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Bone spur ankle image. Bone Spurs: Causes, Symptoms, and Treatment Options for Joint Pain Relief

What are bone spurs and how do they form. How can bone spurs be diagnosed and treated effectively. What lifestyle changes can help prevent or manage bone spur pain. How do bone spurs impact different joints in the body.

Understanding Bone Spurs: Formation and Common Locations

Bone spurs, also known as osteophytes, are bony projections that develop along the edges of bones. These hard lumps typically form where bones meet each other in joints. While bone spurs can develop in various locations throughout the body, they commonly occur in weight-bearing joints like the spine, hips, knees, and feet.

How do bone spurs form. The body creates bone spurs as a response to prolonged pressure, rubbing, or stress on a bone or joint. Over time, this triggers the body to produce extra bone tissue as a protective mechanism. Common causes include:

  • Osteoarthritis and joint degeneration
  • Repetitive stress injuries
  • Poor posture
  • Genetics
  • Obesity
  • Aging

While many bone spurs cause no symptoms, they can become problematic when they press on nerves, tendons, or other tissues. This can lead to pain, inflammation, and reduced range of motion in the affected joint.

Diagnosing Bone Spurs: Imaging Techniques and Clinical Evaluation

Proper diagnosis of bone spurs is crucial for effective treatment. Healthcare providers use a combination of clinical evaluation and imaging studies to identify and assess bone spurs.

Clinical Examination

During a physical exam, a doctor will check for:

  • Pain or tenderness in the affected area
  • Reduced range of motion
  • Visible lumps or deformities
  • Numbness or tingling sensations

Imaging Studies

Various imaging techniques can be used to visualize bone spurs:

  1. X-rays: Provide clear images of bone structures and can reveal the presence and location of bone spurs
  2. CT scans: Offer detailed cross-sectional images to assess the size and shape of bone spurs
  3. MRI: Useful for evaluating soft tissue involvement and detecting any nerve compression

Are bone spurs always visible on X-rays. While X-rays are often effective in identifying bone spurs, smaller spurs or those in early stages of development may not always be clearly visible. In such cases, additional imaging studies may be necessary for accurate diagnosis.

Treatment Options for Bone Spurs: Conservative Approaches and Surgical Interventions

The treatment of bone spurs depends on their location, severity, and impact on daily life. Many cases can be managed with conservative approaches, while more severe cases may require surgical intervention.

Conservative Treatment Options

Non-surgical treatments for bone spurs include:

  • Rest and activity modification
  • Physical therapy and stretching exercises
  • Over-the-counter pain medications (NSAIDs)
  • Ice or heat therapy
  • Orthotics or supportive footwear
  • Corticosteroid injections

How effective are conservative treatments for bone spur pain. Many patients experience significant relief with non-surgical approaches. However, the effectiveness can vary depending on the individual case and the underlying cause of the bone spur.

Surgical Interventions

When conservative treatments fail to provide adequate relief, surgical options may be considered:

  1. Arthroscopic surgery: Minimally invasive procedure to remove bone spurs and repair damaged tissue
  2. Open surgery: Traditional surgical approach for more complex cases
  3. Joint replacement: In severe cases where joint damage is extensive

Surgery aims to remove the bone spur and address any underlying joint issues. The specific surgical approach depends on the location and severity of the bone spur, as well as the patient’s overall health and lifestyle factors.

Bone Spurs in the Foot and Ankle: Plantar Fasciitis and Heel Pain

Bone spurs in the foot, particularly in the heel area, are often associated with conditions like plantar fasciitis and can cause significant discomfort. Understanding the relationship between bone spurs and foot pain is crucial for effective management.

Plantar Fasciitis and Heel Spurs

Plantar fasciitis is a common cause of heel pain, often accompanied by the development of heel spurs. These spurs form on the underside of the heel bone (calcaneus) where the plantar fascia attaches.

Why do heel spurs form in cases of plantar fasciitis. Heel spurs develop as a response to chronic stress and inflammation of the plantar fascia. As the body attempts to repair and strengthen the area, it may produce excess bone tissue, resulting in a spur formation.

Symptoms and Diagnosis

Common symptoms of heel spurs associated with plantar fasciitis include:

  • Sharp pain in the heel, especially with the first steps in the morning
  • Pain that worsens after prolonged standing or activity
  • Tenderness on the underside of the heel

Diagnosis typically involves a combination of physical examination and imaging studies, such as X-rays or ultrasound, to visualize the bone spur and assess the condition of the plantar fascia.

