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[Comparisons among measurement tools in traumatic brain injury outcomes].

Traumatic brain injury (TBI) is considered the most important cause of disability among young people and the most common neurological cause of morbidity. Consequently, there is increasing interest in scales to monitor recovery in TBI. Among these scales, two have been widely adopted: the Glasgow Outcome Scale (GOS) and the Disability Rating Scale (DRS). The purpose of this paper is to compare the results found in DRS and in the original and extended GOS. Sixty-three closed-head injury victims, aged between 12 and 65, on an outpatient follow-up program at a trauma center in the city of São Paulo, with 6 months to 3 years post-TBI, had their characteristics and outcomes assessed. When comparing the results obtained by the scales, it was concluded that although the three of them were strongly correlated, extended GOS showed to be more sensitive in detecting changes in victims with better post-traumatic conditions.

Adolescent↗

Resuscitation with a hemoglobin-based oxygen carrier after traumatic brain injury.

BACKGROUND: Traumatic brain injury (TBI) remains an exclusionary criterion in nearly every clinical trial involving hemoglobin-based oxygen carriers (HBOCs) for traumatic hemorrhage. Furthermore, most HBOCs are vasoactive, and use of pressors in the setting of hemorrhagic shock is generally contraindicated. The purpose of this investigation was to test the hypothesis that low-volume resuscitation with a vasoactive HBOC (hemoglobin glutamer-200 [bovine], HBOC-301; Oxyglobin, BioPure, Inc., Cambridge, MA) would improve outcomes after severe TBI and hemorrhagic shock. METHODS: In Part 1, anesthetized swine received TBI and hemorrhage (30 +/- 2 mL/kg, n = 15). After 30 minutes, lactated Ringer's (LR) solution (n = 5), HBOC (n = 5), or 10 mL/kg of LR + HBOC (n = 5) was titrated to restore systolic blood pressure to > or = 100 mm Hg and heart rate (HR) to < or = 100 beats/min. After 60 minutes, fluid was given to maintain mean arterial pressure (MAP) at > or = 70 mm Hg and heterologous whole blood (red blood cells [RBCs], 10 mL/kg) was transfused for hemoglobin at < or = 5 g/dL. After 90 minutes, mannitol (MAN, 1 g/kg) was given for intracranial pressure > or = 20 mm Hg, LR solution was given to maintain cerebral perfusion pressure at > or = 70 mm Hg, and RBCs were given for hemoglobin of < or = 5 g/dL. In Part 2, after similar TBI and resuscitation with either LR + MAN + RBCs (n = 3) or HBOC alone (n = 3), animals underwent attempted weaning, extubation, and monitoring for 72 hours. RESULTS: In Part 1, relative to resuscitation with LR + MAN + RBCs, LR + HBOC attenuated intracranial pressure (12 +/- 1 mm Hg vs. 33 +/- 6 mm Hg), improved cerebral perfusion pressure in the initial 4 hours (89 +/- 6 mm Hg vs. 60 +/- 3 mm Hg), and improved brain tissue PO2 (34.2 +/- 3.6 mm Hg vs. 16.1 +/- 1.6 mm Hg; all p < 0.05). Cerebrovascular reactivity and intracranial compliance were improved with LR + HBOC (p < 0.05) and fluid requirements were reduced (30 +/- 12 vs. 280 +/- 40 mL/kg; p < 0.05). Lactate and base excess corrected faster with LR + HBOC despite a 40% reduction in cardiac index. With HBOC alone and LR + HBOC, MAP and HR rapidly corrected and remained normal during observation; however, with HBOC alone, lactate clearance was slower and systemic oxygen extraction was transiently increased. In Part 2, resuscitation with HBOC alone allowed all animals to wean and extubate, whereas none in the LR + MAN + RBCs group was able to wean and extubate. At 72 hours, no HBOC animal had detectable neurologic deficits and all had normal hemodynamics. CONCLUSION: The use of HBOC-301 supplemented by a crystalloid bolus was clearly superior to the standard of care (LR + MAN + RBCs) after TBI. This may represent a new indication for HBOCs. Use of HBOC eliminated the need for RBC transfusions and mannitol. The inherent vasopressor effect of HBOCs, especially when used alone, may misguide initial resuscitation, leading to transient poor global tissue perfusion despite restoration of MAP and HR. This suggests that MAP and HR are inadequate endpoints with HBOC resuscitation. HBOC use alone after TBI permitted early extubation and excellent 72-hour outcomes.

Analysis of Variance↗

Anterior pituitary dysfunction following traumatic brain injury (TBI).

