Heel Pain

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7 Heel Pain Trials Near You

Power is an online platform that helps thousands of Heel Pain patients discover FDA-reviewed trials every day. Every trial we feature meets safety and ethical standards, giving patients an easy way to discover promising new treatments in the research stage.

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No Placebo
Highly Paid
Stay on Current Meds
Pivotal Trials (Near Approval)
Breakthrough Medication
The goal of this clinical trial is to compare the effects of 8 weeks of foot rehabilitation exercises in conjunction with wearing minimalist shoes in individuals with plantar fasciopathy, compared to only performing foot rehabilitation exercises. The main questions it aims to answer are: * Will individuals with plantar fasciopathy be able to reduce their pain and improve their self-reported function by performing rehabilitation exercises and wearing minimalist shoes, compared to those only performing rehabilitation exercises? * Will individuals with plantar fasciopathy be able to increase their intrinsic foot muscle strength and size, their balance, and gait biomechanics by performing rehabilitation exercises and wearing minimalist shoes, compared to those only performing rehabilitation exercises? * What characteristics of individuals with plantar fasciopathy make them most suited to succeed in a protocol of performing rehabilitation exercises and wearing minimalist shoes? Participants will be asked to come into the lab at the start of the intervention and after 8 weeks, where the following will be assessed: * Patient-reported outcomes * Foot morphology * Intrinsic foot muscle strength * Balance * Gait biomechanics For the intervention, participants in both groups will perform the same rehabilitation exercises, including: * Massage to the bottom of the foot * Calf-raises * Calf and foot stretches
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased
Age:18 - 55

34 Participants Needed

This study evaluates the feasibility and safety of using Lipiodol (ethiodized oil) as an investigational embolic agent for treating pain caused by plantar fasciitis. Participants will undergo a minimally invasive procedure called plantar fascia embolization (PFE) to reduce inflammation and pain in the affected area. The study aims to assess changes in pain levels, foot function, and any potential side effects over a six-month follow-up period.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased
Age:22 - 100

10 Participants Needed

The primary aim of this clinical experiment is to compare, in terms of pain relief measured using the 10-cm visual analog scale (VAS) pain score (5-7), the clinical results of ultrasound-guided injection (USGI) versus anatomic topography-guided injection (ATGI) of corticosteroid for the treatment of proximal PF. Secondary aims will be to compare foot-related quality of life, as measured using the Foot Function Index (FFI)and the Bristol Foot Score (BFS), between the injection groups, and also to compare the pre-injection to late-term post-injection thickness of the plantar fascia as measured in the nested USGI group.
No Placebo Group

Trial Details

Trial Status:Recruiting

62 Participants Needed

This trial tests a new method using 3D printing to make custom foot inserts for people with plantar fasciitis. It aims to see if these inserts work better than traditional ones and if patients are satisfied with them. 3D printed foot orthoses have been shown to be effective in treating various foot conditions, including plantar fasciitis, by improving foot biomechanics and comfort.
No Placebo Group

Trial Details

Trial Status:Active Not Recruiting
Trial Phase:Unphased

30 Participants Needed

Inflammation of the plantar fascia is known as plantar fasciitis and is commonly seen in active or overweight individuals. It can be treated via conservative or surgical therapies. Extracorporeal shockwave therapy has shown promise in the treatment of plantar fasciitis. Several studies have compared the effects of different types of extracorporeal shockwave therapy (radial and focused) with other forms of conservative treatment in patients with chronic plantar fasciitis. No study has yet compared the effect of radial vs. focused shockwave therapy on pain in this population.
No Placebo Group

Trial Details

Trial Status:Active Not Recruiting
Trial Phase:Unphased

114 Participants Needed

Plantar fasciitis (PF), a degenerative injury of the connective tissue in the foot, results in pain-related disability in Service Members and contributes to decreased physical activity and excessive healthcare costs. Even if effective, current treatment protocols may require 6-12 months of therapy to return individuals to pain-free activity. Photobiomodulation therapy (PBMT) uses non-ionizing light to elicit biological changes in tissues resulting in beneficial therapeutic outcomes. Evidence supports use of PBM for other degenerative connective tissue conditions, such as achilles tendinopathy and epicondylitis. A previous pilot study was completed in an active-duty military and civilian population, which demonstrated a positive effect of two PBM dose parameters on function and pain levels in participants with chronic PF when combined with stretching and ice. These positive findings from the aforementioned study are promising in the treatment of this common and debilitating issue, but require the addition of a sham comparison to rigorously eliminate any potential placebo effect of the treatment protocol, and further refine the treatment protocol in order to make evidence-based clinical recommendations. As such, proposing a follow-up study and the addition of an objective outcome measure will strengthen the impact of the study. SPECIFIC AIM 1: To assess the clinical effectiveness of photobiomodulation compared to sham photobiomodulation to improve function and decrease pain. SPECIFIC AIM 2: To evaluate the effectiveness of photobiomodulation compared to sham photobiomodulation to resolve plantar fascial thickening. DESIGN: A prospective randomized sham-controlled trial to meet the aims of the study. METHOD: A sample of up to 100 active-duty military members will be randomly assigned to the Sham-PBMT or PBMT group. At baseline, during the treatment protocol, and at long-term (3 and 6 months) follow-up, measures of foot function, pain, and plantar fascial thickness will be collected for analysis. The proposed methods will allow the study team to establish if PBMT is clinically effective to accelerate recovery compared to Sham-PBMT and result in resolution of fascial thickening, decrease in pain, and improved function. LONG-TERM GOAL: The long-term goals of the research include developing PBMT protocols for broad application to other painful and duty-limiting conditions.