Treatment Approaches

Treatment for heel spurs and plantar fasciitis often focuses on addressing the underlying inflammation and reducing stress on the plantar fascia. Common approaches include:

  1. Stretching exercises for the calf muscles and plantar fascia
  2. Orthotic inserts or custom shoe insoles
  3. Night splints to maintain a stretched position of the plantar fascia
  4. Physical therapy modalities such as ultrasound or shockwave therapy
  5. Corticosteroid injections for severe cases

In most cases, conservative treatments effectively manage heel spur pain. Surgical intervention is rarely necessary and is typically only considered when conservative approaches fail to provide relief after an extended period.

Bone Spurs in the Spine: Impact on Nerve Compression and Mobility

Bone spurs in the spine, also known as osteophytes, can significantly impact spinal health and overall mobility. These bony projections often develop as a result of degenerative changes in the spine, such as those associated with osteoarthritis or age-related wear and tear.

Spinal Bone Spur Formation

Spinal bone spurs typically form in response to chronic stress or instability in the spine. Common locations include:

  • Facet joints between vertebrae
  • Edges of vertebral bodies
  • Areas where ligaments and tendons attach to the spine

How do spinal bone spurs affect nerve function. As bone spurs grow, they can encroach on the space occupied by spinal nerves or the spinal cord itself. This can lead to nerve compression, resulting in pain, numbness, tingling, or weakness in the affected area.

Symptoms of Spinal Bone Spurs

The symptoms of spinal bone spurs can vary depending on their location and severity. Common symptoms include:

  1. Localized pain in the affected area of the spine
  2. Radiating pain along the path of compressed nerves
  3. Numbness or tingling in the extremities
  4. Muscle weakness
  5. Reduced range of motion in the spine

In some cases, spinal bone spurs may not cause any noticeable symptoms, particularly if they do not compress nearby nerves or tissues.

Diagnosis and Treatment

Diagnosing spinal bone spurs typically involves a combination of clinical evaluation and imaging studies. X-rays, CT scans, and MRI can help visualize the bone spurs and assess their impact on surrounding structures.

Treatment approaches for spinal bone spurs may include:

  • Physical therapy to improve spinal flexibility and strength
  • Pain management techniques, including medications and injections
  • Lifestyle modifications to reduce stress on the spine
  • Surgical intervention in severe cases, such as laminectomy or foraminotomy

The choice of treatment depends on the severity of symptoms, the extent of nerve compression, and the patient’s overall health and preferences.

Preventing Bone Spurs: Lifestyle Modifications and Proactive Measures

While it may not always be possible to prevent bone spurs entirely, certain lifestyle modifications and proactive measures can help reduce the risk of their formation and minimize associated symptoms.

Maintaining a Healthy Weight

Excess body weight places additional stress on joints, increasing the likelihood of bone spur formation. Maintaining a healthy weight through proper diet and exercise can help reduce this risk.

How does weight loss impact existing bone spurs. While weight loss may not reverse existing bone spurs, it can significantly reduce the pressure on affected joints, potentially alleviating pain and slowing the progression of joint degeneration.

Regular Exercise and Stretching

Engaging in regular low-impact exercises and stretching routines can help:

  • Improve joint flexibility and range of motion
  • Strengthen muscles supporting the joints
  • Enhance overall joint health

Recommended activities include swimming, cycling, yoga, and tai chi. It’s important to choose exercises that do not exacerbate existing joint pain or discomfort.

Proper Posture and Ergonomics

Maintaining good posture and ergonomics in daily activities can help reduce stress on joints and minimize the risk of bone spur formation. This includes:

  1. Using ergonomic furniture and equipment at work
  2. Practicing proper lifting techniques
  3. Avoiding prolonged periods of sitting or standing
  4. Using supportive footwear

Nutritional Support

A balanced diet rich in essential nutrients can support overall joint health and potentially reduce the risk of bone spur formation. Key nutrients include:

  • Calcium and vitamin D for bone health
  • Omega-3 fatty acids for their anti-inflammatory properties
  • Vitamin C and other antioxidants to support collagen production

Can dietary supplements prevent bone spurs. While no specific supplement has been proven to prevent bone spurs, maintaining adequate levels of essential nutrients through diet or supplementation can support overall joint health and potentially reduce the risk of bone spur formation.

The Role of Physical Therapy in Managing Bone Spur Pain

Physical therapy plays a crucial role in the conservative management of bone spur-related pain and dysfunction. A tailored physical therapy program can help improve joint function, reduce pain, and enhance overall quality of life for individuals affected by bone spurs.

