is rich in antioxidants, which have protective effects on our health with respect to Alzheimer’s and Parkinson’s diseases. “There is increasing evidence in favor of protective effects of coffee consumption in the development and progression of liver disease. Caffeine may stimulate liver enzymes and improve liver function,” says Castro.7

She also notes that the recommended daily coffee intake varies by individual, but the average tolerance is two to four cups per day before 2:00 p.m. To ensure that your body properly absorbs the benefits, it’s best to consume coffee at least one hour before mealtime, according to Balls. “If possible, it’s best to eat breakfast first, then drink it after breakfast, so you’re not consuming coffee on an empty stomach, which can irritate your stomach lining,” says Balls.

While drinking coffee has health benefits, it’s essential to note that adding excessive sugar, cream, or flavored syrups can negate these benefits.

Green Tea

Green tea comes from the Camellia sinensis plant and is brewed at a lower temperature, resulting in a lighter, fresher flavor. “It is rich in the polyphenol EGCG, which acts like a powerful antioxidant that helps reduce oxidative stress and inflammation, both of which greatly impact aging,” says Castro.8 Green tea helps balance blood sugar, which is also important for longevity.

If you choose to drink green tea daily, Castro recommends 2 to 3 cups, steeped for about 2 to 3 minutes, consumed before 2:00 p.m. to maximize health benefits and ensure good sleep.

Black Tea

Like green tea, black tea is made from the Camellia sinensis plant but is brewed at a higher temperature and has a more bitter taste. Black tea contains polyphenols, such as theaflavins and thearubigins, that act like prebiotics, benefiting the bacteria in your microbiome.

“These polyphenols feed keystone strains like Bifidobacteria and Lactobacillus that support the immune system as you age. I recommend up to 1-2 cups of black tea daily, steeped for about 4-5 minutes before 2:00 PM to avoid sleep disruption,” says Castro.9

Water

Incorporating even one of these drinks into your weekly wellness routine can support healthy aging. But drinking enough water each day is essential. “Sure, it doesn’t have a lot of bells or whistles, but water is such an important part of your body, and can help manage blood sugar levels if you’re adequately hydrated,” says Balls. “Staying hydrated with water helps lower your risk of heart disease, kidney stones, and diabetes, which are common concerns as we age.”101112

If plain water is hard to drink in large amounts, Castro recommends adding flavor without artificial sweeteners:

  • Infuse with fruit: Slice citrus, berries, or cucumbers to give your water a natural flavor boost.

  • Freeze flavored ice cubes: Make ice cubes from herbal tea or pureed fruit and drop them into your water for a burst of flavor as they melt.

  • Balance caffeine with water: Drink a glass of water for every cup of coffee, tea, or energy drink.

  • Set reminders: If you often forget to hydrate, set gentle phone reminders for water breaks and pay attention to your body’s thirst and dehydration signals.

Instead of relying on caffeinated drinks throughout the day, check in with yourself to be sure you’re drinking enough water. Staying hydrated supports energy levels, which can motivate you to be active and maintain healthy habits, says Balls. “Your hydration status is also linked to your metabolic health, crucial for fat metabolism, nutrient transport, and waste removal.”

Martha’s Green Juice

And of course, we can’t forget Martha’s green juice. For years, she has credited her prized green juice for contributing to her good health. “This is what I recharge my batteries with every single morning,” she says. “I don’t leave my house without it.”

Her recipe includes pears, celery, cucumbers, parsley, ginger, and orange. While juice lacks the fiber of whole fruits and vegetables, green juice is a health-boosting blend that makes it easy to drink your greens. If certain ingredients are low in supply or out of season, simply swap them for other nutritious vegetables and fruits you like. Note that we are referring to juice fresh-pressed at home, which doesn’t include the sweeteners or other additives you might find in bottled versions. 

HEPA Air Purifiers May Enhance Cognitive Function After Just One Month: Study

 This should IMMEDIATELY get your incompetent? hospital to install them in stroke patients rooms! But nothing will happen, incompetence has too much inertia to be budged!

HEPA Air Purifiers May Enhance Cognitive Function After Just One Month: Study

Egg yolk peptides protect brain cells from oxidative stress

Have your competent? doctor get the EXACT PROTOCOL on this so you can benefit.

 Egg yolk peptides protect brain cells from oxidative stress

As the human lifespan increases, so too does the risk of developing neurological disorders such as Parkinson's disease, Alzheimer's disease, anxiety and depression. These disorders are often accompanied by an excess amount of reactive oxygen species, or ROS. ROS are generated in the body throughout normal processes and have their place in a functioning cellular ecosystem; however, when their numbers get too high, problems arise. Hyun-Dong Paik from Konkuk University and his team of researchers use short chains of amino acids found in egg yolk, phosvitin phosphopeptides, to assess the effects of consumable antioxidants in protection against the build-up of oxidative stress in human neuroblastoma cells.

Hyun-Dong Paik and his team's results were published in Food Science of Animal Products on July 1st, 2026.

Reactive oxygen species (ROS), such as hydrogen peroxide (H2O2), in excess can lead to oxidative-stress-induced cell death during metabolic processes, in turn having the potential to lead to mutation and protein damage, later leading to various diseases. While human bodies have ways of eliminating some of these oxidants through antioxidant enzymes like catalases, it is often an overwhelming and impossible job once these oxidants start to build up excessively. This is where external forms of antioxidants, taken in through diet or supplementation, can help the process.

Testing occurred on SH-SY-5Y cells using PPP from hydrolyzed, high-temperature mild-pressure (HTMP) treated chicken egg yolk. The hydrolyzing process breaks the large molecules into smaller ones that can more easily be absorbed by the cells. Different agents such as trypsin (T), Multifect 14L (M) and a combination of the two (TM) were studied, as well as a treatment using just the HTMP-treated material. Of these four, HTMP-TM proved itself to show the most promise in reducing ROS.

