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.

Tuesday, August 4, 2026

How to Fix Curled Toes: Types, Causes, and Treatments by Flint rehab

 Nothing  here addresses the real solution; curing spasticity!

How to Fix Curled Toes: Types, Causes, and Treatments

After a neurological injury, such as a stroke, individuals may experience curled toes. Since there are multiple causes and types of curled toes, treatments vary from person to person. Often, individuals can discover how to fix curled toes by using a combination of rehabilitation exercises, therapeutic techniques, and orthotics.

This article will explore the types and causes of curled toes, as well as review methods centered on how to fix curled toes. Use the links below to jump directly to any section.

Types of Curled Toes
Causes of Curled Toes
Curled Toe Treatments
Exercises for Curled Toes

Types of Curled Toes

Curled toes refers to a condition characterized by the toes curling under the foot. Similar to the fingers, each toe has three joints, with the exception of the big toe which has only two. Typically, these joints allow the toes to straighten and bend as needed, facilitating both balance and walking. However, in the case of curled toes, individuals lose the ability to fully extend their toe(s). This can result in discomfort, pain, and potentially even balance and gait challenges.

There are many types of curled toes, differentiated by which toes and joints are most affected. Types of curled toes include:

  • Hammertoe — when the toe bends at the middle joint, forcing the joint upward and the end of the toe downward. This results in the toe resembling a hammer.
  • Mallet toe — when the toes bend down at the joint closest to the tip of the toe. The second toe is most often affected.
  • Claw toe — when the 4 smallest toes bend up at the joint closest to the foot, and then each joint thereafter bends down. The toes appear to curl down, and in severe cases, may curl into themselves.
  • Curly toe — when the toe curls downward and often to one side at birth. This often affects the 3rd, 4th, or pinky toes, and only causes problems in about 10% of cases.

Each of these types of curled toes can vary in severity. Generally, in mild cases of curled toes, the toe joints remain flexible. However, in more severe cases or when you don’t properly manage curled toes, the toe joints can become rigid or fixed in place.

What Causes Toes to Curl?

There are a number of causes of curled toes. The condition may be congenital (present at birth) or acquired later in life. Curled toes may be caused simply by wearing shoes that are too tight for too long. However, curled toes can also be the result of a neurological injury, such as a stroke.

When the neurological impact of a stroke impairs the brain’s ability to send motor signals to the toes, the muscles and tendons in the foot and toes may respond by tightening, resulting in curled toes. This involuntary tightening is referred to as spasticity.

If spasticity is not addressed, the toe joints may continue to curl and tighten. Eventually, the joints may become extremely tight and rigid, resulting in a contracture.

Especially in severe cases, curled toes can make standing, balancing, and walking uncomfortable or even painful. Fortunately, there are treatments that can help fix the condition.

Treatment: How to Fix Curled Toes

In order to fix curled toes, it often helps to discuss the condition with a doctor and/or therapist. This can help to identify the underlying cause(s), which is valuable for determining the appropriate treatment options.

Here are some of the best ways to fix curled toes:

1. Rehab Exercises

Therapeutic exercise for curled toes is typically the most effective, noninvasive treatment available. It is most beneficial when curled toes are the result of a neurological injury like a stroke.

Curled toe exercises (like those listed below) help retrain the brain to properly send signals to the feet and toes. This is because repetitive exercises activate neuroplasticity, the brain’s natural ability to rewire itself. The more one practices using the toe and foot muscles, the better the brain gets at controlling and relaxing those muscles, promoting recovery.

Want 25 pages of stroke recovery exercises in a PDF? Click here to download our free Stroke Rehab Exercise ebook now (link opens a pop up for uninterrupted reading)

2. Botox

Botox is an evidence-based treatment for fixing curled toes after stroke. It helps relieve spasticity by acting as a nerve block, resulting in relaxed muscles, and subsequently relaxed, straighter toes. While all individuals respond differently, one study showed that Botox treatments resulted in improvements of claw toe in nearly 70% of stroke survivors. Talking with a doctor or therapist can help to determine if Botox could be a good treatment option to pursue.

