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Results for “Coma, Post-Head Injury”

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At least 19 recordsLinked to original sources

Diffusion-weighted MR and apparent diffusion coefficient in the evaluation of severe brain injury.

PURPOSE: To study apparent diffusion coefficient (ADC) maps in severely brain-injured patients. MATERIAL AND METHODS: Four deeply comatose patients with severe brain injury were investigated with single-shot, diffusion-weighted, spin-echo echoplanar imaging. The tetrahedral diffusion gradient configuration and four iterations of a set of b-values (one time of 0 mm2/s, and four times of 1000 mm2/s) were used to create isotropic ADC maps with high signal-to-noise ratio. ADC values of gray and white matter were compared among patients and 4 reference subjects. RESULTS: One patient was diagnosed as clinically brain dead after the MR examination. The patient's ADC values of gray and white matter were significantly lower than those of 3 other brain-injured patients. In addition the ADC value of white matter was significantly lower than that of gray matter. CONCLUSION: The patient with fatal outcome shortly after MR examination differed significantly from other patients with severe brain injury but non-fatal outcome, with regard to ADC values in gray and white matter. This might indicate a prognostic value of ADC maps in the evaluation of traumatic brain injury.

Adolescent↗

Recommendations for grading of concussion in athletes.

Mild sports-related concussions, in which there is no loss of consciousness, account for >75% of all sports-related brain injury. Universal agreement on concussion definition and severity grading does not exist. Grading systems represent expertise of clinicians and researchers yet scientific evidence is lacking. Most used loss of consciousness and post-traumatic amnesia as markers for grading concussion. Although in severe head injury these parameters may have been proven important for prognosis, no study has done the same for sport-related concussion. Post-concussion symptoms are often the main features to help in the diagnosis of concussion in sport. Neuropsychological testing is meant to help physicians and health professionals to have objective indices of some of the neurocognitive symptoms. It is the challenge of physicians, therapists and coaches involved in the care of athletes to know the symptoms of concussion, recognise them when they occur and apply basic neuropsychological testing to help detect this injury. It is, therefore, recommended to be familiar with one grading system and use it consistently, even though it may not be scientifically validated. Then good clinical judgement and the ability to recognise post-concussion signs and symptoms will assure that an athlete never returns to play while symptomatic.

Athletic Injuries↗

Head injuries in snowboarders compared with head injuries in skiers. A prospective analysis of 1076 patients from 1994 to 1999 in Niigata, Japan.

We investigated snowboarding-related head injury cases and skiing-related head injury cases during five ski seasons at one resort area. There were 634 snowboarding-related head injuries and 442 skiing-related head injuries. The number of snowboarding head injuries increased rapidly over the study period. More male snowboarders than female snowboarders suffered head injuries. For both snowboarders and skiers, head injuries frequently occurred on the easy and middle slopes. Falls were the most frequent causes of injury in both groups. Jumping was a more frequent cause of injury in the snowboarders (30%) than in the skiers (2.5%). Injury to the occipital region predominated in the snowboarders as compared with the skiers. There were 49 organic lesions in 37 snowboarders and 46 organic lesions in 33 skiers. Subdural hematoma was frequent in the snowboarding head injury group, and fracture was frequent in the skiing head injury group compared with the snowboarding group (not significant). Subdural hematoma was likely to be caused by a fall rather than by a collision, and bone fracture was likely to be caused by a collision rather than by a fall. Four snowboarders and one skier died as a result of their head injuries. Our data suggest that snowboarding head injuries may be prevented by protection of the occipital region and refraining from jumping by beginners.

Accidental Falls↗

Rehabilitation outcome in a patient awakened from prolonged coma.

BACKGROUND: This article describes the rehabilitation of a patient recovering from a prolonged coma (defined as lasting longer than 4 weeks). The case is noteworthy because it exemplifies the possibilities and difficulties entailed in treating these patients, who are often regarded as too severely impaired to justify intensive rehabilitation efforts. CASE REPORT: The patient is a 28-year old Polish male, unmarried, who suffered serious closed head injuries in an automobile accident in April of 1999. He was in a comatose state for more than two months, with a GCS score of 5. When admitted for rehabilitation he was bedridden, with global aphasia, agraphia, limb apraxia, and executive dysfunction. The rehabilitation program developed for him is described in detail. RESULTS: Over the course of rehabilitation, which began in December 1999 and continues to this writing, the patient has regained locomotion capabilities (though with impairments), and his speech has improved considerably. The apraxia has largely resolved, and he is able to write his name and copy words. He is now capable of performing many activities of daily living. CONCLUSIONS: A comprehensive program of rehabilitation characterized by a strategic, heuristic approach is capable of achieving a good outcome even in very difficult cases, such as prolonged coma.

