The aim of this study is to compare the effectiveness of rest splints and high-intensity laser therapy(HILT) added to physical therapy programs for patients with carpal tunnel syndrome in terms of pain, function, nerve conduction studies, and grip strength.
Carpal tunnel syndrome (CTS) is the most common entrapment nerve compression, causing numbness and tingling in the hand, atrophy and muscle weakness in advanced stages. Any condition that increases the volume of the carpal tunnel and narrows the diameter of the tunnel can increase the compression of the median nerve under the transverse carpal ligament and cause symptoms. The use of a wrist splint or wrist brace is a common method of non-surgical treatment of carpal tunnel syndrome. The wrist splint is designed to allow rotation and supination, while eliminating the possibility of extension, flexion and radial-ulnar deviation.High-intensity laser therapy is used to provide symptomatic relief and reduce pain-related inflammation. The soothing effect of the laser is remarkable, especially in acute cases, but in the case of chronic disorders, the pain may be aggravated after the first treatments and is continued only if it decreases. This study was designed as a prospective randomised controlled trial. Participants were randomised into 3 groups. The 1st group will receive wrist range of motion exercises, isometric strengthening, intrinsic muscle strengthening, wrist stretching, desensitization exercises, tendon sliding exercises, median nerve sliding exercises, wrist flexion and extension exercises, grip strengthening exercises and resting splint application for 6 weeks, 5 days a week, 30 sessions in total. The 2nd group (HILT group) will be given high intensity laser therapy 5 days a week for 6 weeks (30 sessions in total) in addition to the physical therapy program. The 3rd group will be the sham HILT group and physical therapy exercises will be applied like the other groups.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
78
We routinely provide the following physical therapy program to patients with carpal tunnel syndrome in our physical therapy unit: hand wrist ROM isometric strengthening, intrinsic muscle strengthening, hand wrist stretching, desensitization exercises, tendon gliding exercises, median nerve gliding exercises, wrist flexion and extension exercises, grip strengthening exercises) will be provided to patients with carpal tunnel syndrome in our physical therapy unit, and they will be instructed to use the resting splint as much as possible during the day and maximally at night for 6 weeks. Rest splint: The WingMed brand splint is specially designed to hold the wrist in a neutral position with volar support, allowing pronation and supination of the wrist but not allowing flexion, extension, radial, or ulnar deviation.
Group 2 (high-intensity laser therapy (HILT)) will undergo pulsed laser therapy using the HIRO 3 device (ASA Laser, Arcugnano, Italy) five times a week for 6 weeks (a total of 30 sessions, one session per day) in addition to the physical therapy program. During each session, a three-phase treatment program will be administered to patients once a day, accompanied by a physical therapist, consisting of nerve/tendon gliding exercises.
Afyonkarahisar Health Science University
Afyonkarahisar, Turkey (Türkiye)
NOT_YET_RECRUITINGAfyonkarahisar Health Sciences Unıversity
Afyonkarahisar, Turkey (Türkiye)
RECRUITINGVisual Analog Scale (VAS):
Patients' musculoskeletal pain intensity was assessed using the visual analog scale (VAS). The meanings of the numbers placed on a 10 cm line from 0 to 10 were explained to the patients. It was explained that no pain was 0, the most severe pain ever experienced was 10, and moderate pain was 5 points. Based on these explanations, patients were asked to rate their pain levels for the past week.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Boston Carpal Tunnel Questionnaire:
This questionnaire determines the severity of CTS-specific symptoms and functional outcome using a scale for each. The symptom severity subgroup is determined using 11 questions scored from 1 to 5, with a maximum score of 55. The higher the score, the greater the symptom severity. The functional subgroup assesses the difficulty of 8 functional activities scored from 1 to 5, with a maximum score of 40. The higher the score, the poorer the functional capacity.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
LANSS neuropathic pain assessment scale
The Self-Rating of Neuropathic Symptoms and Signs (S-LANSS) scale will be administered to all patients to determine the presence of neuropathic pain. The SLANSS scale is a measure used to distinguish neuropathic pain from nociceptive pain. Unlike the LANSS scale, the physician does not examine the patient in this scale, making it easier to administer. The S-LANSS scale consists of a total of 7 questions. The patient fills out this scale themselves. The first 5 questions consist of questions that inquire about pain symptoms, while the last 2 questions include a clinical examination that the patient performs on themselves. The answers to the questions are yes/no. Each question has a different score. The total score on the scale is 24. A total score of 12 or higher suggests neuropathic pain. The Turkish version of the S-LANSS scale has been validated and is reliable.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
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The sham-HILT group will receive sham laser therapy using the HIRO 3 device (ASA Laser, Arcugnano, Italy) five times a week for six weeks (a total of 30 sessions, one session per day) in addition to the physical therapy program. After patients see that the device is turned on during the sham application, the same treatment will be applied to the same treatment area for the same duration without allowing laser current output from the device.
