Chronic kidney disease is a renal injury and progressive and irreversible loss of kidney function and in its most advanced stage is called chronic renal failure. Although hemodialysis replace some kidney function, patients suffer some alterations characterized by "uremic syndrome" typically expressed by: motor neuropathy and/or autonomic neuropathy, cardiac or musculoskeletal myopathies, peripheral vascular changes, among others. Thereby, the the adoption of physical exercise should be encouraged. However, it is known that the ability to exercise the subject in hemodialysis is low and keeping in mind the weakness of the muscular system in these individuals, the aim of this study is to assess the effects of functional electrical stimulation (FES) on muscle architecture of patients with chronic kidney disease hemodialysis. For this the following assessments will be performed before and after stimulation: ultrasonography to assess muscle architecture; six-minute walk test to functional capacity; Kidney Disease and Quality of Life - Short Form questionnaire for quality of life; sit and stand test for resistance of the lower limbs; dynamometric by load cell for muscle strength of the lower limbs; flow-mediated dilatation to endothelial function; blood collection for analysis of inflammatory markers and DNA damage. The subjects will be randomized into two groups, FESG (functional electrical stimulation group) and CG (control group). The first will receive the FES in the quadriceps muscle of both thighs, for eight weeks, three times a week during hemodialysis session. While the control group only will be evaluated and re-evaluated. Expected results at the end of the protocol with FES are: increased quadriceps muscle thickness; longest distance covered on the six-minute walk test; improved quality of life; increase in resistance of the lower limbs; increased muscle strength of the lower limbs; improved endothelial function; improved inflammatory status and DNA damage.
The research will be developed in the hemodialysis unit of the Santa Clara hospital of Santa Casa de Misericordia de Porto Alegre. After the selection of patients for eligibility criteria they will be randomized into functional electrical stimulation group or control group. First all patients will be evaluated, and subsequently the patients in the functional electrical stimulation group will be trained three times per week for eight weeks using an electric current called functional electrical stimulation through the stimulator device NEURODYN II, IBRAMED mark, Amparo, Sao Paulo, Brazil. The sessions took place in the first hour of dialysis and will last at least 20 and maximum of 34 minutes. The parameters selected in the stimulator will be: 80 Hz frequency, 0.4 ms pulse, 10 s time on, 50-20s time off, intensity as patient tolerance. The patient will be positioned supine, the knees will be at 60° flexion through a foam wedge and ankles restrained by a band to make isometric exercise. Furthermore, the electrodes used to perform the electrical stimulation will adhesive, disposable and hypoallergenic. These will be placed over the motor points of the quadriceps muscle of both legs in order to make the most effective contraction. At the end of follow-up, both groups will be further evaluated in order to compare.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
21
Functional electrical stimulation will be applied through self adhesive electrodes on the quadriceps muscle of both thighs, and these will be positioned at 60° of flexion and contained by a band for that exercise happen isometric form. Parameter settings in the electrical stimulator are as follows: 80 Hz frequency, 0.4 ms pulse, 10 s time on, 50-20 s time off, intensity according to the patient's tolerance but enough to cause visible muscle contraction. The total time of each session starts at twenty minutes and is increased every week a total thirty-four minutes at the end of the eighth week. Intervention will be held three times a week for eight weeks and during hemodialysis session.
Functional capacity
Functional capacity will be assessed by the distance walked in six-minute walk test (6MWT).
Time frame: Eight weeks
Muscle architecture
Assessment of muscle architecture will take place with the acquisition of ultrasound images of the medialis and lateralis vastus and rectus femorals through an ultrasound device (Vivid-i, GE, USA). After, the thickness of the muscles will be undertaken in the software ImageJ.
Time frame: Eight weeks
Muscle strength of the lower limbs
Muscle strength will be evaluated by dynamometry by a load cell.
Time frame: Four and eight weeks
Endurance of the lower limbs
The endurance of the lower limbs will be assessed by the number of repetitions performed in sit-and-stand test (STST).
Time frame: Four and eight weeks
Endothelial function
Will be used a high-resolution ultrasound machine (Vivid-i, GE, USA) for evaluation of non-invasive blood endothelial function. Endothelial function will be assessed by flow mediated dilation technique.
Time frame: Eight weeks
Inflammatory profile
The inflammatory profile will be assessed through blood collection and analysis of biochemical and immunological markers such as interleukin 6, tumor necrosis factor, creatine kinase, lactate and C-reactive protein.
Time frame: Four and eight weeks
DNA damage
The damage to DNA is analyzed by electrophoresis single (comet technique), where cells are counted by microscopy.
Time frame: Four and eight weeks
Quality of Life
The quality of life will be assessed by questionnaire Kidney Disease and Quality-of-Life Short-Form (KDQOL-SFTM).
Time frame: Eight weeks
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