Traumatic brain injury (TBI) is the commonest cause of death and disability in young adults living in industrialized countries. Several recent studies have convincingly shown that anterior hypopituitarism is a common complication of head trauma with a prevalence of at least 25% among long-term survivors. This is a much higher frequency than previously thought and suggests that most cases of post-traumatic hypopituitarism (PTHP) remain undiagnosed and untreated. These findings raise important questions about the potential contribution of PTHP to the high physical and neuropsychiatric morbidity seen in this group of patients. In this review, we examine the published reports on the neuroendocrine abnormalities in TBI patients and highlight new data that give novel insights into the natural history of this disorder. We discuss the potential contribution of PTHP to recovery and rehabilitation after injury and the need for the identification and the appropriate and timely management of hormone deficiencies to optimize patient recovery from head trauma, improve quality of life and avoid the long-term adverse consequences of untreated hypopituitarism.

Adult↗

Recovery of intellectual ability following traumatic brain injury in childhood: impact of injury severity and age at injury.

Traumatic brain injury (TBI) may have a profound impact on a child's ongoing development. Various risk factors have been found to predict outcome, but considerable variability remains unexplained. This study used a prospective, longitudinal design to examine the relationship between recovery, injury severity, age at injury and pre-injury ability. 124 children were divided according to (1) age at injury: 'young' (3-7 years) 'old' (8-12) and (2) injury severity (mild, moderate, severe). Children were evaluated acutely (T1) and at 12 months post-injury (T2), using standardized intellectual measures (IQ). Results showed a relationship between greater injury severity and poorer IQ. Age at injury was not predictive of outcome for children with mild/moderate TBI. For severe TBI, younger age at injury led to minimal recovery in IQ, while recovery from later injury was similar to that for adults. Findings suggest that children sustaining severe TBI in early childhood may be particularly at risk for residual problems post-injury.

Adaptation, Psychological↗

Response of the contralateral hippocampus to lateral fluid percussion brain injury.

Traumatic brain injury is a leading cause of death and disability in the United States. Pathological examinations of humans and animal models after brain injury demonstrate hippocampal neuronal damage, which may contribute to cognitive impairments. Data from our laboratories have shown that, at 1 week after brain injury, mice possess significantly fewer neurons in all ipsilateral hippocampal subregions and a cognitive impairment. Since cognitive function is distributed across both cerebral hemispheres, the present paper explores the morphological and physiological response of the contralateral hippocampus to lateral brain injury. We analyzed the contralateral hippocampus using design-based stereology, Fluoro-Jade (FJ) histochemistry, and extracellular field recordings in mice at 7 and 30 days after lateral fluid percussion injury (FPI). At 7 days, all contralateral hippocampal subregions possess significantly fewer healthy neurons compared to sham-injured animals and demonstrate FJ-positive neuronal damage, but not at 30 days. Both the ipsilateral and contralateral dentate gyri demonstrate significantly increased excitability at 7 days post-injury, but only ipsilateral dentate gyrus hyperexcitability persists at 30 days compared to sham. In the contralateral hippocampus, the transient decrease in the number of healthy neurons, concomitant with FJ damage, and electrophysiological alterations establish a stunned period of cellular and circuit dysfunction. The return of healthy neuron number, absence of FJ damage, and sham level of excitability in the contralateral hippocampus suggest recovery of structure and function by 30 days after injury. The cognitive recovery observed after human traumatic brain injury may stem from a differential injury exposure and time course of recovery between homologous regions of the two hemispheres.

Animals↗

Trends in hospitalization associated with traumatic brain injury.

CONTEXT: Traumatic brain injury (TBI) is associated with more than 50000 deaths in the United States each year, and recent observations suggest a substantial decline in TBI-related hospitalizations and deaths. OBJECTIVE: To analyze long-term trends in TBI-related hospitalization in the United States. DESIGN, SETTING, AND PARTICIPANTS: Analysis of existing data from 1980 through 1995 from the National Hospital Discharge Survey, an annual survey representing the US general population. The number of participating hospitals ranged from 400 to 494. MAIN OUTCOME MEASURES: Annual rates of TBI-related hospitalization, stratified by age, sex, severity of injury, and outcome. RESULTS: The annual number of TBI cases identified from the sample during the study period ranged from 1611 to 3129. Overall rates of hospitalization for TBI declined an estimated 51%, from 199 to 98 per 100000 per year. When analyzed by severity of injury, mild TBIs declined most during this period, from 130 to 51 hospitalizations per 100000 per year (61% decline; P<.001 compared with intermediate and severe TBI). The decline was greatest among those aged 5-14 years (-66%) and least among those aged 65 years or older (-9%). The ratio of male to female rates showed little variation during the study period (ratio, 1.8; 95% confidence interval [CI], 1.6-2.0), as did the in-hospital mortality rate (mean, 5.3 per 100000; 95% CI, 3.6-7.1). CONCLUSIONS: Changes in hospital practices may be a major factor in the declining rates of TBI-related hospital admissions. These practices increasingly appear to exclude persons with less severe TBI from hospital admission and shift their care to outpatient settings.

