STUDY DESIGN Four groups, between-subjects study. OBJECTIVES To investigate the effects of exercise on adaptation of normal subjects who had been artificially spatially disoriented. BACKGROUND Many patients referred for rehabilitation experience sensory changes, due to age or disease processes, and these changes affect motor skill. The best way to train patients to adapt to these changes and to improve their sensorimotor skills is unclear. Using normal subjects, we tested the hypothesis that active, planned head movement is needed to adapt to modified visual input. METHODS AND MEASURES Eighty male and female subjects who had normal balance on computerized dynamic posturography (CDP) and the dynamic gait index (DGI), were randomly assigned to four groups. All groups donned diagonally shift lenses and were again assessed with CDP and DGI. The four groups were then treated for 20 min. Group 1 (control group) viewed a video, Group 2 performed exercise that involved translating the entire body through space, but without separate, volitional head movement, Group 3 performed exercises which all incorporated volitional, planned head rotations, and Group 4 performed exercises that involved translating the body (as in Group 2) and incorporated volitional, planned head motion (as in Group 3). All subjects were post-tested with CDP and DGI, lenses were removed, and subjects were retested again with CDP and DGI. RESULTS The groups did not differ significantly on CDP scores but Groups 3 and 4 had significantly better DGI scores than Groups 1 and 2. CONCLUSIONS Active head movement that is specifically planned as part of the exercise is more effective than passive attention or head movements that are not consciously planned, for adapting to sensorimotor change when it incorporates active use of the changed sensory modality, in this case head motion.
The purpose of this study was to investigate the effects of a vestibular rehabilitation program on patients with the diagnosis of migraine-associated dizziness. Subjects were placed in four groups as follows: idiopathic migraine-associated dizziness; idiopathic migraine-associated dizziness and associated benign positional vertigo; posttraumatic migraine-associated dizziness; and posttraumatic migraine-associated dizziness and benign positional vertigo. Vestibular rehabilitation therapy was administered to all patients. Criterion measurements included the dizziness handicap inventory, activities-specific balance confidence scale, computerized dynamic posturography performance, and dynamic gait index. After vestibular physical therapy, all subjects showed significant improvement in the dizziness handicap, activities-specific balance confidence, dynamic gait, and computerized dynamic posturography measures. Patients with migraine-associated dizziness can benefit from physical therapy intervention. The results of this study are important in considering the approach to vertiginous migraine patients with and without head injury.
To study the role of vestibular rehabilitation is treating patients with Meniere's disease.We examined all Meniere's patients presenting to our tertiary care specialized vestibular clinic during a 1-year period. All patients underwent a standardized history and physical examination, a complete auditory-vestibular test battery, and a set of physical therapy tools to measure balance function.A subset of patients suffered from disequilibrium or unsteadiness between attacks. Once the acute fluctuating symptoms of Meniere's were controlled in this group of individuals, all of them underwent vestibular physical therapy and demonstrated significant improvement in balance function on both objective and self-report tests.Due to the fluctuating nature of the disorder, vestibular physical therapy has had a limited role in the treatment of Meniere's disease. In general, rehabilitation has been used only as a postoperative treatment for the acute vertigo seen after vestibular neurectomy or labyrinthectomy. This is the first report advocating the role of vestibular physical therapy in a group of patients receiving medical therapy of intraear medicines (other that gentamicin).
Objective: The objectives of this study were to characterize patterns of dizziness seen after mild head trauma and to examine the diagnosis and treatment of this disorder.Study Design: Prospective patient registry.Setting: Tertiary referral center.Patients: Fifty-eight cases of active duty and retired military personnel who sustained mild head trauma and had resultant dizziness.Interventions: Vestibular evaluation, characterization by group, and treatment.Main Outcome Measures: Outcome measures include characterization of diagnosis types, patient distribution by diagnosis type, and patient outcome.Results: Individuals suffering from dizziness after mild head injury were divided into three diagnostic groups. Forty-one percent of the individuals suffered from posttraumatic vestibular migraines, 28% of the individuals had posttraumatic positional vertigo, and 19% of the individuals were classified as posttraumatic spatial disorientation. The remaining 12% of the patients could not be characterized. The positional group had objective physical examination findings, which cleared with treatment in all cases. The migraine group of patients and the disorientation group of patients had distinct abnormalities of the vestibulo-ocular reflex (VOR) and the vestibulo-spinal reflex (VSR). Eighty-four percent of the migraine group demonstrated an improvement of these test results as compared with 27% of the disorientation group. Mean time to return to work was less than 1 week for the positional group, 3.8 weeks for the migraine group, and greater than 3 months for the disorientation group.Conclusions: Using our patient registry of individuals suffering from dizziness after mild head trauma, we were able to characterize the majority of these cases into one of three more specific diagnostic groups. We present diagnostic criteria, suggested treatment guidelines, and our prognostic data.
Transtympanic gentamicin administration has become a popular modality in the treatment of Ménière's disease. This modality and other inner-ear medical therapy are gaining increased clinical and scientific attention. We previously described the kinetics and effects of gentamicin uptake into the inner ear after delivery of the medicine into the middle ear using a variety of different techniques and sustained-release modalities [1]. In our previous work, we reported an early peak perilymph concentration and the presence of intracellular gentamicin at the 4-hour time point. We also demonstrated the activation of inner-ear damage pathways at this early time point. In this report, we examine the kinetics of gentamicin at very early time points, 1 and 2 hours after administration. Healthy adult chinchillas underwent implantation of middle-ear sustained-release devices (one to each ear) containing gentamicin. The animals then were maintained in a neutral position and underwent perilymph gentamicin sampling at the two predetermined time points. This technique allowed us to assess accurately very early time point inner-ear gentamicin kinetics and to compare the activity. The samples then were run for concentration using mass spectrometry. The information gained from this study may increase our scientific understanding about the effects of gentamicin on the inner ear and may allow clinicians to treat patients more effectively for inner-ear disorders.