3. Electrical Stimulation

Electrical stimulation involves using electrodes on the skin to stimulate muscle contractions. This encourages the reconnection between the brain and the toe muscles.

Electrical stimulation works best when combined with other treatments, such as rehabilitation exercises and Botox. It also is most effective when curled toes are the result of a neurological injury like a stroke.

However, be sure to use caution and consult with a doctor or therapist before starting electrical stimulation if sensation of the foot or toes has also been affected.

4. Orthotics

Using orthotics may help fix curled toes by supporting proper alignment of the toes. These devices gently stretch tight joints and muscles into an optimal position.

Orthotics with toe crests may be recommended by a doctor or therapist. These may be custom-made or prefabricated, and may be slightly cushioned or more rigid depending on the individual’s needs. Orthotics should not cause pain, but rather will likely help with pain relief.

Orthotics are a compensation technique. This means that although they may help improve curled toes in the short-term, they do not address the root cause of the condition.

Further neglecting the foot muscles by using an orthotic and not actively moving the toes may worsen the condition over time. Therefore, it is essential to abide by the recommended wearing schedule for orthotics, and remove the orthotic throughout the day to practice toe exercises.

5. Therapeutic Taping

Therapeutic taping using kinesiotape or other types of athletic tape may also support the toes and promote proper alignment. A therapist can apply table which should provide a slight stretch to the toes. In addition to aligning the toes, therapeutic taping may also relieve pain.

Therapeutic taping works by supporting the muscles, providing a physical reminder of their optimal position. It is not meant to keep the toes in a perfect position, but rather to prompt the individual to actively straighten the toes when they feel the tape’s pull. Again, therapeutic taping is a compensation technique, which can help to fix curled toes in the short-term, but does not address the underlying causes.

6. Insoles and Toe Separators

Some individuals find success treating their curled toes by using insoles or toe separators. Gel insoles or small toe cushions can be place in the shoes to promote pain relief. Toe separators, such as those that can be found in beauty salons, can also help relieve pain. These tend to be inexpensive, simple options to try that may help manage curled toes.

7. Roomy Shoes

If curled toes are caused by wearing shoes that are too tight for too long, then getting shoes with larger toe boxes can greatly help. This will give the toes necessary the “wiggle room” to be properly aligned. Also, be sure to avoid high heels as these greatly increase pressure on the toes and may worsen the condition.

8. Surgery

If most of these treatments have been trialed without success, surgery may be recommended to relax some of the muscle tendons in order to fix curled toes. Like most invasive surgeries, these procedures require lengthy recovery time and will require individuals to remain off the foot for an extended period of time. Therefore, conservative management is usually considered optimal, while surgery is used as a last resort.

While it is possible that curled toes can go away on their own in time — a phenomenon known as spontaneous recovery, its best to take an active role in recovery by trying various treatments for curled toes. Consider talking with a doctor or therapist for more guidance on how to fix curled toes as needed.

Exercises for Curled Toes

The best method of how to fix curled toes is by rewiring the brain through specific toe exercises. While the following exercises for curled toes can help, they may feel uncomfortable or awkward at first. Some of them require the toes to curl even more, which might seem counterintuitive. However, using the toe muscles is essential in order to regain control of them.

Stretching the toes consistently to keep the tendons lengthened is also important. Avoid this if it’s too painful. However, once the tendons shorten, it is hard to reverse.

In addition to gently stretching your toes each day, you can practice these simple exercises for curled toes:

Toe Taps

With the feet flat on the ground, attempt to raise all the toes up from the ground and then place them back down. Even if the toes can’t move very much initially, attempting the movement will initiate adaptive changes in the brain.

Floor Grips

Starting with the feet flat on the floor, attempt to grip the floor by curling the toes, and then relax the toes, allowing them to naturally begin to straighten.

Finger Squeezes

Cross the affected foot over the opposite knee and place a finger in between the big and second toes. Then, squeeze these toes together to pinch the finger before relaxing the toes.