The results from the HTMP-TM treatment had the highest antioxidant activity as well as increased cell viability (up to 76.44% from 57.46% when pretreated with HTMP-TM four hours before H2O2 treatment) and reduced cell death in stressed SH-SY-5Y cells. This treatment method also exhibited reducing power (meaning PPPs reduce the amount of electron-donating happening, therefore reducing the "energy" allowing for unfavorable reactions to occur) and radical scavenging (finding and reducing free radicals, which are unstable and reactive, and can damage cells and DNA).

Other effects of PPPs include metal chelation, which binds metals in a stable ring for later safe removal from the body, and beta-carotene bleaching inhibition and lipid peroxidation inhibition, both of which are protective against oxidative stress. HTMP-TM treated PPPs show the most evidence of being both antioxidative and neuroprotective on SH-SY-5Y cells.

PPPs are promising functional ingredients against H2O2-induced neurotoxicity. However, more in vivo studies are needed to demonstrate the value of PPPs as value-added food/nutraceutical ingredients."

Hyun-Dong Paik, researcher at Konkuk University and author of the study

Additional work also needs to be done to determine the dosage, delivery route and safety of PPPs in humans and animals, as well as work on the functional activities of PPPs to continue understanding their place and function as a potential antioxidant and neuroprotective addition for the prevention of neurodegenerative diseases.

Ji-Eun Lee and Hyun-Dong Paik of the Department of Food Science and Biotechnology of Animal Resources at Konkuk University, Jae Hoon Lee of the Department of Food Science & Technology at Jeonbuk National University, Dong Uk Ahn of the Department of Animal Science at Iowa State University and Kee-Tae Kim of the Research Center at WithBio contributed to this research.

The National Institute of Food and Agriculture/USDA partially supported this work.

Source:
Journal reference:

Lee, J. -E., et al. (2026). Antioxidative and neuroprotective effects of phosvitin phosphopeptides against H 2 O 2 -induced oxidative stress in SH-SY5Y cells. Food Science of Animal Products. DOI: 10.26599/FSAP.2026.9240169. https://www.sciopen.com/article/10.26599/FSAP.2026.9240169

Nanoparticles regenerate neurons and improve cognition in Alzheimer’s mice

Will your competent? doctor and hospital get followup research initiated that will create protocols that prevent Alzheimers or be used in recovering from a stroke?

Do you prefer your doctor, hospital and board of director's incompetence NOT KNOWING? OR NOT DOING? Your choice; let them be incompetent or demand action!

Your doctor is responsible for preventing this! Is s/he willing to prevent this?

1. A documented 33% dementia chance post-stroke from an Australian study?   May 2012.

2. Then this study came out and seems to have a range from 17-66%. December 2013.`    

3. A 20% chance in this research.   July 2013.

4. Dementia Risk Doubled in Patients Following Stroke September 2018 

The latest here:

 Nanoparticles regenerate neurons and improve cognition in Alzheimer’s mice

The adult human brain has limited capacity to repair or regenerate neurons lost to Alzheimer's disease, the most common type of dementia. Existing treatments can slow disease progression but do not reverse cognitive decline. In a study publishing in the Cell Press journal Cell Biomaterials on August 26, researchers show that engineered nanoparticles can not only regenerate neurons in human brain organoids but also restore neural circuits and improve cognition in mice. 

The new neurons can become mature and survive. We also confirmed much higher neuron density in the brains of treated mice." 

Peisheng Xu, corresponding author, professor of pharmaceutics, University of South Carolina

Xu's team studied a polymer nanogel system called Nano-ERASER that uses antibodies to degrade targeted proteins. They used the system to permeate the blood-brain barrier and enter astrocytes, which are star-shaped support cells abundant in the central nervous system. Within the astrocytes, Nano-ERASER deployed antibodies to break down a protein called PTBP1, triggering the astrocytes to convert to neurons. 

Compared to gene-editing tools like CRISPR, Nano-ERASER does not modify DNA and its cell reprogramming is reversible. 

"We hope this can be more effective and also safer," Xu says. "We don't need to worry about the potential side effects caused on the genetic level." 

First, the researchers applied Nano-ERASER to human astrocyte cultures, as well as human organoids designed to mimic brains with Alzheimer's disease. In both models, PTBP1 levels were reduced, prompting the conversion of astrocytes to neurons. Further testing revealed these new neurons were functional. 

Next, the team treated mice with Alzheimer's disease. Over several weeks, their nesting skills recovered, and they completed a water maze more efficiently than before, suggesting improved learning and memory. In addition, the mouse brains showed increased neuron density and reduced neuroinflammation and amyloid-beta protein buildup, a hallmark of Alzheimer's disease. 

"After just two injections, these mice became smarter," Xu says. "Even after one injection, we already saw these mice's behavior differ from that of the nontreated ones." 

The findings mark a critical step in regenerative neuroscience, Xu says, in part because previous research has debated whether PTBP1 suppression alone could induce in vivo neuroregeneration. 

Though this study does not prove that Nano-ERASER treats Alzheimer's disease in humans, Xu says it offers a roadmap for a potential cure. He and his colleagues plan to evaluate the platform for longer-term efficacy, test it in nonhuman primates, and one day begin human clinical trials. 

"If we can advance it to the clinic, then we can have hope for patients with Alzheimer's disease," Xu says. 

Source:
Journal reference:

Wang, M., et al. (2026). Reverse the progression of Alzheimer’s disease through Nano-ERASER-based adult neuroregeneration. Cell Biomaterials. DOI: 10.1016/j.celbio.2026.100575. https://www.cell.com/cell-biomaterials/fulltext/S3050-5623(26)00231-X