We conducted a randomized, cross-over trial to investigate the feasibility, safety, and motor effects of brain stimulation with radio electric asymmetric conveyer (REAC) technique in patients with Alzheimer's disease (AD). Neuropostural optimization (NPO) and sham protocol were administered to 60 patients from the nursing home and day care units of the Alzheimer Center Reina Sofía Foundation. The mean age was 84.1 (SD 7.9) years and 86.7% of the subjects were female. Motor measures were collected at baseline (T1), immediately (T2), seven (T3), and 11 days (T4) after treatment and, following cross-over, immediately (T5), seven (T6), and 11 (T7) days after treatment. Close safety surveillance was conducted from seven days before T1 to the end of the study (T7), with total study duration of 35 days. Wilcoxon test was utilized in the efficacy analysis, considering T1 and T5 as independent baseline assessments and using a threshold of p < 0.05 (corrected) for statistical significance. The NPO protocol was easily administered and well accepted by the participants. Axial movements improved at T3 and T4 after NPO and at T2 after sham NPO, but no significant effects were observed in axial movements in the second phase of the trial. The effects of NPO in gait performance were not consistent. There were six falls between T2 and T7, but only two of them occurred in patients who had received NPO. In light of safety and feasibility of REAC, a trial with the more intense neuropsycho-physical optimization protocol is warranted.
Brain microbleeds are associated with vascular burden and AD diagnosis in old patients with neurodegenerative dementia. More research is warranted regarding the mechanisms and potential clinical implications of these results.
The prevalence of BMB is highly variable (3%-27% in the general population, 6%-80% in patients with vascular risk factors or vascular disease, and 16%-45% in patients with cognitive impairment). BMB are associated with ageing, Alzheimer disease (AD), and in particular haemorrhagic or ischaemic cerebrovascular disease. The pathological substrate of BMB is either lipohyalinosis (subcortical BMB) or cerebral amyloid angiopathy (lobar BMB). BMB exacerbate cognitive impairment, possibly through cortical-subcortical and intracortical disconnection, and increase the risk of death, mostly due to vascular causes. BMB also increase the risk of cerebral haemorrhage, particularly in patients with multiple lobar BMB (probable erebral amyloid angiopathy). Therefore, anticoagulant treatment may be contraindicated in these patients. In patients with lower risk of bleeding, the new oral anticoagulants and the combination of clinical and magnetic resonance imaging follow-up could be helpful in the decision-making process.
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