Marble pickup

Place a dozen marbles on the floor and attempt to pick them up using the toes. If this is too difficult, attempt picking up large pom poms or cotton balls, or have a caregiver provide assistance.

Towel curls

Place a towel on the floor and use the toes to pinch the towel and pick it up. Then, place it back down and flatten it out. This is a difficult exercise, but should get easier with practice.

Toe Extensor Strengthening

Cross the affected foot over the opposite knee. Then, place a resistance band around the top of the foot to pull the toes back toward the body. Next, use the toe muscles to push the resistance band outward. There will likely be very minimal movement here, but with practice the muscles will grow stronger.

Repeat each of these exercises 10 times at least once or twice throughout the day. As the muscles grow stronger, increase the number of repetitions and frequency to continue making improvements.

Many of these exercises will be very difficult initially. However, even simply visualizing movements can stimulate adaptive changes in the brain. Therefore, visualize and/or attempt each movement multiple times each day in order to promote recovery.

If toe mobility is very limited, completing these exercises passively using a hand or a caregiver to stretch the toes is an excellent way to start on the road to recovery. Toe exercises may be slightly uncomfortable, but should never cause pain.

Consult with a doctor or therapist for more customized toe exercises as needed. Rewiring the brain through rehabilitative exercises takes time, so be patient and continue exercising consistently in order to fix curled toes.

Understanding How to Fix Curled Toes

Curled toes can occur following a neurological injury, such as a stroke. While there are a number of types and causes, the best way to fix curled toes is typically to practice toe exercises. Consistently using repetitive exercises can promote adaptive changes in the brain through neuroplasticity, allowing individuals to recover from curled toes.

A stroke can turn your world upside down but it doesn’t have to define your future! Our free eBook, “15 Stroke Recovery Tips for Every Survivor,” is your step-by-step guide to real progress – Download our FREE eBook “15 Stroke Recovery Tips for Every Survivor”!

Flint Rehab is leading the way in neuro-rehabilitation with products that are backed by research and clinically proven to help you recover more effectively from stroke, TBI, and SCI.

Trusted by over 300+ rehab facilities and 10,000+ home customers.

Exercise After Stroke: Is It Safe? A Complete Guide for Stroke Survivors

 Or you could ask your competent? doctor for  'Exercise-in-a-pill'! No knowledge of that is grounds for firing!

Exercise After Stroke: Is It Safe? A Complete Guide for Stroke Survivors

Yes, most stroke survivors can safely exercise with the right plan, listening to their bodies and following their current abilities. Physical activity is one of the most effective tools for stroke recovery, helping with cardiovascular health, mobility, and mental well-being. This guide covers what types of exercise are safe, how to get started, and how to build a routine that lasts.

Why Physical Activity Is Essential After Stroke

Physical activity plays an important role in stroke recovery, offering benefits that extend beyond rebuilding strength. Regular exercise can help improve cardiovascular health, which is essential for reducing the risk of a second stroke.

Exercise after stroke can help:

  • Lower the risk of a second stroke
  • Rebuild strength and improve mobility
  • Ease symptoms of depression and anxiety
  • Support heart and blood vessel health

Many stroke survivors share the same risk factors that contributed to their first stroke, such as high blood pressure, high cholesterol, diabetes, and physical inactivity. Staying active helps manage these risk factors and supports the overall health of the heart and blood vessels, lowering the likelihood of recurrent stroke or other cardiovascular events.1

Physical activity also supports recovery in ways that directly impact daily life. Exercise may help restore mobility, which can improve the ability to walk, climb stairs, and move through activities of daily living with greater independence. 

Physical activity also affects mental health. Stroke survivors often experience depression or anxiety as they navigate the challenges of recovery. Regular physical activity has been shown to improve mood, reduce symptoms of depression, and enhance overall quality of life.2

Exercise also provides a sense of accomplishment, helps maintain social connections when done in group settings, and gives stroke survivors a way to contribute to their own recovery. Progress may look different for every person. For one survivor, progress may mean walking farther. For another, it may mean sitting upright longer, using the affected arm during a task, or completing more of a daily activity independently. The combination of physical, cardiovascular, and mental health benefits makes staying active one of the most important steps a stroke survivor can take.