Accidents, Traffic↗

Immediate coma following inertial brain injury dependent on axonal damage in the brainstem.

OBJECT: Immediate and prolonged coma following brain trauma has been shown to result from diffuse axonal injury (DAI). However, the relationship between the distribution of axonal damage and posttraumatic coma has not been examined. In the present study, the authors examine that relationship. METHODS: To explore potential anatomical origins of posttraumatic coma, the authors used a model of inertial brain injury in the pig. Anesthetized miniature swine were subjected to a nonimpact-induced head rotational acceleration along either the coronal or axial plane (six pigs in each group). Immediate prolonged coma was consistently produced by head axial plane rotation, but not by head coronal plane rotation. Immunohistochemical examination of the injured brains revealed that DAI was produced by head rotation along both planes in all animals. However, extensive axonal damage in the brainstem was found in the pigs injured via head axial plane rotation. In these animals, the severity of coma was found to correlate with both the extent of axonal damage in the brainstem (p < 0.01) and the applied kinetic loading conditions (p < 0.001). No relationship was found between coma and the extent of axonal damage in other brain regions. CONCLUSIONS: These results suggest that injury to axons in the brainstem plays a major role in induction of immediate posttraumatic coma and that DAI can occur without coma.

Animals↗

Improvement in the information content of the Glasgow Coma Scale for the prediction of full cognitive recovery after head injury using fuzzy logic.

BACKGROUND: The objective of this study was to modify the existing Glasgow Coma Scale (GCS) into a fuzzy GCS by using fuzzy information representation and fuzzy inferencing. The study compared the information content of the existing GCS with the new fuzzy GCS for prediction of full cognitive recovery in patients with head injury. METHODS: A record-based study was conducted at the Government Medical College and Hospital, a tertiary care facility in Nagpur, India. The study, which covered the period from January 1 to December 31, 1997, included 253 patients with head injuries. Opinions of 17 clinical experts who routinely deal with head injury cases were used for the construction of the fuzzy GCS. RESULTS: By using the max operator for summarization, eye, motor, and verbal stimuli were all significantly associated with the possibility of full cognitive recovery with the fuzzy GCS (P < .001). Nonspecificity of the classical GCS, the min-operated fuzzy GCS, and the max-operated fuzzy GCS was comparable. A reduction in Shannon entropy was maximum with the max-operated fuzzy GCS. Min-operated fuzzy GCS better predicted a lack of full cognitive recovery. CONCLUSIONS: Fuzzy GCS substantially improves the information content for prediction of the possibility of full cognitive recovery after head injury. Eye, motor, and verbal stimuli all uniquely and significantly contribute to prediction of this possibility. We recommend the use of fuzzy GCS for prediction of the possibility of full cognitive recovery in patients with head injuries.

Cognition↗

Tracheostomy in children: there is a place for acceptable risk.

BACKGROUND: Tracheostomy in children remains controversial regarding the risk of complications. METHODS: Forty-six trauma patients (35 male and 11 female, mean age = 6.8 years) were admitted to the intensive care unit between 1987 and 1991 with severe head injury plus coma. Tracheostomy was performed with standard technique after 5.9 days (range, 2-12 days) of intubation. RESULTS: There were no deaths from tracheostomy, but six deaths resulted from severe head injury. One child was discharged with tracheostomy. The 39 survivors remained with tracheostomy 16.14 days (range, 4-71 days) in the intensive care unit. After cannula removal, 31 remained asymptomatic; 8 had respiratory distress: 2 were normal, 5 had endoscopic treatment for subglottic granulomas/stenosis from intubation, and 1 had tracheomalacia from tracheostomy. In 1997, the 18 patients located for follow-up were asymptomatic. At endoscopy, 8 were normal, 9 had subglottal granulomas from intubation, and 1 had 20% tracheal stenosis from tracheostomy. CONCLUSION: Most complications after tracheostomy result from intubation. Tracheostomy has an acceptable risk in children with severe head injury who need prolonged ventilatory support.

Adolescent↗

[Extended indications for decompression of the optic nerve: a differentiating analysis of restriction of the visual function, also in comatose patients].