Goals of Physical Therapy for Bone Spurs

The primary objectives of physical therapy in treating bone spurs include:

  • Reducing pain and inflammation
  • Improving joint mobility and flexibility
  • Strengthening supporting muscles
  • Enhancing overall function and quality of life
  • Preventing further joint degeneration

Common Physical Therapy Techniques

Physical therapists employ a variety of techniques to address bone spur-related issues:

  1. Manual therapy: Hands-on techniques to improve joint mobility and reduce pain
  2. Therapeutic exercises: Tailored exercises to improve strength, flexibility, and range of motion
  3. Modalities: Use of heat, cold, ultrasound, or electrical stimulation for pain relief
  4. Gait training: Improving walking patterns to reduce stress on affected joints
  5. Postural education: Teaching proper body mechanics to minimize joint stress

How long does it take to see results from physical therapy for bone spurs. The timeline for improvement can vary depending on the individual case, the severity of the condition, and adherence to the prescribed program. Many patients begin to experience some relief within a few weeks, but a full course of therapy may last several months for optimal results.

Home Exercise Programs

In addition to in-clinic sessions, physical therapists often prescribe home exercise programs to complement treatment. These may include:

  • Stretching routines for affected muscles and joints
  • Strengthening exercises using bodyweight or light resistance
  • Low-impact aerobic activities to improve overall conditioning
  • Self-massage techniques for pain relief

Consistent performance of prescribed home exercises is crucial for maximizing the benefits of physical therapy and achieving long-term management of bone spur-related symptoms.

Integrating Physical Therapy with Other Treatments

Physical therapy often works best when integrated with other treatment approaches. This may include:

  1. Coordination with pain management specialists for medication or injection therapies
  2. Collaboration with orthopedic surgeons for pre- and post-surgical rehabilitation
  3. Integration of complementary therapies such as acupuncture or massage

A comprehensive, multidisciplinary approach to bone spur management can provide the best outcomes for patients, addressing both the symptoms and underlying causes of joint dysfunction.

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Haustiere – dünne Linie Vektor-Icon-Set. Bearbeitbarer Strich. Pixelgenau. Set enthält solche Symbole wie Hund, Katze, Haustiere, Vogel, Fisch, Hamster, Maus, Kaninchen, Tiernahrung, Tierhandlung, Vogelkäfig.

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Gray, tiergerechtes Fliesen Muster wiederholen Hintergrund

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Linie-Haustier-Symbole

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Nahtlose Muster: Haustiere erlaubt

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Tier nahtlose Vektor-Muster der Pfote Fußabdruck und Knochen. …

orthopädische schaumstoffabdrücke oder schimmelmessung aus dem block, um maßgeschneiderte orthesen oder orthopädische einlagen zu erstellen – bone spur stock-fotos und bilder

Orthopädische Schaumstoffabdrücke oder Schimmelmessung aus dem. ..

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Mensch-Fußabdruck-Symbol.

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Urzeitlichen Bird

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orthopädische schaumstoffabdrücke oder schimmelmessung aus dem block, um maßgeschneiderte orthesen oder orthopädische einlagen zu erstellen – bone spur stock-fotos und bilder

Orthopädische Schaumstoffabdrücke oder Schimmelmessung aus dem…

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Fossiler spiralförmiger Schneckenstein echte alte versteinerte…

Heel spur, causes, symptoms, treatment

Heel spur is a bony growth in the plantar surface of the calcaneus. Its appearance is associated with constant irritation of the place of attachment to the heel bone of the plantar aponeurosis. This irritation usually occurs with increased physical exertion on the foot.

The main cause of the formation of a bone outgrowth in the calcaneus is the constant irritation of the place of attachment to the bone of the tendons or ligaments, in particular, the plantar aponeurosis. As a result of constant irritation in this area, inflammation occurs. That is what is causing the pain. Gradually, the place of attachment of the inflamed ligament or aponeurosis undergoes “calcification” – that is, as if “impregnated” with calcium salts. In this period, when radiography of the foot, you can see the shadow of the bone growth – osteophyte .

Major risk factors for heel spurs :

  • Age over 40 years.
  • Comorbidities in the joints of the foot, such as osteoarthritis or rheumatoid arthritis.
  • Violation of blood microcirculation in the foot.
  • Other degenerative diseases.

Symptoms of a heel spur

Symptoms of a heel spur do not appear immediately after the formation of a bone growth. Due to the proximity of the tendons, a heel spur can cause constant pain in the foot. Heel spur pain is described as similar to toothache.

