Comparison of GT With TF Technique in Patient With Post-Operative Knee Stiffness
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In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: Tissue Flossing Technique, Graston Technique, Control group.
- Who it may be relevant to
- Registry conditions: Post-operative Knee Stiffness. Basic parameters: 20 years — 40 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- Pakistan
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
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Official title
Official Title: Comparison of Graston Technique With Tissue Flossing Technique in Patient With Post-Operative Knee Stiffness
Overview
The purpose of this study was to compare the effects of Graston Technique and Tissue Flossing Technique in patients with post-operative knee stiffness on pain, range of motion, and functional outcomes. A randomized controlled trial was conducted at Benazir Bhutto Hospital, Rawalpindi. The total sample size was 48, divided into three groups. The study duration was six months. Purposive sampling was applied for recruitment, and group randomization was performed by lottery method. Only patients with post-operative knee stiffness meeting the inclusion criteria were enrolled. Outcome measures included goniometer, Functional Independence Measure (FIM), and Western Ontario and McMaster Universities Osteoarthritis Index (WOMAC) questionnaires. Data was collected at baseline and after interventions, and analysis was performed using SPSS version 23.
Detailed description
Stiffness has been defined as a decrease in postoperative range of motion (ROM), including flexion contracture, accompanied by persistent pain and/or functional compromise (1). Post-traumatic stiffness may result from dense intra-articular adhesions and fibrotic transformation of periarticular structures (2). The knee joint, crucial for lower-limb biomechanics, is the most frequently injured joint in the lower extremities (3). Post-traumatic knee stiffness and loss of ROM are common complications following knee injuries. The normal ROM of the knee joint is generally accepted to be 0° (full extension) to 135° (full flexion). A stiff knee is defined as one with a total ROM of less than 50°, while an ankylosed knee is characterized by a ROM of less than 30° (4). Knee joint stiffness may result from several factors, including periarticular surgeries, traumatic injuries, inflammatory or infectious joint diseases, fractures, prolonged immobilization, and scar formation due to burns or trauma. Post-surgical procedures such as open reduction and internal fixation (ORIF) may also contribute to stiffness through scar tissue formation and reduced joint mobility (5). The choice of fixation method for femoral or tibial fractures depends on the fracture type and anatomical location. For femoral shaft fractures, intramedullary (IM) nailing is considered the gold standard. Stabilization of femoral or tibial fractures can also be achieved through ORIF using screws, plates, or rods. In cases with compromised skin integrity at the fracture site, external fixation provides a temporary solution, using external frames to align the bones (6) Diagnosis of post-operative knee stiffness is based on reduced knee flexion and extension after surgery, commonly following ORIF of femur, tibia, or fibula fractures. Literature defines stiffness as total knee ROM \<50° and ankylosis when \<30°. Clinical judgment with goniometric assessment and functional evaluation using WOMAC and FIM questionnaires provides valid measures. Previous studies suggest intra-articular adhesions, fibrotic changes, and prolonged immobilization as primary contributors to post-operative knee stiffness.
Various therapeutic interventions have been developed to address this issue, myofascial compression technique, i.e., Graston Technique and tissue flossing emerging as promising approaches. The Graston Technique (GT) is a therapeutic approach known as instrument-assisted soft tissue mobilization (IASTM). GT uses specialized tools to massage and scrape the skin, reducing pain and targeting tissue restrictions that cause dysfunction. The Graston Technique supports soft tissue healing by enhancing blood flow (vasodilation) to the affected area, which can accelerate recovery and reduce stiffness (7).
The Graston Technique, instrument-assisted soft tissue mobilization (IASTM), has shown efficacy in improving range of motion and reducing pain in various musculoskeletal conditions. Studies have demonstrated its effectiveness in treating chronic low back pain, with significant improvements in pain reduction and increased range of motion compared to general exercise alone (8).
The technique has also been found to be beneficial in addressing postoperative elbow stiffness, showing greater improvements in pain reduction and patient-specific function compared to other soft tissue mobilization techniques (9)
. For instance, a study on patients with anterior knee pain found that IASTM techniques, including the Graston Technique, were as effective as stretching exercises in reducing pain, improving flexibility, and enhancing lower extremity function in patients with iliotibial band tightness (10).
Similarly, compressive myofascial release techniques have demonstrated effectiveness in increasing ankle dorsiflexion range of motion (11).
Tissue flossing, on the other hand, utilizes a floss band that is elastic rubber band designed to wrap around joints or muscle groups before or during exercise or stretching. The primary mechanism involves blood flow restriction (BFR), creating temporary tissue ischemia, followed by blood flow reperfusion upon removal, which can boost metabolic responses (3).
Tissue flossing is a novel technique gaining popularity in athletic training and rehabilitation for its potential effects on joint range of motion (ROM) and muscle function. Studies have shown that floss band application on limbs, soft tissues, or joints with approximately 50% tension wrapping pressure can have small to medium effects on ROM, muscle stiffness, and strength (12).
Research on the effects of tissue flossing on joint stiffness has produced mixed results. Some studies have reported positive outcomes, such as increased ankle ROM and improved jump and sprint performance in recreational athletes (13).
The Graston Technique and tissue flossing are two techniques that aim to improve soft tissue mobility and joint function through distinct mechanisms. The former employs specialized instruments for soft tissue mobilization, while the latter uses compression and subsequent modulation of blood flow.
