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Biomedical subjects

R J Luzondo

Publications and source records attributed to R J Luzondo.

3 recordsLinked to original sources

[Treatment of herpes simplex encephalitis in children].

INTRODUCTION: Herpes simplex encephalitis (HSE) is a focal infectious disease of the central nervous system (CNS) acknowledged the world over as being severe. DEVELOPMENT: The epidemiology is well known in developed countries. It presents in patients over the age of 3 months. The mechanism by which the virus reactivates and penetrates into the CNS is still not fully understood. A timely diagnosis is crucial so that early treatment can be established within the first four days of the infectious process. By so doing, it becomes possible to raise the chances of survival by over 50%. The physician should have a strong suspicion when faced with a patient with symptoms of encephalitis, especially if he or she has focal neurological manifestations, including manifestations in the neuropsychiatric sphere. The non-invasive diagnostic method par excellence is high-sensitivity magnetic resonance imaging studies of the brain within the first 24-48 hours following the onset of the clinical signs and symptoms. Determination of viral DNA in cerebrospinal fluid by the polymerase chain reaction method is the technique with the highest degree of sensitivity and specificity available for carrying out the diagnosis. Effective treatment is intravenous acyclovir: 30 mg/kg/day in three doses. CONCLUSIONS: Encephalitis produced by the herpes virus is a disease that is dreaded because of the high mortality rate and the devastation it causes in the living conditions of survivors. Our aim is to stimulate the clinical suspicion of HSE so that pharmacological treatment can be established even while diagnostic tests are being carried out. We suggest early neuropsychological evaluation and follow-up of the manifestations of focal sequelae related to the frontotemporal regions.

Child↗

[Cerebrovascular accidents in full-term newborn infants].

INTRODUCTION: The purpose of this paper is to review the role of the neurologist in the management of cerebrovascular accidents (CVA) (insults resulting from a sudden obstruction or rupture of an intracranial vessel). This was accomplished by reviewing the literature (PubMed) under the heading of stroke and term neonate. DEVELOPMENT: CVA in full-term neonates are classified as hematomas and infarcts. Hematomas are classified according to: location, structure (arterial, venous, or sinus), type of malformation (aneurysm, venous malformation, and telangiectasia), and cause of the bleed (vessel wall rupture or hypo-coagulation). Classification according to location is based on compartment supra or infratentorial; space -extra-axial (epidural, subdural, or subarachnoid) or intra-axial (parenchymal or ventricular)-; and region -parietal, temporal, thalamic, etc.-. Infarcts are classified according to vascular and parenchymal factors. The vascular factors are the structure, the cause of the obstruction -extramural, mural or intramural (thrombus or embolus)-. The parenchymal factors are type of damage (pale vs hemorrhagic) and location. Patients with suspected embolism should have ultrasound neck. Coagulation studies should be done in patients with hematomas and infracts. Multiple causes may be present in each case. Anticoagulation is only used in small pale infarcts of cardiac embolic origin. CONCLUSION: The neurologist roles in the management of CVA are to classify the event, select the appropriate investigation, and implement treatment.

Humans↗

[Executive function disorders].

AIM: To review the development, anatomy and physiology of executive functions (EF) in normal and pathological conditions. DEVELOPMENT: EF consist of several internal mental process design to solve mental and environmental complex problems in an efficient and acceptable way to the person and the society. EF include inhibition of behavior and irrelevant information, nonverbal working memory, verbal working memory, self-regulation of affect, motivation and arousal, planning, decision making, self monitoring of the entire solving problem process and self evaluation of the results of the action taken. The anatomical substrate is at the prefrontal lobe cortex and its afferent and efferent structures. Neurotransmitters involved in activation of neurons at the prefrontal cortex are dopamine and norepinephrine and in less degree acetylcholine and serotonine. CONCLUSIONS: Disorders of one or more of the EF in children and adolescents are found in attention deficit/hyperactivity disorder, Tourette syndrome, bipolar disease, depression, obsessive-compulsive disorders, autism and traumatic brain injury.

Adolescent↗