It should be noted that the pain of a heel spur is not due to the pressure of body weight on the spur itself, but due to inflammation of the soft tissues around the spur. The pressure of these inflamed tissues, for example, when stepping on the heel, leads to sharp pains. Usually, pain most often occurs at the very beginning of walking. This is explained as follows. At rest, the nerves and capillaries in the area of ​​the inflamed tissue, as it were, adapt to the rest of the foot. However, with a sharp start of movement, the vessels and nerves do not have time to adapt to new conditions. As a result, pain occurs.

Diagnosis

Performed by routine inspection and feel of the sole and heel. At the same time, the most painful point is located. The spur itself is usually not palpable, however, due to chronic inflammation of the soft tissues, their compaction can develop, which can be felt.

X-ray of the foot allows to clarify the diagnosis. In this case, the bone growth is visible on the x-ray.

Heel spur treatment

Treatment of a heel spur often is carried out conservatively and is aimed at three main points:

  • Elimination of inflammation of the soft tissues around the spur;
  • Prevention of inflammation;
  • Removal of the heel spur itself.

Patients come to the Orthopedics and Sports Injury Clinic of the Zaporozhye Regional Hospital with different problems, but with the same goal – to move freely again without pain and enjoy life. Natalya Borisovna from the Tokmak region was deprived of this happiness by a heel spur.

A woman says that she has suffered from heel spurs for years. I tried to defeat inflammation with the help of physiotherapy, all kinds of medicines and folk remedies, but they did not solve the problem, but only dulled the pain in the joint. Own house in the village, household, work – it became more and more difficult to live in the same rhythm. One day, Natalia Borisovna was suggested to go to the Orthopedics and Sports Injury Clinic , one of the best in Ukraine.

After consultation, the diagnosis of heel spur » was confirmed – the bone growth was clearly visible on the x-ray. At the appointment, the specialists of the clinic explained to the woman that the methods she had hoped for were effective only at the very beginning of the disease. And since Natalya Borisovna’s heel spur has been preventing her from living a normal life for years, the operation was the only right decision. Moreover, it was by no means impossible to delay the intervention.

“The patient needed to have her spur removed as soon as possible. She was at high risk of tearing her Achilles tendon where it attaches to her calcaneus. If we had not carried out the treatment, the growths would have become more and more. Therefore, in order to prevent a complex and risky operation to restore the Achilles tendon, we decided not to waste time and remove the spur,” comments Ivan Zabelin, head of the Orthopedics and Sports Injury Clinic.

X-ray image before the operation . The patient is now feeling much better and is already planning treatment for a heel spur on her second leg. While she moves on crutches (as it should be after the operation), but in two weeks the woman will fully feel the effect of the treatment.

Spurs may look spectacular on shoes, but for our feet they are a dubious “decoration”. Natalya Borisovna recalls how much she had to go through because of a heel spur: dozens of sessions of painful procedures, droppers, vain courses of treatment that brought only short-term relief. The desired result – the opportunity to live like everyone else, work and not suffer from pain, operations in our clinic brought her.

Treatment Heel spur – Orthopedics Ruslana Sergienko

A heel spur is the result of plantar fasciitis, the main symptom of which is pain in the heel that occurs or worsens with exercise. In most cases, the pain syndrome is caused by inflammatory and degenerative changes in the plantar (plantar) fascia.

The plantar fascia is a rigid tendon plate, woven from a huge number of microfibers, which is attached to the calcaneus and metatarsal heads, creating a kind of protective cover for the plantar surface of the foot.

As can be seen from the figure, the plantar fascia is stretched like a bowstring between the bones, the so-called arch of the foot. Imagine that with every step this kind of bowstring is pulled, holding this arch, preventing the bones of the foot from “parting”.

The constant load of body weight, overload during hard work, changes in posture due to diseases of the back lead to the appearance of microdamages in the places of attachment of the plantar fascia to the bones. As can be seen from the figure, the place of attachment of the “string” to the metatarsal bones is divided into five points, while on the heel there is only one point of attachment. The load is 5 times more on the heel, so the disease starts from the heel.

There is a microdamage (tear or rupture) of one of the many thin fibers of the plantar fascia. The body reacts in a standard way – inflammation develops. Inflammation leads to the formation of edema, abnormal germination of microvessels and small nerve branches into the damaged fascia, and pain occurs. The pain is especially severe after a night’s sleep and rest, the so-called “starting pain”.

