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Biomedical subjects

F Murillo-Cabezas

Publications and source records attributed to F Murillo-Cabezas.

At least 19 recordsLinked to original sources

The potential of melatonin in reducing morbidity-mortality after craniocerebral trauma.

Craniocerebral trauma (CCT) is the most frequent cause of morbidity-mortality as a result of an accident. The probable origins and etiologies are multifactorial and include free radical formation and oxidative stress, the suppression of nonspecific resistance, lymphocytopenia (disorder in the adhesion and activation of cells), opportunistic infections, regional macro and microcirculatory alterations, disruptive sleep-wake cycles and toxicity caused by therapeutic agents. These pathogenic factors contribute to the unfavorable development of clinical symptoms as the disease progresses. Melatonin (N-acetyl-5-methoxytryptamine) is an indoleamine endogenously produced in the pineal gland and in other organs and it is protective agent against damage following CCT. Some of the actions of melatonin that support its pharmacological use after CCT include its role as a scavenger of both oxygen and nitrogen-based reactants, stimulation of the activities of a variety of antioxidative enzymes (e.g. superoxide dismutase, glutathione peroxidase, glutathione reductase and catalase), inhibition of pro-inflammatory cytokines and activation-adhesion molecules which consequently reduces lymphocytopenia and infections by opportunistic organisms. The chronobiotic capacity of melatonin may also reset the natural circadian rhythm of sleep and wakefulness. Melatonin reduces the toxicity of the drugs used in the treatment of CCT and increases their efficacy. Finally, melatonin crosses the blood-brain barrier and reduces contusion volume and stabilizes cellular membranes preventing vasospasm and apoptosis of endothelial cells that occurs as a result of CCT.

Craniocerebral Trauma↗

[Head injury in Buenos Aires city: a prospective, population based, epidemiologic study].

OBJECTIVE: The aim of the study is to present head injury (HI) epidemiology in a population of Buenos Aires that represents almost all socioeconomic sectors. MATERIAL AND METHOD: Prospective, population based study, approved by the Ethic, Education and Research Committees as part of a neurotrauma program. RESULTS: HI incidence was 322/100,000 inhabitants, of them mild HI accounted for 93%, moderate HI 4% and severe HI 3%. Average age was greater in women than in men (49 vs. 38 yo, p 0.01). Taking into account population under and over 40 years we found several differences: the relative risk (RR) for any kind of HI was 1.97 (CI 95% 1.77-2.19, p < 0.01, and the RR for motor vehicle (MV) related HI was 2.53 (CI 95% 2.03-3.17, p < 0.01). Male drivers had a higher RR (16.76 CI 95% 5.35-52.50, p < 0.01) regardless age. Assaults were also significantly higher in people under 40 yo (RR 2.11 IC 95% 1.46-3.03, p < 0.01) increased in young males. Self altitude falls were more frequent in population over 40 yo (RR 4.35 CI 95% 2.61-4.16, p < 0.01) and in women at any age (RR 3.15 CI 95% 2.57-3.87, p < 0.01). Pedestrian accidents were also more common in population over 40 yo (RR 1.84 CI 95% 1.41-2.41 p < 0.01). We did not find any other differences concerning the remaining trauma mechanisms. CONCLUSIONS: HI incidence in Buenos Aires is similar to other printed series, but moderate and severe HI and mortality rates are below that ones. Motor vehicle accidents are the leading HI cause, especially in the young male population, while self altitude fall and pedestrian accidents are prevalent in women and people over 40 yo.

Adolescent↗

Brain death after severe traumatic brain injury: the role of systemic secondary brain insults.

Secondary brain insults predominantly due to hypotension are frequent among patients with fatal traumatic brain injury. We assessed the correlation between different systemic secondary brain insults and brain death in 404 patients admitted to our intensive care unit (ICU) after severe traumatic brain injury. We collated data on hypoxemia and hypotension prior to as well as the occurrence of hypoxemia, hypotension, shock, anemia, hyperglycemia, and hyperthermia within the first 24 hours after ICU admission. We also considered both the presence of extracranial injuries and the category of traumatic brain injury using computerized tomography. The 59 patients (14.6%) who developed brain death, were significantly older than patients without a fatal neurological outcome (46.1 +/- 22 vs 29.5 +/- 14.9 years; P < .0001). Intracranial mass lesions, whether surgically evacuated were more frequent among brain-dead patients. The systemic secondary brain insults significantly associated with brain death were hypoxemia, hypotension, shock, anemia, and hyperglycemia within the first 24 hours after ICU admission. After multivariate analysis, the factors that independently predicted brain death were the occurrence of shock (odds ratio [OR], 6.74; 95% confidence interval [CI], 2.85-15.84; P = .001) and older age (OR, 1.05; 95% CI, 1.03-1.07; P = .003). In conclusion, early shock seems to be the major systemic secondary brain insult associated with brain death in patients with severe traumatic brain injury. Prevention of or correction of shock might help to either decrease the occurrence of a fatal neurological outcome or in brain-dead patients to preserve organs in better condition for procurement.

