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About
The proposed research aims to determine brain abnormalities in patients with spasmodic dysphonia (SD) and voice tremor (VT) as the basis for characterization of central mechanisms underlying symptom improvement following the use of sodium oxybate, a novel oral medication for the treatment of ethanol-responsive dystonia. The proposed research is relevant to public health because the elucidation of disorder-specific mechanistic aspects of brain organization in SD vs. SD/VT is ultimately expected to lead to establishment of enhanced criteria for clinical management of these disorders, including differential diagnosis and treatment. Thus, the proposed research is relevant to the part of NIH's mission that pertains to developing fundamental knowledge that will help to reduce the burdens of human disability.
Full description
Spasmodic dysphonia (SD) is a chronic debilitating condition, characterized by selective loss of voluntary voice control during speech production due to uncontrolled spasms in the laryngeal muscles. SD becomes even more incapacitating when it is associated with action-induced voice tremor (VT) due to its poor response to gold standard treatment with botulinum toxin. There is, therefore, a critical need to identify new treatment opportunities for SD/VT patients who receive limited, if any, benefits from botulinum toxin injections. The design and use of novel therapeutic approaches for these patients will, however, be largely unattainable if the central mechanisms of SD and VT development remain unknown. Our long-term goal is to determine the pathophysiology of SD and related disorders, such as VT, for the development of new diagnostic and treatment options for these patients. The objective of this application is to identify brain abnormalities in SD and SD/VT patients as the basis for characterization of central mechanisms underlying symptom improvement following the use of sodium oxybate, a novel pharmacological agent for treatment of ethanol-responsive dystonia. Our central hypothesis is that, compared to SD patients, SD/VT patients will have additional brain abnormalities within the sensorimotor brain circuits controlling voice production, which are being modulated to a greater extent with sodium oxybate treatment. We further postulate that clinical efficacy of sodium oxybate treatment will correlate with its central modulatory effects. The rationale for the proposed research is that identification of distinct brain mechanisms underlying SD and SD/VT clinical manifestations would provide the necessary insights into the pathophysiology of these disorders, while understanding the neural correlates of sodium oxybate action would allow establishment of a scientific rationale for the use of a novel treatment in these disorders. Using a comprehensive approach of multi-modal neuroimaging and clinico-behavioral testing, our central hypothesis will be tested by pursuing two specific aims: (1) determine disorder-specific brain abnormalities in SD and SD/VT patients, and (2) characterize the central effects of sodium oxybate treatment in ethanol-responsive SD and SD/VT patients. This research is innovative because it focuses not only on identification of distinct pathophysiological factors contributing to SD and VT development, but also on discovery of mechanisms of central effects of a novel oral medication, sodium oxybate, which holds promise for treatment of refractory symptoms in SD and SD/VT. The proposed research is significant because it will advance our understanding of the pathophysiology of dystonia in general and SD in particular as well as will have direct impact on improvement of clinical management of SD and SD/VT patients.
Enrollment
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Exclusion criteria
Subjects who are incapable of giving an informed consent;
Pregnant and breastfeeding women until a time when they are no longer pregnant or breastfeeding will be excluded from the study. All patients of childbearing potential will be required to agree to use a reliable method of contraception prior and during the treatment with sodium oxybate and prior to receiving botulinum toxin. The method of contraception will be documented in the patient's research chart. All women of childbearing potential will undergo a urine pregnancy test, which must be negative for study participation;
Subjects with past or present medical history of
Patients who are not symptomatic due to treatment with botulinum toxin injections into the laryngeal muscles. The duration of positive effects of botulinum toxin vary from patient to patient but lasts on average for 3-4 months. All patients will be evaluated to ensure that they are fully symptomatic prior to the entering the study, except the substudy, which will examine the effects of combined botulinum toxin and sodium oxybate treatments on abnormal brain function in SD and VT patients;
To avoid the possibility of confounding effects of drugs acting upon the central nervous system, all study participants will be questioned about any prescribed or over-the-counter medications as part of their initial intake screening. Those patients who receive medication(s) affecting the central nervous system (except sodium oxybate) will be excluded from the study.
The participants will be asked whether they have undergone any head and neck surgeries, particularly any brain surgery and laryngeal surgeries, such as thyroplasty, laryngeal denervation, and selective laryngeal adductor denervation-reinnervation. Because both brain and laryngeal surgery may potentially lead to the brain structure and function re-organization, all subjects with history of brain and/or laryngeal surgery will be excluded from the study.
The subjects who have tattoos, ferromagnetic objects in their bodies (e.g., implanted stimulators, surgical clips, prosthesis, artificial heart valve, etc.) that cannot be removed for the purpose of MRI study participation.
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53 participants in 1 patient group
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Data sourced from clinicaltrials.gov
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