The fibers of the plantar fascia that have remained intact begin to work instead of the torn ones, experiencing an increased load, and are also damaged.

Inflammation and pain progress, forcing to reduce the load. Human activity is reduced, new fibers are not damaged. The inflammatory process subsides, scars form at the site of the damaged fibers, and then bone growths that are visible on the x-ray and have a characteristic “spur” appearance.

That is why this disease is called “heel spur”, although the “spur” itself is already the result of long-term plantar fasciitis.

Who is more likely to suffer from heel spurs?

Heel spurs mainly affect people over 40 years of age, and women are more predisposed to this disease. The likelihood of developing heel spurs is increased by excess weight, problems with the spine, arthritis, flat feet, diseases of the large joints of the legs, injuries of the calcaneus, gout, circulatory disorders in the legs. Also, the heel spur is found in athletes with prolonged loads in the heel area.

What are the symptoms of a heel spur?

The leading symptom of heel spurs (plantar fasciitis) is pain in the heel region that occurs or worsens with exercise. Pain is more pronounced in the morning. In most cases, the diagnosis of plantar fasciitis is sufficient to analyze the patient’s complaints, physical examination and X-ray, which reveal the presence of a heel spur. The absence of radiological signs of a heel spur in combination with heel pain requires a differential diagnosis with systemic inflammatory diseases (rheumatoid arthritis, Reiter’s syndrome, etc. ), which can also debut with heel pain. In this case, the diagnosis of plantar fasciitis can be established using an ultrasound examination.

What is the treatment for heel spurs?

First, get rid of overloads.

This does not mean completely abandoning any movement. This means that a painless range of motion should be performed. For example, you have noticed that it is worth standing for 2 hours, the pain increases. Try to stand for 2 hours with breaks, for example 15 minutes. Or you walk 4 kilometers and experience pain. Try to walk 2 kilometers or the same 4 kilometers, but at a slow pace. Sports doctors have proven that continuing exercise in a “sparing mode” has a greater effect on the result of treatment than refusing to exercise at all.

Stretching and strengthening.

The stretching and strengthening program plays an important role in the treatment of the disease, as it can effectively relax cramped calf muscles or strengthen weak foot muscles. Why stretching or “stretching” is effective? It loosens the tension and reduces the risk of breaking the “bowstring”. A less taut plantar fascia is not damaged as much. Do these exercises at home.
The easiest way to stretch is using a support wall: Or steps: Another effective stretching method is to use footrests that can be used in the workplace, such as under a desk or in the kitchen, thus increasing the time for such “on-the-job” activities. . The use of “rocking chairs”, widely used to prevent salt deposits, is a type of “dynamic stretching” of the plantar fascia. For the same purpose, you can use a tennis ball or an iron can: Before getting out of bed, it is useful to perform a massage in the sole area to reduce pain:
or stretching with a towel: Strengthening the small muscles of the foot.
By performing 2 simple exercises, you can achieve a significant increase in strength in the small muscles of the foot, which will lead to unloading of the plantar fascia.

  1. Towel pull up. The patient sits on a chair, the towel lies on the smooth floor in front of him. The patient puts his toes on the towel and, without taking his heel off the floor, bending his toes, pulls the towel towards him.
  2. Raising fingers up. The patient sits on a chair, the foot is placed on the floor, the toes are raised up. First, the thumb is placed on the floor, and the rest remain raised. Then the thumb is raised and remains in this position, and the rest are lowered and placed on the floor.

About 35% of patients achieve regression of symptoms only with the help of stretching and muscle strengthening.

Shoes.

It is not uncommon for plantar fasciitis to develop after wearing uncomfortable, especially tight shoes or shoes with excessively hard soles. People who suffer from plantar fasciitis may find that wearing sneaker-type shoes with soft, springy soles and an insole that hugs the arch of the foot significantly reduces pain. This is not surprising. The springy outsole absorbs impact when walking, while the arch-fitting insole supports it and transfers the load directly to the bones, bypassing the plantar fascia.

It should also be noted that over time, the properties of the polymeric materials from which shoes are made change, so such shoes need to be changed in a timely manner.

Insoles.

As far as insoles are concerned, it can be said that only custom-made devices, made on the basis of modern footprint equipment, can help in the treatment of fasciitis. The insoles do not act on the fasciitis itself, but by correcting violations of the arch of the foot, for example, with flat feet. Incorrectly selected insoles can worsen the patient’s condition.

Night immobilizing dressings.