Adult↗

[Evidence of occult systemic hypoperfussion in head injured patients. Preliminary study].

OBJECTIVES: To determine the correlation between blood lactic acid levels in the first 48 hours and outcome, in hemodynamically stable patients, with moderate or severe head injury (HI), and to investigate the risk factors associated with abnormal lactate levels. MATERIAL AND METHODS: A prospective observational study, in 210 adults patients with moderate or severe head injury. When the patients were hemodynamically stable, blood lactate concentrations were measured once on admission, twice daily during the first 2 days and once daily until lactate levels were normalized. The whole group 210 patients were divided into 2 groups. Group 1: (LA < 2.2 mmol/L) patients without occult hypoperfussion (OH), and group 2: (LA >or= 2.2 mmol/L) patients with OH. RESULTS: One hundred and fifteen patients (57.76%) were categorized as group 1, and 95 patients (45.24%) as group 2. In the univariate analysis of risk factors for blood lactate >or=2.2 mmol/L the following variables showed statistical significance: severity of the head injury measured by several scales [Glasgow Coma Scale (GCS), Injury Severity Score (ISS), Revised Trauma Score (RTS) and Acute Physiology and Chronic Health Evaluation (APACHE) II], arterial hypotension, hypoxemia, anaemia, hyperglucemia, hypothermia, a greater incidence of norepinephrine infusion, and the higher percentage of type II lesions in the head computerized tomography at admission showed in the group 1 (53.91% vs. 38.94%) (p<0.03). In the multiple logistic regression analysis only two variables were risk independently associated with elevated blood lactate concentration: APACHE II in the first 24 hours: OR 1.12 (95% IC 1.06--1.196; p<0.0001) and the first 48-hours total fluid infusion volumes: OR 1.09 (95% IC 1.021,16; p < 0.0001). The infection rate (63.2% vs 47.8%, p=0.026), and length of ICU stay [mediana (percentil 25--75)] [13.29 (7.11--21.22) days vs. 8.78 (4.40--16.72) days; p<0.018] were significantly higher in patients with blood lactate >or=2.2 mmol/L (group 2). Although, the percentage of intracranial hypertension and mortality was higher in the group 2, there was no significant difference. In the multivariate analysis, the increase of blood lactate concentration, was not independently associated as a risk factor with studied complications. CONCLUSIONS: The presence of OH in patients with moderate or severe head injury, with postres uscitation arterial pressure, according to present recommendations, is associated with a more severe head injury, showed by APACHE II and the total fluid infusion volumes in the first 48 hours. OH in head injury increases the infection rate and length of ICU stay.

Adolescent↗

The significance of skull fracture in mild head trauma differs between children and adults.

OBJECTIVE: The objective was to determine whether the age of patients with mild head injury and skull fracture influences the level of risk for acute intracranial injuries. METHOD: A study was conducted of 156 patients with skull fracture, 60 children (aged <14 years) and 96 adults, detected among 5,097 consecutive patients with mild head injury (Glasgow Coma Scale [GCS] score of 15-14 points) arriving at the Emergency Department of a Level I University Hospital Trauma Center during 1998. Acute intracranial injuries were defined as traumatic brain injuries identified by cranial computed tomography scan, excluding pneumocephalus. RESULTS: Compared with the children, this risk of intracranial injury was 13 times greater in the adults aged 14-54 years and 16 times greater in the over-54-year-olds. Besides age over 14 years (p<0.0001), compound skull fracture (p<0.001), and a GCS score of 14 (p<0.001) were factors significantly associated with intracranial injury in the logistic regression analysis. CONCLUSIONS: Skull fracture in mild head injury implies a greater risk of intracranial injury in adults than in children.

Adolescent↗

Identification by CT scan of ischemic stroke patients with high risk of brain death.

The identification of patients with high risk of evolution to brain death is one of the more important tasks of transplant coordination teams. Although most of pool of potential donors come from the group of patients who suffer a head injury or hemorrhagic stroke, the procurement of organs from brain-dead patients suffering an ischemic stroke as the cause of brain damage must also be considered. The main objective of this study was to investigate the radiological signs that in the CT scan of admission to a neurological ICU are more frequently associated with progression to brain death. We studied the CT scans of 15 brain-dead patients after an ischemic stroke versus the scans of 15 recovered patients admitted to ICU with the same diagnosis. The radiological signs included: insular ribbon sign, hyperintensities inside the big arteries of the base of the skull, hemispheric hypodensities, midline shift, and compression of the cerebrospinal fluid spaces. There were two signs significantly associated with brain death: midline shifts and the compression of the ambiens cistern. It may be concluded that analysis of the CT scan at admission of patients with an ischemic stroke in the ICU can predict the risk of evolution to brain death.

Brain Death↗

[The usefulness of transcranial Doppler ultrasonography in the early phase of head injury].

