Parkinson Disease Clinical Trial
Official title:
The Long Term Efficacy of High Frequency Repetitive Transcranial Magnetic Stimulation on Postural Stability in Parkinsonian Patients.
Postural instability is one of the cardinal signs in Parkinson's disease (PD). It represents one of the most disabling symptoms in the advanced stages of the disease. It is associated with frequent falls and loss of independence. The aim of the current study is to assess the long term efficacy of high frequency repetitive transcranial magnetic stimulation (rTMS) on improving postural instability in PD patients.
Status | Recruiting |
Enrollment | 40 |
Est. completion date | April 28, 2024 |
Est. primary completion date | March 18, 2024 |
Accepts healthy volunteers | No |
Gender | Male |
Age group | 55 Years to 70 Years |
Eligibility | Inclusion Criteria: - All included patients should fulfill the U.K Parkinson's Disease Brain Bank Criteria for idiopathic PD. - Patients with mild to moderate disease severity according to UPRS and Modified Hoehn and Yahr staging - Duration of illness from two to five years were included. - All included patients should be medically and psychologically stable and of adequate cardiac function. - All included patients should haven't receive any rTMS sessions before. - Signed consent form should be taken from all included patients. Exclusion Criteria: - Patients with implanted devices, serious medical illness or history of seizures were excluded. - Patients with severe freezing phenomenon or severe tremors were excluded |
Country | Name | City | State |
---|---|---|---|
Egypt | Faculty of Physical Therapy, Cairo University | Giza | Ad Doqi, Giza District, Giza Governorate |
Lead Sponsor | Collaborator |
---|---|
Cairo University |
Egypt,
Benninger DH, Iseki K, Kranick S, Luckenbaugh DA, Houdayer E, Hallett M. Controlled study of 50-Hz repetitive transcranial magnetic stimulation for the treatment of Parkinson disease. Neurorehabil Neural Repair. 2012 Nov-Dec;26(9):1096-105. doi: 10.1177/1545968312445636. Epub 2012 May 15. — View Citation
Brandmeir NJ, Brandmeir CL, Kuzma K, McInerney J. A Prospective Evaluation of an Outpatient Assessment of Postural Instability to Predict Risk of Falls in Patients with Parkinson's Disease Presenting for Deep Brain Stimulation. Mov Disord Clin Pract. 2015 Nov 27;3(2):151-155. doi: 10.1002/mdc3.12257. eCollection 2016 Mar-Apr. — View Citation
Ganesan M, Sathyaprabha TN, Gupta A, Pal PK. Effect of partial weight-supported treadmill gait training on balance in patients with Parkinson disease. PM R. 2014 Jan;6(1):22-33. doi: 10.1016/j.pmrj.2013.08.604. Epub 2013 Sep 8. — View Citation
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Maruo T, Hosomi K, Shimokawa T, Kishima H, Oshino S, Morris S, Kageyama Y, Yokoe M, Yoshimine T, Saitoh Y. High-frequency repetitive transcranial magnetic stimulation over the primary foot motor area in Parkinson's disease. Brain Stimul. 2013 Nov;6(6):884-91. doi: 10.1016/j.brs.2013.05.002. Epub 2013 May 29. — View Citation
Vadala M, Vallelunga A, Palmieri L, Palmieri B, Morales-Medina JC, Iannitti T. Mechanisms and therapeutic applications of electromagnetic therapy in Parkinson's disease. Behav Brain Funct. 2015 Sep 7;11:26. doi: 10.1186/s12993-015-0070-z. — View Citation
Yang YR, Tseng CY, Chiou SY, Liao KK, Cheng SJ, Lai KL, Wang RY. Combination of rTMS and treadmill training modulates corticomotor inhibition and improves walking in Parkinson disease: a randomized trial. Neurorehabil Neural Repair. 2013 Jan;27(1):79-86. doi: 10.1177/1545968312451915. Epub 2012 Jul 10. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Overall stability index (OSI) | Biodex Balance System SD (Model 945-302, software version 3.12, New York). The system consists of a circular platform supported. It can tilt 20° in all directions from the horizontal. The system's microprocessor-based actuator controls the extent of the surface instability of the platform. The system will evaluate two components of balance (balance indices and dynamic limit of stability). To assess balance indices; each patient was asked to maintain the center of mass in the middle of a concentric circle that appeared on the screen placed in front of the patient. The instrument records the actual postural sway and calculates the variance from the center, which is expressed as a balance index. | Changes from Pre-intervention to immediately post intervention, Changes from immediately post intervention to six month follow up. | |
Primary | Antero-posterior Stability index (APSI) | Biodex Balance System SD (Model 945-302, software version 3.12, New York). The system consists of a circular platform supported. It can tilt 20° in all directions from the horizontal. The system's microprocessor-based actuator controls the extent of the surface instability of the platform. The system will evaluate two components of balance (balance indices and dynamic limit of stability). To assess balance indices; each patient was asked to maintain the center of mass in the middle of a concentric circle that appeared on the screen placed in front of the patient. The instrument records the actual postural sway and calculates the variance from the center, which is expressed as a balance index. | Changes from Pre-intervention to immediately post intervention, Changes from immediately post intervention to six month follow up. | |
Primary | Medio-lateral stability index (MLSI) | Biodex Balance System SD (Model 945-302, software version 3.12, New York). The system consists of a circular platform supported. It can tilt 20° in all directions from the horizontal. The system's microprocessor-based actuator controls the extent of the surface instability of the platform. The system will evaluate two components of balance (balance indices and dynamic limit of stability). To assess balance indices; each patient was asked to maintain the center of mass in the middle of a concentric circle that appeared on the screen placed in front of the patient. The instrument records the actual postural sway and calculates the variance from the center, which is expressed as a balance index. | Changes from Pre-intervention to immediately post intervention, Changes from immediately post intervention to six month follow up. | |
Primary | Directional control percent | To assess dynamic limit of stability; each patient will be asked to move the center of mass, without changing foot position, into 8 targets (in forward, backward, right ,left, forward-right, forward-left, backward-right, and backward-left direction), the perimeter of which corresponded to 50 percent of the theoretical LOS. The target is displayed on the screen by a blinking square, which appeared randomly in different directions only once. The instrument will calculate the shortest vertical or horizontal path to reach the target from the center in each direction which will be expressed as the directional control score. | Changes from Pre-intervention to immediately post intervention, Changes from immediately post intervention to six month follow up. | |
Primary | Time to complete test | Each patient will be asked to move the center of mass, without changing foot position, into 8 targets (in forward, backward, right ,left, forward-right, forward-left, backward-right, and backward-left direction), Then the instrument will calculate the time taken to complete each test, the maximum time allowed to perform the movements to complete the LOS test was 300 seconds. | Changes from Pre-intervention to immediately post intervention, Changes from immediately post intervention to six month follow up. |
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