Safety Considerations Before Starting Exercise

Before beginning any exercise program after stroke, survivors should get medical clearance from their healthcare team. A medical evaluation helps identify any complications or health conditions that might affect exercise safety or require special considerations.

Pre-screening is an important first step that helps healthcare providers place patients into different risk groups and decide how closely they need to be monitored during exercise.3 This evaluation usually looks at heart and blood vessel health, nervous system function, balance, and movement abilities. Based on the results, healthcare providers can decide which types of exercise and activity levels are safe and appropriate for each person’s current condition.

Customizing Your Plan

Exercise plans should be built around each survivor’s abilities, limitations, and recovery goals. What works for one person may not work for another depending on stroke severity, affected areas of the body, and other health conditions. A helpful exercise plan should consider more than strength. It should also account for balance, fatigue, pain, muscle tone or spasticity, vision changes, neglect, sensation loss, communication difficulties, and cognitive changes. Working with physical therapists, occupational therapists, or exercise specialists familiar with stroke recovery can help ensure the exercise program is safe and effective. These professionals can also design programs that gradually increase in difficulty as strength and endurance improve.

When to Stop Exercising

During exercise, stroke survivors should pay attention to their body’s signals. Monitoring heart rate can help ensure intensity stays within safe limits. Stop exercising immediately if you notice any of the following:

  • Chest pain
  • Severe shortness of breath
  • Dizziness
  • Unusual fatigue
  • Sudden changes in vision, speech, or coordination

Survivors should also be aware of their energy levels and avoid pushing through excessive fatigue, which can increase the risk of injury or setbacks in recovery.

Recommended Types of Physical Exercise and Activity for Stroke Survivors

Stroke rehabilitation guidelines recommend three types of exercise: aerobic activity, strength training, and balance and flexibility work.1 A well-rounded program includes all three and can be adapted to any ability level. In addition to structured exercise, everyday activities can also help stroke survivors stay physically active and support ongoing recovery.

Aerobic Exercise

Aerobic exercise improves cardiovascular fitness and endurance, both of which are important for reducing the risk of a second stroke. Walking can be an accessible option, and can be adapted to different ability levels. It can start with short distances around the home and gradually progress to longer walks outdoors or in the community. Stationary cycling is a good alternative for those with balance concerns, providing cardiovascular benefits while seated and supported. Swimming is another low-impact option that is gentle on the joints while building endurance.

Strength Training

Strength training helps rebuild muscle that may have weakened after stroke and supports the functional movements needed for daily activities. Survivors can use resistance bands, light weights, weight machines, or body weight exercises like modified push-ups or chair squats. Starting with light resistance and gradually increasing as strength improves helps prevent injury while building fitness over time.

Balance and Flexibility

Balance and flexibility exercises round out a complete program. Balance exercises like standing on one foot, heel-to-toe walking, or weight shifting help reduce fall risk and build confidence in movement. Flexibility exercises, including stretching and range-of-motion work, maintain joint mobility and prevent muscle stiffness. Many survivors find that yoga or tai chi programs adapted for their ability level provide both balance and flexibility benefits in a structured, supportive setting.

Everyday Physical Activity

Not all physical activity has to be structured exercise. For many stroke survivors, everyday tasks can also help improve strength, endurance, balance, and coordination. Activities such as preparing meals, cleaning the house, gardening, or completing personal care tasks all require movement and can support recovery. Depending on a person’s mobility and energy level, these daily activities may provide meaningful opportunities to stay active throughout the day. Occupational therapists can also recommend ways to adapt everyday tasks so they remain safe, manageable, and appropriate for each person’s abilities. Daily activities may need to be modified. A survivor may complete part of a task, perform it while seated, use adaptive equipment, or take rest breaks.

How to Prevent Falls and Injury

Staying safe during physical activity requires the right equipment and environment. Many stroke survivors use assistive devices such as canes, walkers, or ankle-foot braces during exercise to provide stability and support.4 Some survivors may use a walker for outdoor walking but practice standing balance exercises at home while holding onto a sturdy counter or chair for support. The goal is to challenge balance and strength safely while having support available when needed.