BACKGROUND: The care of indirect traumatic optic neuropathy is still treated differently. Special diagnostic and therapeutic difficulties exist in comatose patients without definable visual acuity and in patients with complex failure of the visual field with central visual acuity still receiving sufficiently. METHOD: The total collective of optic nerve decompressions within the period between January 1992 and August 2000 was comprised of 66 patients. 18 of these 66 patients (average age: 40.5 years) were comatose and required critical care. 3 of the 48 consciousness-clear patients showed post-traumatically different defects of the visual field with a visual acuity of 0.3, 0.4 and 1.0. The indication for surgical decompression in both groups was based on the ophthalmological findings and the CT-finding of traumatization of the optic nerve, or the orbit apex respectively. RESULTS: During the subsequent postoperative examinations (on average 12.3 months postoperatively) five patients within the group of the unconscious patients showed a normal visual acuity (0.9-1.0), 3 patients a visual acuity of 0.7, 0.4 and 0.3 and one a visual acuity of 0.1. Six patients remained amaurotic. Three patients died from the general consequences of injury. Improvement of visual field and correction of stereoscopic function occurred in all patients, operated on primarily because of the described visual defects. CONCLUSIONS: Due to these results the indication for the decompression of the optic nerve should find special consideration in comatose patients and in cases of severe restriction of the visual field.

Accidental Falls↗

MRI analysis of brain atrophy after severe closed-head injury: relation to clinical status.

The purpose of this study was to determine the clinical correlates of supratentorial ventricular dilations and of corpus callosal atrophy at the subacute stage after a severe closed-head injury (CHI). Thirty-three CHI patients underwent MRI 2 months or more after injury. Morphometric measures were compared to clinical data (coma score, coma duration and Glasgow Outcome Scale). There were numerous significant correlations between clinical data and mid-third ventricle and frontal horns measurements. Fewer significant correlations were found with the lateral ventricle bodies and the corpus callosal body. There was no significant correlation with the posterior part of the corpus callosum and of the ventricles. Corpus callosum atrophy correlated significantly with anterior and deep ventricular dilatation. In conclusion, the best indicator of clinical status was ventriculomegaly, and particularly third ventricle enlargement, which probably reflects the extent of both anterior and deep white matter lesions.

Adult↗

Functional MR imaging assessment of a non-responsive brain injured patient.

Functional magnetic resonance imaging (fMRI) was requested to assist in the evaluation of a comatose 38-year-old woman who had sustained multiple cerebral contusions from a motor vehicle accident. Previous electrophysiologic studies suggested absence of thalamocortical processing in response to median nerve stimulation. Whole-brain fMRI was performed utilizing visual, somatosensory, and auditory stimulation paradigms. Results demonstrated intact task-correlated sensory and cognitive blood oxygen level dependent (BOLD) hemodynamic response to stimuli. Electrodiagnostic studies were repeated and evoked potentials indicated supratentorial recovery in the cerebrum. At 3-months post trauma the patient had recovered many cognitive & sensorimotor functions, accurately reflecting the prognostic fMRI evaluation. These results indicate that fMRI examinations may provide a useful evaluation for brain function in non-responsive brain trauma patients.

Accidents, Traffic↗

[Visual evoked potentials and the P300 component in different courses of the posttraumatic vegetative state].

The late latency components of visual evoked potentials (VEP) and the component P300 AEP were analyzed to evaluate their informative value in the process of mental function restoration in patient after long-term traumatic coma. VEP components with latencies of 70 to 320 msec were studied in 24 patients. Topographical mapping of the power of the study VEP components and components P300 was made by the peak amplitude. Long-term VEP components and component P300 were examined by the method of three-dimensional localization of equivalent dipole sources. In 16 patients with positive tendencies in the condition there was a stable localization of the maximum VEP power in the parietal, sagittal, and occipital regions, component P300 showed its maximum amplitude in the central and parietal regions in the left hemisphere. Eight patients with negative tendencies in the status had the maximum VEP and component P300 in the frontal and temporal regions, predominantly in the right hemisphere. The paper shows it important to evaluate not only time-amplitude parameters and analyzes the tomographic features of its formation in dynamics.

Acoustic Stimulation↗

Extraordinary arousal from semi-comatose state on zolpidem. A case report.

A young semi-comatose male patient was investigated using 99mTc hexamethyl-propylene amine oxime (99mTc HMPAO) brain single photon emission computed tomography (SPECT) before and after administration of the gamma-aminobutyric acid (GABA) agonist zolpidem. It was observed that 15 minutes after application of the drug the patient awoke from his semi-comatose condition and remained awake for the next 3-4 hours. When drug action subsided he returned to his semi-comatose state. Brain SPECT before drug application showed large hypo-active areas in certain parts of the brain. Brain SPECT after drug application showed a generalised cortical activation relative to the cerebellum and a marked and amplified activation of the areas that were hypo-active before drug application.

Adult↗

[Head trauma and brain auditory evoked potentials].

The study investigated brain auditory evoked potentials (BAEP) in patients complaining auditory disturbances after head trauma. The results showed that the incidence of hearing loses was 57.5% and the rate of abnormality of BAEP is 33.75%. The types of the abnormalities of BAEP varied and were related with the position and severity of the head trauma. The types of the abnormalities manifested as loses of I-II waves, prolongation of V latency and I-V interlatency.

Adolescent↗