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F Servadei

Publications and source records attributed to F Servadei.

At least 19 recordsLinked to original sources

Decompressive craniectomy in traumatic brain injury: the randomized multicenter RESCUEicp study (www.RESCUEicp.com).

The RESCUEicp (Randomized Evaluation of Surgery with Craniectomy for Uncontrollable Elevation of intracranial pressure) study has been established to determine whether decompressive craniectomy has a role in the management of patients with traumatic brain injury and raised intracranial pressure that does not respond to initial treatment measures. We describe the concept of decompressive craniectomy in traumatic brain injury and the rationale and protocol of the RESCUEicp study.

Biomedical Research↗

A systematic review of brain injury epidemiology in Europe.

BACKGROUND: The world's literature on traumatic brain injury (TBI) grows annually including new reports on epidemiologic findings from many regions. With the wide variety of reports emphasizing various factors it is useful to compile these findings, hence the objective of this report. Thus, we describe epidemiological factors from European studies largely published in the last 20 years. METHOD: The Medline was searched for TBI related articles from about 1980 to 2003 including terms such as "epidemiology", "head injury", "brain injury" and others. From the research reports identified, we checked references for additional relevant reports and from those reports we abstracted data on TBI incidence, severity, external cause, gender, mortality, prevalence, cost and related factors. RESULTS: Twenty three European reports met inclusion criteria and included findings from national studies from Denmark, Sweden, Finland, Portugal, Germany, and from regions within Norway, Sweden, Italy, Switzerland, Spain, Denmark, Ireland, the U.K. and France. An aggregate hospitalized plus fatal TBI incidence rate of about 235 per 100,000 was derived. Prevalence rate data were not reported from any European country. An average mortality rate of about 15 per 100,000 and case fatality rate of about 11 per 100 were derived. The TBI severity ratio of hospitalized patients was about 22:1.5:1 for mild vs. moderate vs. severe cases, respectively. The percentages of TBI from external causes varied considerably and several reports reported an association of alcohol use with TBI. Outcome or disability findings were mixed and inconsistent. INTERPRETATION: It was difficult to reach a consensus on all epidemiological findings across the 23 published European studies because of critical differences in methods employed across the reports. We highly recommend the development of research guidelines to standardize definitional, case finding, and data reporting parameters to help establish a more precise description and hence utility of the epidemiology of TBI in Europe.

Brain Injuries↗

Clinical and neuroimaging features of severely brain-injured patients treated in a neurosurgical unit compared with patients treated in peripheral non-neurosurgical hospitals.

Most European TBI patients are managed in peripheral hospitals without benefit of guidelines for transfer of such patients to neurosurgical units as needed. This report compares clinical features and outcomes in two series of severe TBI patients: those admitted to a neurosurgical centre or to a general hospital, all in the Piedmont Region of Italy. Of 630 patients with a GCS of 3-8, 351 were admitted to a centralized neurosurgical unit, and 279 were admitted and treated at a peripheral hospital. All patients had a CT scan read by a neurosurgeon on duty and were classified using the Marshall criteria as having a diffuse injury or non-surgical mass lesions. Outcomes were assessed between 6 months and 6 years using either the GOS Extended or the GOS. Independent variables were age, sex, GCS score and Marshall classification. All the examined factors were significantly different between the two groups (p<0.001). For patients admitted to the neurosurgical centre, age, Marshall classification of the CT and GCS were predictors of a favourable outcome, while for patients treated in general hospitals, Marshall classification of the CT, gender and age were predictors of a favourable outcome. Patients admitted to neurosurgical centres are different from those treated in general hospitals not having these specialized facilities and personnel. The absence of guidelines for the transfer of these patients for more advanced care are lacking and should be the focus of new studies on patient referral.

Adolescent↗

Cerebral blood flow mapping in two different subtypes of intraparenchymal hemorrhagic traumatic lesions.

The pathogenesis and the viability of edematous tissue may be different in traumatic hematomas and traumatic contusions. We tested the hypothesis that mapping of regional Cerebral Blood Flow (rCBF) was different in these two subtypes of traumatic intraparenchymal lesions. We evaluated rCBF by means of Xenon-enhanced computerized tomography (Xe-CT) in 59 traumatic intracerebral lesions from 43 patients with severe head injury. One-hundred-nine intracerebral lesions/Xe-CT CBF measurements were obtained. The rCBF was measured in the hemorrhagic core, in the intralesional oedematous low density area and in a 1 cm rim of apparently normal perilesional parenchyma of both lesion subtypes. Not statistically significant lower rCBF levels were found in the edematous area of traumatic contusions. In traumatic hematomas rCBF levels were lower in the core than in the low density area, suggesting that rCBF in edematous area is marginally involved in the initial traumatic injury and that edema is probably influenced by the persistence of the hemorrhagic core. Conversely, in the traumatic contusions a difference in rCBF values was found between core, low density area and perilesional area, indicating that rCBF of the low density area is related to a concentrical distribution of the initial injury.

Adult↗

Isolated glossopharyngeal and vagus nerves palsy due to fracture involving the left jugular foramen.

This report describes a case of delayed post-traumatic glossopharyngeal and vagus nerves palsy (i.e. dysphonia and swallowing dysfunction). A high resolution CT study of the cranial base detected a fracture rim encroaching on the left jugular foramen. Treatment consisted in supportive measures with incomplete recovery during a one-year follow-up period. Lower cranial nerves palsies after head trauma are rare and, should they occur, a thorough investigation in search of posterior cranial base and cranio-cervical lesions is warranted. The presumptive mechanism in our case is a fracture-related oedema and ischemic damage to the nerves leading to the delayed occurrence of the palsy.