Exercise environments should be set up to minimize fall risk. This means choosing flat, uncluttered surfaces for walking or balance exercises, ensuring adequate lighting, and having stable furniture nearby for support if needed. Avoid using rolling chairs, lightweight furniture, towel racks, or unstable surfaces for support. Many stroke survivors benefit from exercising with supervision, at least initially, whether from a therapist, family member, or exercise partner who can provide assistance if balance becomes unsteady. As confidence and ability improve, the level of supervision can be reduced.

Starting exercise in controlled, safe settings and gradually progressing to more challenging environments helps build both physical capacity and confidence while minimizing injury risk. 

Building a Sustainable Routine

The key to long-term success with exercise after stroke is starting slowly and building gradually over time. As fitness improves, physical activity levels should build slowly, with increases happening over weeks and months instead of attempting rapid changes.5

This approach allows the body to adapt safely and reduces the risk of injury or burnout. A stroke survivor might start with just five to ten minutes of walking per day and gradually increase the duration by a few minutes each week. The same gradual progression applies to strength training, beginning with light resistance or fewer repetitions and slowly adding more as strength builds. Patience with this process is important, as rushing progression can lead to setbacks.

Incorporating physical activity into daily habits makes exercise more sustainable than treating it as a separate task to check off a list. This might mean taking a walk after breakfast each morning, doing strength exercises while watching a favorite television show, or building stretching into a bedtime routine.

Finding activities that are genuinely enjoyable increases the likelihood of sticking with exercise long-term.6 Whether that’s walking in a park, swimming, dancing to music, or gardening, choosing physical activities that match personal interests and abilities makes exercise feel less like work and more like a natural part of life.7

Setting realistic, specific goals also helps maintain motivation. Instead of a vague goal like “exercise more,” a concrete goal such as “walk for 15 minutes three times this week” provides clear direction and a sense of accomplishment when achieved.

Making Exercise a Safe Part of Stroke Recovery

Safe, consistent physical activity is one of the most important steps stroke survivors can take for both recovery and prevention. Exercise improves cardiovascular health, reduces the risk of recurrent stroke, supports mobility and balance, and enhances mental well-being. While concerns about safety and re-injury are natural, most stroke survivors can exercise safely with proper medical clearance, individualized plans, and appropriate precautions.

Starting slowly, progressing gradually, and choosing enjoyable activities that fit into daily routines can make physical activity more sustainable over the long term.

Frequently Asked Questions

How soon after a stroke can I start exercising?

The timeline varies depending on stroke severity and individual health conditions. Most survivors can begin light activity during inpatient rehabilitation, but the right time to start depends on medical clearance from your healthcare team. A pre-exercise evaluation helps identify any conditions that need special consideration before physical activity begins.3

Can stroke survivors exercise at home?

Yes, many stroke survivors can exercise safely at home. Walking, stretching, and body weight exercises like chair squats can all be done without a gym or special equipment. It helps to have a stable surface nearby for support, good lighting, and a family member or caregiver present, especially when first getting started.

What exercises should stroke survivors avoid?

There is no single list of exercises that all stroke survivors must avoid, since every recovery is different. However, high-intensity activity without medical clearance, exercises that challenge balance without any nearby support, and pushing through warning signs like chest pain, dizziness, or sudden fatigue are all situations to avoid. Your healthcare team can help identify any specific activities that may not be appropriate for your condition.3

How much exercise do stroke survivors need per week?

The American Heart Association recommends that stroke survivors work toward at least 150 minutes of moderate-intensity aerobic activity per week,1 along with strength training at least two days per week. For those just starting out, even five to ten minutes of walking per day is a meaningful first step.5 The goal is gradual, consistent progress over weeks and months rather than rapid increases in activity.

