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Biomedical subjects

T Simuni

Publications and source records attributed to T Simuni.

9 recordsLinked to original sources

Donepezil for dementia in Parkinson's disease: a randomised, double blind, placebo controlled, crossover study.

OBJECTIVE: To study the safety and efficacy of a cholinesterase inhibitor, donepezil hydrochloride, for the treatment of dementia in Parkinson's disease (PD). METHODS: This was a randomised double blind, placebo controlled, crossover study in 22 subjects with PD and dementia. Participants were randomised to receive either donepezil followed by identical placebo, or placebo followed by donepezil. Donepezil was administered at 5-10 mg/day. Treatment periods were 10 weeks with a washout period of 6 weeks between the two periods. The primary outcome measure was the Alzheimer's Disease Assessment Scale Cognitive Subscale (ADAScog). RESULTS: Donepezil was well tolerated and most adverse events were mild. There was no worsening of PD symptoms as measured by the total or motor sections of the Unified Parkinson's Disease Rating Scale.There was a 1.9 point trend toward better scores on the ADAScog on treatment compared with placebo that was not statistically significant. The secondary cognitive measures showed a statistically significant 2 point benefit on the Mini Mental Status Examination and no change on the Mattis Dementia Rating Scale (MDRS). The Clinical Global Impression of Change (CGI) showed a significant 0.37 point improvement on donepezil. No improvement was observed on the MDRS or the Brief Psychiatric Rating Scale. Carryover between treatment periods was observed but was not statistically significant. CONCLUSIONS: Donepezil was well tolerated and did not worsen PD. There may be a modest benefit on aspects of cognitive function. The possible clinical benefit measured by CGI was reflected in only one of the cognitive scales used in this study.

Aged↗

Other Parkinson syndromes.

The etiology of parkinsonism is varied. Symptomatic parkinsonism is seen in the setting of genetic disorders, infectious processes, structural lesions, and as a result of concomitant medications. A thorough history and good examination will differentiate PD from the diverse group of conditions that can mimic it.

Diagnosis, Differential↗

Revision of deep brain stimulator for tremor. Technical note.

The treatment of essential tremor with thalamic deep brain stimulation (DBS) is considered to be more effective and to cause less morbidity than treatment with thalamotomy. Nonetheless, implantation of an indwelling electrode, connectors, and a generator is associated with specific types of morbidity. The authors describe three patients who required revision of their DBS systems due to lead breakage. The connector between the DBS electrode and the extension wire, which connects to the subclavicular pulse generator, was originally placed subcutaneously in the cervical region to decrease the risk of erosion through the scalp and to improve cosmesis. Three patients presented with fractured DBS electrodes that were located in the cervical region near the connector, necessitating reoperation with stereotactic retargeting and placement of a new intracranial electrode. At reoperation, the connectors were placed subgaleally over the parietal region. Management of these cases has led to modifications in the operative procedure designed to improve the durability of DBS systems. The authors recommend that surgeons avoid placing the connection between the DBS electrode and the extension wire in the cervical region because patient movement can cause microfractures in the electrode. Such microfractures require intracranial revision, which may be associated with a higher risk of morbidity than the initial operation. The authors also recommend considering prophylactic relocation of the connectors from the cervical area to the subgaleal parietal region to decrease the risk of future DBS electrode fracture, which would necessitate a more lengthy procedure to revise the intracranial electrode.

Aged↗

Efficacy of unilateral deep brain stimulation of the thalamic ventralis intermedius nucleus in a patient with bipolar disorder associated with Klinefelter syndrome and essential tremor. Case report.

Deep brain stimulation (DBS) of the ventralis intermedius nucleus (Vim) is a safe and effective treatment for essential tremor. Bipolar disorder and essential tremor had each been reported to occur in association with Klinefelter syndrome but the three diseases have been reported to occur together in only one patient. The genetic basis and natural history of these disorders are not completely understood and may be related rather than coincidental. The authors report on a 23-year-old man with Klinefelter syndrome (47,XXY) and bipolar disorder who was treated successfully with unilateral DBS of the thalamic Vim for essential tremor.

Adult↗

Long-term deep brain stimulation in a patient with essential tremor: clinical response and postmortem correlation with stimulator termination sites in ventral thalamus. Case report.

Essential tremor can be suppressed with chronic, bilateral deep brain stimulation (DBS) of the ventralis intermedius nucleus (Vim), the cerebellar receiving area of the motor thalamus. The goal in this study was to correlate the location of the electrodes with the clinical efficacy of DBS in a patient with essential tremor. The authors report on a woman with essential tremor in whom chronic bilateral DBS directed to the ventral thalamus produced adequate tremor suppression until her death from unrelated causes 16 months after placement of the electrodes. Neuropathological postmortem studies of the brain in this patient demonstrated that both stimulators terminated in the Vim region of the thalamus, and that chronic DBS elicited minor reactive changes confined to the immediate vicinity of the electrode tracks. Although the authors could not identify neuropathological abnormalities specific to essential tremor, they believe that suppression of essential tremor by chronic DBS correlates with bilateral termination of the stimulators in the Vim region of the thalamus.

Brain Mapping↗

Clinical manifestations of Parkinson's disease.

Although the clinical manifestations of PD remain similar to those described by Parkinson in the nineteenth century, knowledge of associated findings has increased dramatically. The ability to characterize the myriad of findings associated with PD enables clinicians to care better for patients with PD. Knowledge of the associated symptoms as well as the cardinal manifestations allows clinicians to target treatment to specific symptoms and thereby improve the quality of life of those affected with PD.

Activities of Daily Living↗

Targeting for thalamic deep brain stimulator implantation without computer guidance: assessment of targeting accuracy.

The authors assess the accuracy of targeting nucleus ventralis intermedius (Vim) with fast spin echo inversion recovery (FSE/IR) magnetic resonance imaging (MRI) in 18 successful deep brain stimulator (DBS) implants for medically refractory tremor. FSE/IR-MRI-derived coordinates are compared to the final coordinates employed for DBS lead placement, selected with intraoperative neurophysiology. The authors conclude that FSE/IR MRI is sufficiently reliable to serve as the sole means of anatomically targeting Vim for DBS lead placement. An independent computer workstation is not required for accurate targeting; however, intraoperative neurophysiology remains essential.

Brain Mapping↗

Does levodopa accelerate Parkinson's disease?

Therapeutic options for the treatment of Parkinson's disease (PD) have expanded tremendously over the last 5 years, although levodopa remains the gold standard of therapy. A major therapeutic controversy has been the question of levodopa's potential to cause toxic effects on nigrostriatal cells, thus potentiating the progression of the disease. The answer to that question will guide physicians in the timing of levodopa initiation and its dosage. The issue of levodopa toxicity was initially raised because of its potential to cause long term adverse effects (dyskinesias and motor fluctuations), which are not observed in untreated patients. Levodopa-induced toxicity can be related to its potential to produce free radicals, which are known to be toxic to cells, in the process of its conversion to dopamine. In vitro data reveals some evidence of the toxic effect of levodopa although recent studies suggest that levodopa toxicity is dependent on its concentration and can be ameliorated in the presence of glial cells. In vivo data from healthy animals and humans does not convincingly demonstrate levodopa toxicity. There is no evidence of levodopa-induced neurotoxicity in patients with PD. Despite the absence of toxic effect in patients with PD, levodopa can cause long term complications like motor fluctuations and dyskinesias and should be used judiciously in the minimal clinically effective dose. In this article we review evidence for and against levodopa neurotoxicity and the implications of the 'levo-dopa controversy' on clinical practice.

Animals↗