Adolescent↗

Cyclosporin A attenuates acute mitochondrial dysfunction following traumatic brain injury.

Experimental traumatic brain injury (TBI) results in a rapid and significant necrosis of cortical tissue at the site of injury. In the ensuring hours and days, secondary injury exacerbates the primary damage, resulting in significant neurological dysfunction. Recent reports from our lab and others have demonstrated that the immunosuppressant cyclosporin A (CsA) is neuroprotective following TBI. The opening of the mitochondrial permeability transition pore (MPTP) is inhibited by CsA, thereby maintaining the mitochondrial membrane potential and calcium homeostasis in isolated mitochondrial. In the present study we utilized a unilateral controlled cortical impact model of TBI to assess mitochondrial dysfunction in both isolated mitochondria and synaptosomes to elucidate the neuroprotective role of CsA. The results demonstrate that administration of CsA 15 min postinjury significantly attenuates mitochondrial dysfunction as measured using several biochemical assays of mitochondria integrity and energetics. Following TBI, mitochondria isolated from the injured cortex of animals treated with CsA demonstrate a significant increase in mitochondria membrane potential and are resistant to the induction of mitochondrial permeability transition compared to vehicle-treated animals. Similarly, synaptosomes isolated from CsA-treated animals demonstrate a significant increase in mitochondria membrane potential, accompanied by lower levels of intramitochondrial Ca2+ and reactive oxygen species production than seen in vehicle-treated animals. These results suggest that the neuroprotective properties of CsA are mediated through modulation of the MPTP and maintenance of mitochondria homeostasis. Amelioration of cortical damage with CsA indicates that pharmacological therapies can be devised which will significantly alter neurological outcome after injury.

Animals↗

Marked increase of beta-amyloid(1-42) and amyloid precursor protein in ventricular cerebrospinal fluid after severe traumatic brain injury.

Severe traumatic brain injury (TBI) may result in widespread damage to axons, termed diffuse axonal injury. Alzheimer's disease (AD) is characterised by synaptic and axonal degeneration together with senile plaques (SP). SP are mainly composed of aggregated beta-amyloid (Abeta), which are peptides derived from the amyloid precursor protein (APP). Apart from TBI in itself being considered a risk factor for AD, severe head injury seems to initiate a cascade of molecular events that are also associated with AD. We have therefore analysed the 42 amino acid forms of Abeta (Abeta1-42) and two soluble forms of APP (alpha-sAPP and ss-sAPP) in ventricular cerebrospinal fluid (VCSF) and Abeta(1-42) in plasma from 28 patients in a serial samples 0-11 days after TBI. The levels of alpha-sAPP, ss-sAPP and Abeta(1-42) were determined using ELISA assays. After TBI, there was a significant stepwise increase in VCSF-Abeta(1-42) up to 1173 % from day 0-1 to day 5-6 and in VCSF-beta-sAPP up to 2033 % increase from day 0-1 to day 7-11. There was also a slight but significant increase of VCSF-beta-sAPP from day 0-1 to day 5-6 and day 7-11. By contrast, the plasma- Abeta(1-42) level is unchanged after injury. The marked increase in VCSFAbeta(1-42) implies that increased Abeta expression may occur as a secondary phenomenon after TBI with axonal damage. The unchanged level of plasma-Abeta(1-42) in contrast to the marked increase in VCSF-Abeta(1-42) after severe TBI, supports the suggestion that plasma Abeta(1-42) does not reflect Abeta metabolism in the central nervous system (CNS).

Adult↗

In vivo imaging of rapid deformation and strain in an animal model of traumatic brain injury.