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References:

  1. Physical Activity and Exercise Recommendations for Stroke Survivors, American Heart Association/American Stroke Association, https://www.ahajournals.org/doi/10.1161/STR.0000000000000022
  2. Chronic Conditions & Disabilities Activity, Centers for Disease Control and Prevention, https://www.cdc.gov/physical-activity-basics/guidelines/chronic-health-conditions-and-disabilities.html
  3. Physical activity after stroke and spinal cord injury: Evidence-based recommendations on clearance for physical activity and exercise, National Institutes of Health, https://pmc.ncbi.nlm.nih.gov/articles/PMC3498020/
  4. Fitness and Mobility Exercise (FAME) Program for stroke, National Institutes of Health, https://pmc.ncbi.nlm.nih.gov/articles/PMC3266302/
  5. National Guidelines for Physical Activity, National Institutes of Health, https://www.ncbi.nlm.nih.gov/books/NBK585062/
  6. Exercise: 7 benefits of regular physical activity, Mayo Clinic, https://www.mayoclinic.org/healthy-lifestyle/fitness/in-depth/exercise/art-20048389
  7. Adding Physical Activity as an Adult, Centers for Disease Control and Prevention, https://www.cdc.gov/physical-activity-basics/adding-adults/index.html

Injectable Biomaterial Promotes Brain Repair After a Stroke

 Do you really think anyone in stroke is competent enough to get human testing going? I don't, everything in stroke IS A COMPLETE FUCKING FAILURE! Prove me wrong; failure is defined as not getting to 100% recovery! Don't try your tyranny of low expectations on me. Here; oc1dean@gmail.com, I'll print it verbatim with my reply. Have at it, or are you afraid to engage with a stroke-addled survivor?
Of course your competent? doctor can inform these researchers of earlier work.


Researchers find a copolymer scaffold potentially useful in brain repair after brain injury June 2015


Oriented Graphene Oxide Scaffold Promotes Nerve Regeneration in vitro and in vivo March 2024 

The latest here:

Injectable Biomaterial Promotes Brain Repair After a Stroke 

When someone has a stroke caused by a blood clot, doctors can quickly restore blood flow. However, they can’t easily replace the brain tissue that gets lost. Recovering this tissue usually means relying on rehab to help the remaining brain circuits adapt.

A team of biomedical engineers at Duke University has built an injectable biomaterial that could change stroke recovery.

Rebuilding the Brain’s Neighborhood

The research team isn’t attempting to rebuild the brain directly. Instead, they are setting up a scaffolding system to let the body do the work for them. They achieve this system using tiny hydrogel microparticles called MAPS. When the material is injected into the cavity caused by a stroke, it creates a porous structure for cells to grow on.

“Once brain tissue has been lost, restoring blood flow is no longer enough,” said Tatiana Segura, the Robert Plonsey Distinguished Professor of Biomedical Engineering at Duke. “Our goal is to engineer the injured space so that immune, vascular, and neural repair processes can begin to work together.”

The team attached specific signals to these particles so that the body’s immune cells could help. These signals come from astrocytes, which are star-shaped cells in the brain.

“We are not simply placing a material into the brain,” Segura added. “We are engineering a local environment that can coordinate several parts of the repair response.”

Surprising Helpers

The team found that certain signaling molecules attracted helpful immune cells, including the most common type of white blood cell: neutrophils. Usually, neutrophils cause inflammation right after a stroke. However, that wasn’t the case in this scenario.

“This result changes how we think about neutrophils after stroke,” said Shangjing Xin, lead scientist of the study and a postdoctoral fellow in the Segura Laboratory. “Their role appears to depend on when they arrive, where they are located, and the signals they receive from their surroundings. Our study demonstrates a potential engineering strategy to recruit and retain these cells at the right time.”

In mouse tests, this treated scaffold helped grow new blood vessels and improved movement. By eight weeks, the mice performed like healthy controls on a coordination test.

Right now, the work is still preclinical. The team is looking at using human cells next to make it scalable.

“You do not restore an ecosystem simply by containing the initial damage. You have to create the conditions that allow life to return. That is how we think about the stroke cavity,” Segura said. “The material is not intended to reproduce the brain itself, but to create an environment where the body’s own cells can enter, communicate and participate in rebuilding vascularized tissue.”