The purpose of immobilization bandages is to keep the ankle joint in a neutral position. It is noted that the vast majority of people sleep with outstretched socks. In this position, the places of attachment of the plantar fascia to the bones come together, which causes it to shorten over time. This is what causes morning pain in the foot. The person spent the whole night with outstretched socks, and in the morning he gets on his feet, sharply stretching the inflamed plantar fascia. The immobilizing bandage keeps the bones from coming together, and the plantar fascia does not contract overnight, which reduces morning pain.

An overnight immobilizing bandage can be made from plaster or polymeric bandages, or purchased ready-made from those sold at a pharmacy.
An example of a nightly immobilizing bandage: Of course, sleeping in a cast is not very comfortable, but studies have shown that this method is effective in 80% of patients. Night immobilizing dressings are especially effective in patients with a long period of the disease (about 12 months or more).

Anti-inflammatory treatment for heel spurs.

Anti-inflammatory treatment of heel spurs includes ice, NSAIDs, electrophoresis and hormonal injections.

Ice is used in the form of ice massages, ice baths or ice packs.
Ice massage: the patient takes an ice cube, places it over the area of ​​pain and performs circular movements with slight pressure for 5 to 10 minutes.

Ice bath: fill a shallow container with ice water, place only the heel in it and hold for 10 to 15 minutes. Do not lower other parts of the foot into the water to avoid hypothermia.

Ice pack: Place crushed ice in a plastic bag, wrap in a towel and apply to the heel for 15 to 20 minutes. Instead of crushed ice, you can use a bag of frozen food.

Ice is applied after exercise or after a working day.

Non-steroidal anti-inflammatory drugs (eg diclofenac or nimesulide).

Non-steroidal anti-inflammatory drugs have been studied for plantar fasciitis with conflicting results. Therefore, they are recommended only in case of increased pain, given the side effects of these drugs, which include gastrointestinal bleeding, gastritis, damage to kidney tissue.

Electrophoresis.

Electrophoresis is a physiotherapy procedure that uses the properties of low voltage electrical impulses to deliver corticosteroid (hormonal) drugs deep into tissues. Studies of the effectiveness of this treatment method showed that within 2-3 weeks after the end of the procedure, the therapeutic effect decreases.

Corticosteroid injections.

Corticosteroid injections are effective in up to 70% of patients, but are known to rupture the plantar fascia in up to 10% of patients. It is known that the introduction of corticosteroids into any tissue leads to its death at the injection site. Therefore, this method of treatment should be used with extreme caution.

Shockwave Therapy is a highly effective non-surgical method of treating heel spurs, approved by the US Department of Health analogue as the main one for this particular disease, based on the action of acoustic shock waves. The method of shock wave therapy has been used for a long time to crush stones in the urinary tract. This is the so-called intracorporeal (conducted inside the body) shock wave therapy. Unlike devices for crushing kidney stones (lithotripters), in devices for extracorporeal (used on the surface of the body) shock wave therapy, the acoustic wave is much less powerful. Its action is based on the stimulation of regenerative processes in areas of chronic tendon inflammation and nonunion fractures.

Shock wave therapy does not break up heel spurs as is commonly believed. It sharply enhances regeneration at the site of damage to the plantar fascia, stops long-term inflammation, thereby, on the contrary, preventing the development of heel spurs. The shock wave in orthopedics does not destroy, but restores.

The effectiveness of shock wave therapy is comparable to surgical treatment, since more than 93% of patients report a pronounced and persistent clinical effect. However, unlike surgical treatment, shock wave therapy is a painless method of treatment that does not require anesthesia and the patient’s stay in the hospital.
Shock wave therapy is a safe method of treating heel spurs, it has a complex effect and eliminates the cause of the heel spur.
Effects of shock wave therapy:

  • reduction of pain and inflammation
  • improvement of blood circulation and nutrition of damaged tissues
  • destruction of calcifications, bone “growths”
  • accelerate the healing of damaged tissues
  • increased mobility in the injured area of ​​the body
  • increasing the resistance of tendons, ligaments and muscles to physical stress and injury

Advantages of shock wave therapy:

  • high clinical efficacy – up to 93% of patients have a clinical effect
  • rapid onset of clinical effect – reduction of pain, swelling, improvement of mobility
  • stable clinical effect of the course lasts up to 1 year
  • patient safety – no complications or side effects
  • convenience of treatment for the patient – the session lasts 5-10 minutes, the frequency of the procedure is 1 time per week, 5-7 sessions are enough for a complete recovery
  • reduction in the need for drugs or complete elimination of them
  • is an optimal replacement for surgery and injections.