In traumatic brain injury (TBI) rapid deformation of brain tissue leads to axonal injury and cell death. In vivo quantification of such fast deformations is extremely difficult, but important for understanding the mechanisms of degeneration post-trauma and for development of numerical models of injury biomechanics. In this paper, strain fields in the brain of the perinatal rat were estimated from data obtained in vivo during rapid indentation. Tagged magnetic resonance (MR) images were obtained with high spatial (0.2 mm) and temporal (3.9 ms) resolution by gated image acquisition during and after impact. Impacts were repeated either 64 or 128 times to obtain images of horizontal and vertical tag lines in coronal and sagittal planes. Strain fields were estimated by harmonic phase (HARP) analysis of the tagged images. The original MR data was filtered and Fourier-transformed to obtain HARP images, following a method originally developed by Osman et al. (IEEE Trans. Med. Imaging 19(3) (2000) 186). The displacements of material points were estimated from intersections of HARP contours and used to generate estimates of the deformation gradient and Lagrangian strain tensors. Maximum principal Lagrangian strains of >0.20 at strain rates >40/s were observed during indentations of 2 mm depth and 21 ms duration.

Animals↗

Transient cognitive deficits are associated with the reversible accumulation of amyloid precursor protein after mild traumatic brain injury.

Mild traumatic brain injury (MTBI) may frequently cause transient behavioral abnormalities without observable morphological findings. In this study, we investigated neuropathological mechanisms underlying transient cognitive deficits after MTBI. Mongolian gerbils were subjected to experimental MTBI. At various time points after injury, behavioral changes were evaluated by the open-field test and T-maze test, and immunohistochemistry of microtubule-associated protein (MAP2) and amyloid precursor protein (APP) was performed to examine disruptions of the neuronal cytoskeleton and axonal transport, respectively. Transient cognitive deficits were observed after MTBI. Sustained MAP2 loss was found within the cortical impact site, but not the hippocampus. Transient APP accumulation at the same time as transient cognitive deficits occurred in the ipsilateral hemisphere, particularly in the subcortical white matter. These results suggest that the axonal dysfunction indicated by the reversible APP accumulation in the white matter, but not the sustained neuronal cytoskeletal damage reflected by the cortical MAP2 loss confined to the impact site, is responsible for the transient functional deficits after MTBI.

Amyloid beta-Protein Precursor↗

Cancelling planned actions following mild traumatic brain injury.

Mild traumatic brain injury (mTBI) leads to a variety of attentional, cognitive, and sensorimotor deficits. An important aspect of behavior that intersects each of these functions is the ability to cancel a planned action. Thus, the purpose of this study was to determine the effects of mTBI on the ability to perform a countermanding saccade task. In this task, participants were asked to generate a saccade to a target appearing in peripheral vision, but to inhibit saccade execution if an auditory stop signal was presented. The delay between the appearance of the peripheral target and the presentation of the auditory stop signal was varied between 0 and 125ms. We found that the change in the probability of cancelling the saccade as a function of this delay was no different between participants with mTBI tested within 2 days of their injury and matched controls. However, saccadic reaction times and the stop signal reaction time were unexpectedly faster in the participants with mTBI and, furthermore, they inaccurately inhibited saccades during 15% of the trials with no stop signal. Taken together, this data suggests that the ability to cancel planned actions is subtly yet adversely affected by mTBI.

Adult↗

Precocious puberty after traumatic brain injury.

After traumatic brain injuries in 33 prepubertal children, precocious puberty was observed in seven. Precocious puberty developed significantly more frequently in girls than in boys (54.5 versus 4.5%, P less than 0.01). Six children with precocious puberty were in coma for greater than or equal to 2 weeks. Follow-up computed tomography revealed cerebral atrophy or focal encephalomalacia in all children with and 69% of children without precocious puberty. There were no striking differences in incidence of motor or cognitive deficits or posttraumatic epilepsy in children with and without precocious puberty. In four of five children, basal sex steroid levels were elevated, and the response to luteinizing hormone releasing hormone stimulation revealed a pubertal pattern after the appearance of secondary sex characteristics.

Brain Injuries↗

Progress in clinical neurosciences: therapeutic hypothermia in severe traumatic brain injury.

Severe traumatic brain injury (sTBI) is a relatively common problem with few therapies proven effective. Despite its use for over 50 years, therapeutic hypothermia has not gained widespread acceptance in the treatment of sTBI due to conflicting results from clinical trials. This review will summarize the current evidence from animal, mechanistic and clinical studies supporting the use of therapeutic hypothermia. In addition, issues of rewarming and optimal temperature will be discussed. Finally, the future of hypothermia in sTBI will be addressed.

Animals↗

Long-term neuropsychological outcomes following mild traumatic brain injury.