OBJECTIVES: 1) To know the transcranial Doppler (TCD) patterns in the early phase of the severe and moderate head injury and its prognostic implications. 2) To ascertain the TCD measurements concordance among different operators. MATERIAL AND METHODS: A prospective observational study in 275 consecutive intensive care unit patients with severe or moderate head injury was designed. Within 12 hrs. of the traumatic event a TCD study was done and a second one within the first 24 hrs. All patients were managed following a protocol made with the aim of promoting the early evacuation of the intracranial space occupying mass, preventing delayed brain damage and keeping the intracranial pressure (ICP) < 20 mm Hg and the cerebral perfusion pressure (CPP) > 60 mm Hg. The patient outcome was categorized with the Glasgow Outcome Score (GOS) at the discharge of the ICU. The mean velocity (MV) and the pulsatily index (PI) were measured in both middle cerebral arteries (MCA) and in the intracranial part of the internal carotid arteries in order to calculate the Lindegaard index. The presence of hypoperfusion, hyperaemia, vasospasm and cerebral circulatory arrest was registered. The presence of high intracranial pressure (HICP), the ICP peak and mode, the lowest CPP, the CPP mode, the minor medium arterial pressure (MAP) and the MAP mode were also recorded. A concordance analysis was made to ascertain the validity of the TCD data obtained by different operators. RESULTS: The concordance analysis among observers showed a kappa index of 0.7863 (p < 0.0001). The median stay in ICU was 7 days (Q1-Q3 of 3-15 days). The intra-ICU mortality was 20.72% (57/275) and the 53.44% of patients (147/275) showed favourable outcome (GOS 4-5) at the discharge of the ICU. The initial TCD showed a MV decreased and a PI increased in the MCA. Eighty of the e 275 patients showed a normal haemodynamic pattern whereas the pattern was abnormal in the remaining 195, degrees the hypoperfusion pattern predominated overall (181/275, 61.87%). HIPO was registered in 123 patients (58.01) an not in 89 (41.99%). A statistic significant correlation was found between the HICP and the DTC data. The early hypoperfusion pattern was related with a higher incidence of HICP (p > 0.05). The decrease in the MV and the increase in the PI were significantly associated with a higher mortality and a worse functional outcome (except for the MV within the first day). The PI was high within the first 24 h in the group of patients who died but was normalised among the survivals group. CONCLUSIONS: Early TCD detects a cerebral hypoperfusion status in the severe and moderate head injury that may imply therapeutic considerations. This hypoperfusion strongly correlates with the severity of the injury, the incidence of HICP and the functional outcome at the ICU discharge. In experienced hands, TCD measurements are reliable when done by different operators.

Acute Disease↗

Imaging the brain.

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Brain Diseases↗

Executive functioning as outcome in patients after traumatic brain injury.

The present study was designed to determine how traumatic brain injury affect executive functioning, to know whether different treatments in the acute phase improve this functioning, and to check whether the severity of the neurocognitive impairment is detected by the Glasgow Outcome Scale (GOS). Ability for problem solving and executive functioning within 2 years after Traumatic Brain Injury (TBI) was examined in 35 conscious survivors. Two groups were formed. One group consisted of 13 patients who needed neurosurgery. The other group was made up of 22 patients without neurosurgical treatment. All were treated in the Neurosurgical Intensive Care Unit and in the Rehabilitation Service. The following variables were registered: Secondary Lesions, Glasgow Coma Scale (GCS), CT, subacute CT, and Glasgow Outcome Scale. Neuropsychological tests administered were Wisconsin Card Sorting Test (WCST) and the Tower of Hanoi/Sevilla. Comparing both groups' test performance (man Whitney U) we found that a severe traumatic brain injury, whatever the treatment applied in the acute phase, impairs the executive functioning of the patients; this impairment is related to acute pathophysiological events. The neurosurgical intervention does not improve the executive functioning. The Glasgow Outcome Scale does not detect more than 25% of the patients with severe impairment. It is suggested that the Tower of Hanoi/Sevilla could be a good tool to evaluate the executive functioning routinely in TBI patients as outcome. It also suggested that mild TBI patients must be referred for a complete neuropsychological examination.

Adult↗

[Pre-postoperative neuropsychological evaluation in the surgical treatment of epilepsy].

INTRODUCTION: Epilepsy is one of the most common neurological disorders, affecting about one percent of the world population. Pharmacological treatment fails in one-third of these patients. Surgical intervention has become an accepted treatment option for those patients with seizure disorders that are refractory to conventional therapies. Cortical resection and callosotomy are the most widely accepted methods of surgical intervention. A prerequisite for success in this type of surgical intervention is the preoperative clinical assessment of the epilepsy surgery candidate. DEVELOPMENT: This paper examines the current uses of neuropsychological assessment in an epilepsy surgery program. Several areas are addressed for discussion with respect to the contributions of neuropsychological assessment: the preoperative evaluation of the epilepsy surgery candidates, including the clinical examination of language and memory functions during the Wada test; the neuropsychological changes that result from surgery and the predictive role of neuropsychology in these areas, and prediction for seizure control following surgery. CONCLUSION: Assessment of cognitive functions is an important component of the preoperative evaluation of the epilepsy surgery candidate, and is needed in order to obtain complete diagnostic information.

Epilepsy↗