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Tundra lists 2 Functional Motor Disorder clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.
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NCT07631390
Impact of Task-Specific Electrical Stimulation on Upper Limb Functional Motor Skills in Children With Spastic Quadriplegia
Cerebral palsy is a non-progressive lesion of the brain occurring before 2 years of age resulting in disorders of posture and movement.( Ostensjo S, 2004)( Keles MN, 2018) . Although non-progressive, motor impairments develop as the child grows leading to activity and participation restriction. For children with CP, body function and structure impairments include changes in muscle tone and strength that affect the ability to control movement, specifically in regard to postural responses, selective control, regulation of activity, ability to learn unique movements, and inappropriate sequencing.(Ross SA, 2007)( Ostensjo S, 2004) . Lack of proper loading and maladaptive muscle pulls over time causes the skeletal system to adapt to positions of malalignment, malformation, and overall bone weakness (Beckung E, 2007) (Elbasan B, 2018) . These changes lead to delays in the natural progression of gross motor skills. As the child falls behind in motor function, they also fall behind in cognitive stimulation and development.( Akaya KU, 2018) . Understanding the anatomical and physiological implications that CP has on the developing child is necessary for physical therapists to treat this population, especially when utilizing electrical stimulation. Spastic quadriplegia Is a type of cerebral palsy that affects all four limbs and typically involves significant motor impairment. It results from brain damage that occurs before, during, or shortly after birth, affecting the areas of the brain responsible for movement and coordination. Electrical stimulation is a mode of physical therapy that can be utilized in the treatment of various nerve and muscle injuries, in addition to patients with acute and chronic pain. It involves an electrical pulse applied to a muscle or nerve that activates excitable tissue utilizing internal or external electrodes to build muscle strength, reduce pain, as well as create or support limb movement (Kerr C, 2007) .
Gender: MALE
Ages: 4 Years - 7 Years
Updated: 2026-06-08
1 state
NCT06873386
Ultrasound-guided Percutaneous Electrical Stimulation for Gluteus Muscle Dysfunction After Low Back Pain Episode
Percutaneous ultrasound-guided neuromodulation (US-guided PNM) is the electrical stimulation of a peripheral nerve at some point along its pathway or at a muscular motor point under the guidance of an ultrasound probe with a therapeutic objective. The application of electrical current to a peripheral motor nerve is associated with a motor response that results in an uncontrolled, anarchic and exaggerated response of the musculature, which is normalized after the application of the electrical current. In 2016, the authors of the book Invasive Physiotherapy, Fermín Valera and Francisco Minaya, developed by themselves based on the fundamentals of segmental dry needling and neurofunctional acupuncture created by Dr. Alejandro Elorriaga. The authors defined that the application parameters to achieve the best result to the electrical stimulus are controversial, due to the high variability in the literature, but knowing that the most important parameter is the frequency, where studies are observed in which they have used from 2 to 100Hz looking for the motor response. The parameters of the protocol created are: frequency of 10Hz, pulse width of 250us, with a motor or sensory response, performing 8 stimulations of 8 seconds duration, with 8 seconds of rest, with the aim of improving neuromuscular function, muscle recruitment patterns and motor control. Although the scientific basis of the authors were 3 articles, none of which were aimed at improving muscle function, but were for neuropathic pain, chronic pain, and treatment of overactive bladder, the basis of clinical observation is correct and many studies currently using their protocol show improvements at the functional level. In a review of neuromodulation and muscle function, studies that carry out percutaneous stimulation use frequencies of 2Hz to 10Hz, using the protocol of Garrido F. V., Muñoz F. M. , which, as stated above, was not specifically designed to improve muscle function, while the studies that carry out transcutaneous stimulation use much higher frequencies, from 20Hz to 100Hz, all obtaining positive results. For this reason, and the great difference between the frequencies, the need to carry out specific research on the benefits that percutaneous stimulation with a frequency range of 20-100 HZ. The hypotheses of this study are,US-guided PNM, with frequency sweeps of 20Hz -100Hz increases static and dynamic strength, more relevantly than current 10Hz protocols.
Gender: All
Ages: 18 Years - Any
Updated: 2025-03-19
1 state