View clinical trials related to Neck Pain.
Filter by:Case series, repeated-measures design, pilot study. Adult, female, migraine patients underwent seven Ischemic Compression Myofascial Trigger Points (IC-MTrPs) therapy sessions. The aim of the study is to investigate whether therapy of the shoulder girdle and neck muscles by deactivating MTrPs causes modification of biomechanical and biochemical variables in the blood and reduces headache in people with migraine, improving their quality of life by improving their health. People qualified for the study were divided into 3 groups according to the type of migraine: 1. CM group - patients with chronic migraine 2. EMa group - patients with paroxysmal migraine with aura 3. EMb group - patients with paroxysmal migraine without an aura. All patients underwent 7 interventions in the area of the muscles of the shoulder girdle and neck (by deactivating trigger points) performed every 2 or 3 days. They did not take any headache medications during the treatment period. However, during a migraine attack, they could undergo treatments and research measurements. Biomechanical measurements of the cervical spine, shoulder girdle muscles and blood chemistry were performed before, during and after the patients' therapy. All treatments were performed on the following muscles: - m. trapesius pars descendent (trapezius upper), - m. sternocleidomastoideus (sternocleidomastoid), - m. temporalis (temporal), - m. legator scapulae (levator scapula), - m. supraspinatus (supraspinatus), - m. suboccipitales (suboccipital).
The aim of our study is to investigate the validity and reliability of Dutch version of the Henry Ford Hospital Headache Disability Questionnaire (HDI).
The primary aim is to test the combined effectiveness of OMT and targeted head exercise (THE) to achieve a significant decrease in headache measures of frequency, intensity, and duration in a Treatment group when compared to a Control group whose members receive only standard medical care. A parallel, 2-arm, longitudinal, randomized controlled trial (RCT) will focus upon female patients (18 to 75 years of age) who have been diagnosed with chronic cervicogenic headache (CeH) based upon a differential diagnosis that includes classification according to the International Headache Society Classification IHSD 3rd Edition, reproduction of referred headache resulting from manual pressure over the upper cervical regions, and objective MRI findings. It is estimated that a sample size of 30 will provide sufficient statistical power (79%) to detect an intervention effect that corresponds to a clinically meaningful recovery (60%). CeH is classified as a secondary headache disorder because the headache pain is a consequence of injury to, or disease of, the bony and/or soft tissues of the upper cervical spine. It has been reported that some patients diagnosed with CeH demonstrate atrophy and/or fatty infiltration (FI) of the RCPm muscles on MRI. FI and/or a reduction in the cross-sectional area (CSA) of active muscle would not be expected to be the direct cause of chronic headache, but either or both could prevent muscles from generating normal physiologic levels of force. It has been shown that there is a functional connection between the pain sensitive dura mater and RCPm muscles and it is known that mechanical stretching of the dura mater results in referred headache. While FI and/or a reduction in the CSA of active muscle would not be expected to be the direct cause of chronic headache, it is known that muscle pathology will result in functional deficits. It is proposed that pathology in RCPm muscles will compromise the normal functional relationship between the RCPm and the dura mater and result in referred head and neck pain. It is predicted that at the end of the study, the Treatment group will show a significant decrease in headache measures that will be accompanied by a significant increase in CSA and a significant decrease in FI on MRI, and restoration of a normal head posture that will not be seen in the Control group. The proposed study is unique in that we are proposing both a mechanism and a source for some instances of CeH. By testing the effectiveness of specific interventions to address a specific pathology within a specific headache population, and by restricting the study cohort to female subjects presenting with CeH, this study will increase the ability to detect a significant change in the outcomes by increasing the power of the statistical analysis.
Since neck pain is the fourth highest disabling condition (with an estimated point prevalence of 20%, lifetime prevalence up to 70% and high recurrence rates), dry needling targeting myofascial trigger points in neck muscles has been proposed as an effective treatment for reducing pain and disability in patients with chronic neck pain. A recent meta-analysis reported whether dry needling could be recommended for this population. Low to moderate evidence suggests that dry needling can be effective at the short-term, but its effects on pressure pain sensitivity or cervical range of motion are limited.
The aim of this study is to study the validity and reliability of the Modified Pain Neurophysiology Questionnaire in patients with neck pain. After the ethics committee approval, women and men in Turkey will be invited to the research via online advertisements (researchers' facebook, instagram, twitter accounts). The scale will be translated from English to Turkish by two people who are fluent in Turkish and English. A single Turkish translation will be obtained with a common opinion from these two Turkish translations. In ten trial phases, a preliminary assessment will be conducted with 15 participants to test the intelligibility of the scale. If there are participants who think that there is a problem with the intelligibility of the scale, they will be asked to explain which items they have problems understanding and why. After individuals are informed with the online voluntary consent form, participants will be asked to complete the Modified Pain Neurophysiology questionnaire. Modified Pain Neurophysiology scale questions and questions in the data collection form will be prepared through the google surveys application and will be sent to the participants via Whatsapp, Facebook, Instagram and e-mail. Participants will fill out the survey forms online. In order to evaluate the validity of the Modified Pain Neurophysiology questionnaire, the pain subscale of the SF-36 scale, which has been validated in Turkish, will be used (McHorney, Ware, Lu, and Sherbourne, 1994), (Kocyigit et al., 1999). Scales after 15 days to assess test-retest reliability will be repeated.
Neck pain frequently present comorbidities in peridiaphragmatic organs. The innervation of these organs include the phrenic nerve. It is known that peridiaphragmatic organs trigger referred pain in the neck area. As well, previous studies have shown that visceral disorders increase sensitization in somatic tissues. This study aims to analyze the ability of phrenic nerve infiltration to diminish sensitization and improve neck symptoms in the absence of neurological, traumatic or infectious pathology that justifies the pain, by means of a randomized controlled trial.