The lack of direct comparisons between these techniques underscores the potential significance of study investigating their comparative efficacy in treating post-operative knee stiffness. Such research could substantially contribute to the existing body of knowledge regarding soft tissue mobilization techniques and their applications across various musculoskeletal conditions, thereby providing clinicians with valuable insights.
Interventions
- Other Tissue Flossing Technique
Hot pack: 10 minutes, PNF (hold-relax with agonist contraction), CPM: 10 minutes, Self-stretching: End range position for 30 seconds, repeat twice. 1 to 2 minutes for Tissue Flossing Technique Description: Active and passive movement with knee wrapped in a high-quality floss band (208×5×0.15 cm), Wrapped from upper gastrocnemius to lower quadriceps and hamstring muscles using a 50% overlapping pattern with a 25% elongation stretch, Series of active and passive exercises (knee flexion and extensi - Other Graston Technique
Hot pack: 10 minutes, PNF (hold-relax with agonist contraction), CPM: 10 minutes, Self-stretching: End range position for 30 seconds, repeat twice. 2 minutes for Graston Technique Technique Description: Participant lies supine with hip and knee straight, Water-based gel used to reduce friction. Superior and inferior longitudinal strokes delivered with GT-4 instrument at a 45° angle to soft tissues Sequence includes strokes from above patella to anterior inferior iliac spine (AIIS) and back, ma - Other Control group
Hot pack: 10 minutes, PNF (hold-relax with agonist contraction): Gentle stretch of knee muscle for 10 seconds Isometric contraction for 6 seconds. Flex knee with therapist assistance. Hold position for 10 seconds, repeat 3 times, CPM: 10 minutes, Self-stretching: End range position for 30 seconds, repeat twice
Primary outcome measures
- Range of Motion: [Time frame: 2 weeks]
Secondary outcome measures (3)
- Numerated Pain Rating Scale: [Time frame: 2 weeks]
- Western Ontario and McMaster Universities Osteoarthritis Index [Time frame: 2 weeks]
- Functional Independence Measure: [Time frame: 2 weeks]
Eligibility criteria
Inclusion criteria
- Age group between 20 to 40 years.
- Both male and female.
- Patients with 6 weeks post-operative following open reduction and internal fixation (ORIF) of femur, tibia, or fibula shaft fracture
- Decreased in knee Flexion \& Extension (A minimum of 20° or above).
Exclusion criteria
- Those patients who have allergies to latex
- Malignant or metabolic cause of knee fracture
- Venous Thrombotic disease/ Varicose veins.
- Cardiopulmonary illness and hypertension.
- Skin diseases/ metabolic disorders.
- Patient with arthroplasty and arthroscopy.
- Patellar fracture/ ACL/ PCL/ MCL/ LCL rupture/ injuries.
- Any pathological condition having effects on knees.
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Allocation
- Randomized
- Model
- Parallel assignment
- Masking
- Single blind
- Primary purpose
- Treatment
Study locations
Pakistan · 1 center
- Banazir Bhutto Hospital, — Rawalpindi
Publications
- Manrique J, Gomez MM, Parvizi J. Stiffness after total knee arthroplasty. J Knee Surg. 2015 Apr;28(2):119-26. doi: 10.1055/s-0034-1396079. Epub 2014 Dec 16. PMID 25513992
- Galvez-Sirvent E, Ibarzabal-Gil A, Rodriguez-Merchan EC. Complications of the surgical treatment of fractures of the tibial plateau: prevalence, causes, and management. EFORT Open Rev. 2022 Aug 4;7(8):554-568. doi: 10.1530/EOR-22-0004. PMID 35924649
- Wu SY, Tsai YH, Wang YT, Chang WD, Lee CL, Kuo CA, Chang NJ. Acute Effects of Tissue Flossing Coupled with Functional Movements on Knee Range of Motion, Static Balance, in Single-Leg Hop Distance, and Landing Stabilization Performance in Female College Students. Int J Environ Res Public Health. 2022 Jan 27;19(3):1427. doi: 10.3390/ijerph19031427. PMID 35162447
- Pirato F, Rosso F, Dettoni F, Bonasia DE, Bruzzone M, Rossi R. How to manage a native stiff knee. EFORT Open Rev. 2024 May 10;9(5):363-374. doi: 10.1530/EOR-24-0034. PMID 38726987
- Phruetthiphat OA, Zampogna B, Vasta S, Tassanawipas B, Gao Y, Callaghan JJ. TKR after posttraumatic and primary knee osteoarthritis: a comparative study. J Orthop Surg Res. 2021 Mar 4;16(1):173. doi: 10.1186/s13018-021-02322-8. PMID 33663576
- Mckivigan JM, Tulimero G. An Analysis Of Graston Technique® For Soft-Tissue Therapy. Rehabilitation Science. 2020;5(4):31. 2020.
- 26, Kangra Rm. Effectiveness Of Instrument Assisted Soft Tissue Mobilization (Iastm) On Post-Operative Knee Stiffness: A Case Study. International Journal Of Scientific Research. 2024 Jun; 13(5).
- Lee JH, Lee DK, Oh JS. The effect of Graston technique on the pain and range of motion in patients with chronic low back pain. J Phys Ther Sci. 2016 Jun;28(6):1852-5. doi: 10.1589/jpts.28.1852. Epub 2016 Jun 28. PMID 27390432
Identifiers
NCT: NCT07204119 · Riphah/RCRS/REC/02181