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1.
Annu Int Conf IEEE Eng Med Biol Soc ; 2022: 2310-2313, 2022 07.
Article in English | MEDLINE | ID: mdl-36086042

ABSTRACT

The study of local field potentials (LFP) recorded from the basal ganglia of patients with movement disorders led to significant advancement in the understanding the pathophysiology of Parkinson's disease (PD). The possibility of investigating possible changes in the activity of the brain caused by the levodopa administration may provide a useful tool to evaluate the influence or the side-effects of the treatment from patient to patient. The analysis was carried out through a systematic analysis of the fractal component of the subthalamic local field potentials (STN-LFP) that may reveal, with respect to the classical power spectrum analysis, novel important information about the dynamic modulation caused by the drug intake. Indeed, so far, much of what is known about that is related to the presence of a spectral peak in the beta frequency band then attenuated after the levodopa administration. The nonlinear power-law exponent goes beyond this feature, exploring differences that reflect the fractal (scale-free) behavior of the PD brain dynamics. Here, in order to demonstrate that the presence or absence of the peak has no effect on the computation of the power-law exponent, we used simulated LFP recordings. After that, we performed the fractal analysis in shorts epochs of STN LFPs recordings ( N=24 patients, 12 females and 12 males) before and after Levodopa administration. We found no differences in the nonlinear power-law exponent for simulated data, reinforcing the idea that the parameter was not influenced by the attenuation of the hallmark peak for PD patients. As regard real LFP time series, we found that pharmacological treatment for PD differently altered LFP power of non-oscillatory activity, as well as changed the level of fractal exponent in specific frequency bands. Particularly we observed an increase of the fractal exponent in condition of post-levodopa with significant differences related to the response to levodopa in Parkinson's disease. Clinical Relevance- This study points out a potentially novel non-oscillatory biomarker which could reflect intrinsic properties of complex biological systems thus constituting a potential target parameter for novel and alternative neuroprosthetic applications.


Subject(s)
Deep Brain Stimulation , Parkinson Disease , Subthalamic Nucleus , Basal Ganglia , Deep Brain Stimulation/methods , Female , Humans , Levodopa/pharmacology , Levodopa/therapeutic use , Male , Subthalamic Nucleus/physiology
2.
Annu Int Conf IEEE Eng Med Biol Soc ; 2018: 3076-3079, 2018 Jul.
Article in English | MEDLINE | ID: mdl-30441044

ABSTRACT

Intracortical microstimulation can be successfully used to manipulate neuronal activity and connectivity, thus representing a potentially powerful tool to steer neuroplasticity occurring after brain injury. Activity-dependent stimulation (ADS), in which the spikes recorded from a single neuron are used to trigger stimulation at another cortical location, is able to potentiate cortical connections between distant brain areas. Here, we developed an experimental procedure and a computational pipeline aimed at investigating the ability of ADS to induce changes in intra-cortical activity of healthy anesthetized rats.


Subject(s)
Neurons , Animals , Brain , Electric Stimulation , Neuronal Plasticity , Rats
3.
Clin Ter ; 133(5): 323-7, 1990 Jun 15.
Article in Italian | MEDLINE | ID: mdl-2143716

ABSTRACT

The authors evaluated the activity and safety of piperacillin/flucloxacillin in 40 children suffering from bacterial pharyngo-tonsillitis. The combination proved to be effective with regard to this pathology and no toxic or allergic side-effects were reported. This confirms the wide spectrum of the antibiotic.


Subject(s)
Bacterial Infections/drug therapy , Cloxacillin/analogs & derivatives , Floxacillin/administration & dosage , Pharyngitis/drug therapy , Piperacillin/administration & dosage , Tonsillitis/drug therapy , Child , Child, Preschool , Drug Combinations , Drug Evaluation , Female , Humans , Infant , Male , Time Factors
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