It is known that tactile acuity and proprioceptive sense decrease in patients with chronic neck pain. However, sensory re-training in patients with chronic neck pain has not been given sufficient importance. The effects of proprioceptive and tactile acuity training on pain intensity in patients with chronic neck pain will be compared in this study. Eligible participants will be divided into three groups as follows: Proprioceptive Training Group (PTG), Tactile Acuity Training Group (TAG), and Control Group (CG). The randomization will be performed using the block randomization method to obtain an equal number of participants in the groups. Each participant will be evaluated two times at a 4-week interval. Participants will be evaluated regarding subjective pain intensity by using a Numerical Rating Scale, temporal summation, and conditioned pain modulation using an algometer (JTECH Medical-Algometer Commander, USA). Neck proprioception exercises will be applied to the patients in the PTG at 3 days a week for 4 weeks. Tactile acuity training will be applied to the patients in the TAG 3 days a week for 4 weeks. Between the two assessments, the Control Group will not receive any treatment.
Cervical sprain also known as whiplash-associated disorder is the result of a combined injury between extension/flexion of the soft tissues of the cervical spine due to an acceleration-deceleration mechanism of energy transfer to the neck. The Neck-Specific Exercise Program focuses on relearning motor skills, neck muscle endurance, and postural correction. Telehealth improves patient satisfaction, overcomes barriers to access to physiotherapy services and reduces the costs of musculoskeletal care. Objective: To evaluate the effectiveness of the neck specific exercise program by telerehabilitation compared to the usual intervention in functional recovery in adults with acute cervical sprain grade I and II at the first level of care. Material and Methods: This is a randomized clinical trial, the effectiveness of the telerehabilitation program is determined by the Neck Disability Index (NDI) and will be compared against the usual intervention. Participants assigned to the telerehabilitation program will complete a 12-week intervention consisting of 5 weekly sessions of 30 minutes of pre-recorded video, with a frequency of 2-3 times a day. The usual care group will be instructed to follow their doctors' orders during the 12-week intervention period. For each group, baseline measurements were made at 2, 6 and 12 weeks. Time to develop: The protocol has a duration of follow-up of the patients of 12 weeks.
With increasing usage of electronic devices and sedentary lifestyle, chronic neck pain has become a more prevalent musculoskeletal disorder around the world. Many impairments have been identified in people with chronic neck pain including pain, muscle weakness, proprioceptive deficits and altered breathing pattern. Diaphragm is the key muscle for inspiration and also plays an important role in spinal stability. Previous studies have found that diaphragm functions are related to the stability of the lumbar spine through the fascial, neural and visceral systems. Diaphragmatic resistance training thus could have some positive effects on reducing pain and disability in people with low back pain. However, to date how diaphragmatic resistance training would affect chronic neck pain is still unknown. Therefore, the purpose of this study is to investigate the effects of diaphragmatic resistance training on pain, disability and movement quality in people with chronic neck pain.
Cervical radiculopathy is a pain and/or sensorimotor deficit syndrome that is defined as being caused by compression of a cervical nerve root .The compression can occur as a result of disc herniation, spondylosis, instability, trauma, or rarely, tumors. Patient presentations can range from complaints of pain, numbness, and/or tingling in the upper extremity to electrical type pains or even weakness. The clinical overlap between cervical radiculopathy and peripheral nerve entrapment syndromes and their nearly ubiquitous nature makes understanding of and identification of these entities mandatory for all practitioners The cervical spinal nerves exit the spinal cord and are oriented obliquely toward their respective neural foramen .The neural foramen is made up of the facet joint posteriorly and the intervertebral disc anteriorly. The superior and inferior borders are comprised of the pedicles of the vertebral bodies above and below, respectively. The foramina are largest in the upper cervical spine and gradually narrow distally, with the C7/T1 foramina being the narrowest. The most common causes of nerve root compression are spondylosis of the facet joint and herniation of the intervertebral disc.Hypermobility of the facet joint leads to ligamentous hypertrophy as well as bony hypertrophy. An increase in the size of the superior articulating process from the distal vertebra causes compression of the nerve. Intervertebral disc herniations can also cause nerve root compression from the anterior aspect of the foramen. Disc herniations can either be acute or chronic. Imaging modalities and electrophysiologic testing (EMG & NCV) play an important role in the diagnosis and localization of cervical radiculopathy. The first test that is typically done is plain x-ray. Computed tomography is the most sensitive test for examination of the bony structures of the spine. Initial strategies in the treatment of cervical radiculopathy are typically Conservative therapies including multiple pharmacologic agents, immobilization, physical therapy, manipulation, traction, and TENS . Traditionally, cervical spine injection performed under fluoroscopy or computed tomography guidance. However, these imaging tools are not able to visualize small vessels, and incidences such as brainstem or spinal cord infarction may occur. These complications are believed to be caused by inadvertent injection of therapeutic agents into the vertebral or radicular arteries. Therefore, accidental puncture of vessels must be prevented when performing neck injection procedures. Recently, high-resolution musculoskeletal ultrasound (US) can be used to identify the target root and the nearby vessels. The advantage of using US as a guidance tool is that it does not expose patients or medical personnel to radiation such as fluoroscopy or computed tomography guidance. Ultrasound allows good visualization of the soft tissue such as abnormal blood vessels in the foramen and around the nerve root, which further enables accurate needle placement and avoids the risk of intravascular injections. In addition, US-guided procedures have a shorter duration compared to those guided by fluoroscopy and do not result in contrast medium-related allergic reactions . As a result, US-guided cervical nerve root block (US-CRB) is a safe alternative treatment technique that can be used in the treatment of upper extremity radicular pain.