Mild traumatic brain injury (MTBI) is common, yet few studies have examined neuropsychological outcomes more than 1 year postinjury. Studies of nonreferred individuals with MTBI or studies with appropriate control groups are lacking, but necessary to draw conclusions regarding natural recovery from MTBI. We examined the long-term neuropsychological outcomes of a self-reported MTBI an average of 8 years postinjury in a nonreferred community-dwelling sample of male veterans. This was a cross-sectional cohort study derived from the Vietnam Experience Study. Three groups matched on premorbid cognitive ability were examined, those who (1) had not been injured in a MVA nor had a head injury (Normal Control; n = 3214), (2) had been injured in a motor vehicle accident (MVA) but did not have a head injury (MVA Control; n = 539), and (3) had a head injury with altered consciousness (MTBI; n = 254). A MANOVA found no group differences on a standard neuropsychological test battery of 15 measures. Across 15 measures, the average neuropsychological effect size of MTBI compared with either control group was -.03. Subtle aspects of attention and working memory also were examined by comparing groups on Paced Auditory Serial Addition Test (PASAT) continuation rate and California Verbal Learning Test (CVLT) proactive interference (PI). Compared with normal controls, the MTBI group evidenced attention problems in their lower rate of continuation to completion on the PASAT (odds ratio = 1.32, CI = 1.0-1.73) and in excessive PI (odds ratio = 1.66, CI = 1.11-2.47). Unique to the MTBI group, PASAT continuation problems were associated with left-sided visual imperceptions and excessive PI was associated with impaired tandem gait. These results show that MTBI can have adverse long-term neuropsychological outcomes on subtle aspects of complex attention and working memory.

Adult↗

Decreased Length of stay, cost savings and descriptive findings of enhanced patient care resulting from and integrated traumatic brain injury programme.

Traumatic brain injury (TBI) has enormous economic consequences. The primary objective was to evaluate the effect of implementation of an integrated TBI programme on patient-care. The research design was a retrospective institutional review for which 1875 patient records were reviewed, healthcare professionals were interviewed, patient care was observed, and a literature review of the prognostic variables for mild, moderate and severe TBI was conducted. The implementation of an integrated TBI programme has reduced the average length of stay from 30.5 to 12 days and resulted in tremendous cost savings of $21.8 million over 6 years. 'Blueprinting' the continuum of TBI patients' care identified the weakest links to be the transfer of patients from the tertiary-care TBI programme to rehabilitation institutions and provision of long-term rehabilitative care due to information asymmetry. This was addressed by the development of comprehensive on-line TBI transfer documents. This study emphasizes the importance of comprehensive neurotrauma programmes.

Adult↗

Work-related deaths and traumatic brain injury.

BACKGROUND: Traumatic brain injury (TBI) at the workplace is a significant contributor to the number of work-related deaths that occur per year. This study aimed to quantify and characterize these deaths in Ontario. METHODS: The study design was a case series with analytic and surveillance components. Data was obtained from the Chief Coroner's Office of Ontario from 1996-2000. RESULTS: A total of 488 work-related injury fatalities were identified. Evidence of TBI was apparent in 45% of these cases (n = 211). Industries with the highest rate of work-related TBI mortality expressed per 100,000 working population included primary industry (59.1), agriculture (24.5), construction (20.0) and transportation/communications/utilities industries (13.9). Deaths involving TBI were more likely to be due to falls than non-TBI-related deaths among workers (p = 0.0001). CONCLUSIONS: Results from this research indicate that prevention programmes should focus on decreasing falls at all ages and increasing the use of personal protective equipment.

Accidental Falls↗

Cases of two patients whose food aversions disappeared following severe traumatic brain injury.

Following traumatic brain injury (TBI) the complete disappearance of food aversions was observed in the cases of two patients. In one of the cases, a young female, this change in her food aversion was manifested several months after the TBI, from the time when she was able to eat normally. The other patient, a young man, exhibited the disappearance of his food aversion immediately after recovery from his unconscious state following TBI. These results indicate that the disappearance of food aversions was a consequence of TBI.

Adult↗

Traumatic brain injury.

PURPOSE: Traumatic brain injury (TBI) leading to severe disability is fortunately rare, but when it occurs, the effect on patients and their families can be devastating. ISSUE: In the UK at the current time, there are insufficient specialist rehabilitation services to cater for the case-load and many patients receive their care in general wards. CONCLUSION: This educational article outlines the principles of management of severe TBI from a practical clinical viewpoint, reviews briefly the evidence for effectiveness of rehabilitation and offers an approach to consistent outcome measurement.

Brain Injuries↗