Pittsburgh Sleep Quality Index (PSQI)
This scale, used to assess sleep quality, consists of 24 questions that inquire about sleep quality over the past 4 weeks. The scale has 7 components, each of which is scored on a scale of 0-3. The total PUKİ score ranges from 0 to 21, with a score higher than 5 indicating poor sleep quality. Turkish validity and reliability studies have been conducted.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Quick DASH Questionnaire
Created to assess functional status and symptoms by focusing on physical function in the upper extremities. This questionnaire contains a total of 11 items. Symptoms or difficulty are rated on a scale of 1 to 5. At least 10 questions must be answered to calculate the Quick DASH score. The calculation result is rated between 0 and 100.0. 0 indicates no difficulty or symptoms, while 100 indicates no activity or severe symptom
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Median nerve distal motor latency
The compound muscle action potential amplitude (CMAP) will be obtained via surface electrodes placed on the abductor pollicis brevis muscle. The active recording electrode will be placed on the muscle belly and the reference electrode on the tendon insertion. The median nerve will be stimulated 8 cm proximal to the active recording electrode. Distal motor latencies will be measured from the onset of the stimulus artifact to the onset of the CMAP.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Median nerve compound muscle action potential amplitude (CMAP)
CMAPs will be obtained via surface electrodes placed on the abductor pollicis brevis muscle. The active recording electrode will be placed on the muscle belly, and the reference electrode will be placed at the tendon insertion. The median nerve will be stimulated 8 cm proximal to the active recording electrode. The amplitude of the CMAP will be measured from the baseline to the negative peak.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Motor nerve conduction velocity
The compound muscle action potential amplitude (CMAP) will be obtained via surface electrodes placed on the abductor pollicis brevis muscle. The median nerves will be stimulated at the wrist and antecubital fossa levels. Distal motor latencies will be measured from the onset of the stimulus artifact to the onset of the CMAP. Motor nerve conduction velocity will be calculated by dividing the distance by the distal motor latency.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Second finger sensory nerve action potential amplitude
Sensory nerve action potential amplitudes (SNAP) will be obtained using the orthodromic method and recorded with the second ring electrodes. The median nerves will be stimulated at the proximal and distal interphalangeal joints of the index finger and palm. Distal sensory latencies will be measured from the onset of the stimulus artifact to the onset of the SNAP.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Median nerve distal sensory latency
Sensory nerve action potential amplitudes (SNAP) will be obtained using an orthodromic method and recorded using surface electrodes placed on the wrist. The median nerves will be stimulated at the proximal and distal interphalangeal joints of the index finger. Distal sensory latencies will be measured from the onset of the stimulus artifact to the onset of the SNAP. Sensory nerve conduction velocity will be calculated by dividing the distance by the distal sensory latency.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
)Sensory nerve conduction velocity
Sensory nerve action potential amplitudes (SNAP) will be obtained using an orthodromic method and recorded with ring electrodes. The median nerves will be stimulated at the proximal and distal interphalangeal joints of the index finger. Distal sensory latencies will be measured from the onset of the stimulus artifact to the onset of the SNAP. Sensory nerve conduction velocity will be calculated by dividing the distance by the distal sensory latency.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Grip strength
A hand dynamometer (JAMAR) will be used to assess grip strength. The patient will perform three consecutive tests while sitting with shoulders abducted and neutrally rotated, elbow flexed at 90°, and forearm and wrist in a neutral position. The best of these measurements will be recorded in kilograms.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)
Pinchmeter
A pinchmeter will be used to evaluate pulp-to-pulp grip strength. The patient will sit with shoulders abducted and neutrally rotated, elbow flexed at 90°, and forearm and wrist in a neutral position, and will perform three consecutive tests. The best of these measurements will be recorded in kilograms.
Time frame: Baseline(pre-treatment,after 6 weeks(post treatment)-after 12 weeks(post treatment)