Trial Details

Trial Status:Active Not Recruiting
Trial Phase:Unphased
Age:18 - 64

100 Participants Needed

The investigators are trying to study that there is no difference in improvement of motion between static progressive and dynamic splinting.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased

200 Participants Needed

Why Other Patients Applied

"I've tried several different SSRIs over the past 23 years with no luck. Some of these new treatments seem interesting... haven't tried anything like them before. I really hope that one could work."

ZS
Depression PatientAge: 51

"I've been struggling with ADHD and anxiety since I was 9 years old. I'm currently 30. I really don't like how numb the medications make me feel. And especially now, that I've lost my grandma and my aunt 8 days apart, my anxiety has been even worse. So I'm trying to find something new."

FF
ADHD PatientAge: 31

"I have dealt with voice and vocal fold issues related to paralysis for over 12 years. This problem has negatively impacted virtually every facet of my life. I am an otherwise healthy 48 year old married father of 3 living. My youngest daughter is 12 and has never heard my real voice. I am now having breathing issues related to the paralysis as well as trouble swallowing some liquids. In my research I have seen some recent trials focused on helping people like me."

AG
Paralysis PatientAge: 50

"I changed my diet in 2020 and I’ve lost 95 pounds from my highest weight (283). I am 5’3”, female, and now 188. I still have a 33 BMI. I've been doing research on alternative approaches to continue my progress, which brought me here to consider clinical trials."

WR
Obesity PatientAge: 58

"I was diagnosed with stage 4 pancreatic cancer three months ago, metastatic to my liver, and I have been receiving and responding well to chemotherapy. My blood work revealed that my tumor markers have gone from 2600 in the beginning to 173 as of now, even with the delay in treatment, they are not going up. CT Scans reveal they have been shrinking as well. However, chemo is seriously deteriorating my body. I have 4 more treatments to go in this 12 treatment cycle. I am just interested in learning about my other options, if any are available to me."

ID
Pancreatic Cancer PatientAge: 40

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Why We Started Power

We started Power when my dad was diagnosed with multiple myeloma, and I struggled to help him access the latest immunotherapy. Hopefully Power makes it simpler for you to explore promising new treatments, during what is probably a difficult time.

Bask
Bask GillCEO at Power
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Frequently Asked Questions

How much do Heel Pain clinical trials pay?

Each trial will compensate patients a different amount, but $50-100 for each visit is a fairly common range for Phase 2–4 trials (Phase 1 trials often pay substantially more). Further, most trials will cover the costs of a travel to-and-from the clinic.

How do Heel Pain clinical trials work?

After a researcher reviews your profile, they may choose to invite you in to a screening appointment, where they'll determine if you meet 100% of the eligibility requirements. If you do, you'll be sorted into one of the treatment groups, and receive your study drug. For some trials, there is a chance you'll receive a placebo. Across Heel Pain trials 30% of clinical trials have a placebo. Typically, you'll be required to check-in with the clinic every month or so. The average trial length for Heel Pain is 12 months.

How do I participate in a study as a "healthy volunteer"?

Not all studies recruit healthy volunteers: usually, Phase 1 studies do. Participating as a healthy volunteer means you will go to a research facility several times over a few days or weeks to receive a dose of either the test treatment or a "placebo," which is a harmless substance that helps researchers compare results. You will have routine tests during these visits, and you'll be compensated for your time and travel, with the number of appointments and details varying by study.

What does the "phase" of a clinical trial mean?

The phase of a trial reveals what stage the drug is in to get approval for a specific condition. Phase 1 trials are the trials to collect safety data in humans. Phase 2 trials are those where the drug has some data showing safety in humans, but where further human data is needed on drug effectiveness. Phase 3 trials are in the final step before approval. The drug already has data showing both safety and effectiveness. As a general rule, Phase 3 trials are more promising than Phase 2, and Phase 2 trials are more promising than phase 1.

Do I need to be insured to participate in a Heel Pain medical study?

Clinical trials are almost always free to participants, and so do not require insurance. The only exception here are trials focused on cancer, because only a small part of the typical treatment plan is actually experimental. For these cancer trials, participants typically need insurance to cover all the non-experimental components.

What are the newest Heel Pain clinical trials?

Most recently, we added Lipiodol Injection for Plantar Fasciitis, Foot Rehab + Minimalist Shoes for Plantar Fasciitis and Night Splinting for Plantar Fasciitis to the Power online platform.

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