Adolescent↗

Time course of CT evolution in traumatic subarachnoid haemorrhage: a study of 141 patients.

BACKGROUND: Evidence of tSAH on an admission CT scan seems to be an early predictor of evolving posttraumatic lesions. Detection of these changes requires serial CT scanners. The goal of our study was to determine the optimal timing of follow-up CT scans in head injured patients with traumatic subarachnoid haemorrhage (tSAH). METHOD: We reviewed the initial and follow-up CT scans in 141 patients with closed head injuries and evidence of tSAH on the initial CT scan. We used the Marshall classification to determine diffuse and focal injuries. The "worst CT scan", defined as the CT examination in which midline shift, cistern compression and/or intracranial focal lesions were greater, was also determined. Any worsening of the admission CT findings, occurring when the "worst CT examination" did not correspond to the initial CT study, was considered as a "CT evolution". Any "CT evolution" associated with a variation from a lower to a higher score in the Marshall classification score was indicated as a "significant CT evolution". FINDINGS: The median time between injury and the first CT scan was 1.3 (IQR 1.5) hours. A CT evolution was found in 83/141 (58.9%) patients in whom the median time between the initial and worst CT scans was 27.7 hours (IQR 69.2 hours). The worst CT studies were seen more often at 12-24 hours and at 24-48 hours after the admission CT scan than in later studies. A similar temporal profile was observed when the timing of the "worst CT scan" was evaluated in 38/83 (45.8%) subjects with a "significant CT evolution". INTERPRETATION: Our findings show that an early admission CT scan did not represent the full extent of the posttraumatic damage in more than half of our patients. They also suggest that to identify these changes in head injured patients with tSAH, CT scans should be repeated at 12-24 and possibly also at 24-48 hours from the admission CT examination to allow early detection and evacuation of evolving intracranial lesions.

Adult↗

Prospective validation of a proposal for diagnosis and management of patients attending the emergency department for mild head injury.

BACKGROUND: In mild head injury, predictors to select patients for computed tomography (CT) and/or to plan proper management are needed. The strength of evidence of published recommendations is insufficient for current use. We assessed the diagnostic accuracy and the clinical validity of the proposal of the Neurotraumatology Committee of the World Federation of Neurosurgical Societies on mild head injury from an emergency department perspective. METHODS: In a three year period, 5578 adolescent and adult subjects were prospectively recruited and managed according to the proposed protocol. Outcome measures were: (a) any post-traumatic lesion; (b) need for neurosurgical intervention; (c) unfavourable outcome (death, permanent vegetative state or severe disability) after six months. The predictive value of a model based on five variables (Glasgow coma score, clinical findings, risk factors, neurological deficits, and skull fracture) was tested by logistic regression analysis. FINDINGS: At first CT evaluation 327 patients (5.9%) had intracranial post-traumatic lesions. In 16 cases (0.3%) previously undiagnosed lesions were detected after re-evaluation within seven days. Neurosurgical intervention was needed in 71 patients (1.3%) and an unfavourable outcome occurred in 39 cases (0.7%). The area under the ROC curve of the variables in predicting post-traumatic lesions was 0.906 (0.009) (sensitivity 70.0%, specificity 94.1% at best cut off), neurosurgical intervention was 0.926 (0.016) (sensitivity 81.7%, specificity 94.1%), and unfavourable outcome was 0.953 (0.014) (sensitivity 88.1%, specificity 95.1%). INTERPRETATION: The variables prove highly accurate in the prediction of clinically meaningful outcomes, when applied to a consecutive set of patients with mild head injury in the clinical setting of a 1st level emergency department.

Adolescent↗

Traumatic acute subdural haematomas of the posterior fossa: clinicoradiological analysis of 24 patients.

BACKGROUND: We report 24 patients with a traumatic acute subdural haematoma of the posterior fossa managed between 1997 and 1999 at 8 Italian neurosurgical centres. METHOD: Each centre provided data about patients' clinico-radiological findings, management, and outcomes, which were retrospectively reviewed. FINDINGS: A poor result occurred in 14 patients (58.3%). Ten patients (41.7%) had favourable results. Patients were divided into two groups according to their admission Glasgow Coma Scale (GCS) scores. In Group 1 (12/24 cases; GCS score, > or =8), the outcome was favourable in 75% of cases. In Group 2 (12/12 cases; GCS score, <8), the outcome was poor in 91.6% of cases. Nineteen patients underwent posterior fossa surgery. Factors correlating to outcome were GCS score, status of the basal cisterns and the fourth ventricle, and the presence of supratentorial hydrocephalus. Multivariate analysis showed significant independent prognostic effect only for GCS score (P<0.05). INTERPRETATION: acute posterior fossa subdural haematomas can be divided into two distinct groups: those patients admitted in a comatose state and those with a moderate/mild head injury on admission. Comatose patients present usually with signs of posterior fossa mass effect and have a high percentage of bad outcomes. On the contrary, patients admitted with a GCS of 8 or higher are expected to recover. In these patients the thickness of the haematoma (<1 cm) seems to be a guide to indicate surgical evacuation of the haematoma.

Adolescent↗

Mixed dishomogeneous hemorrhagic brain contusions. Mapping of cerebral blood flow.

The aim of the study was to verify whether regional cerebral blood flow (rCBF) was distributed centrifugally in traumatic hemorrhagic contusions with multiple cores within an oedematous area. Seventeen traumatic brain contusions, from 14 patients with severe head injury (GCS < 9), were analyzed during 39 Xenon-enhanced computerized tomography (Xe-CT) studies. The CBF was measured in 3 concentric regions of interest (ROls): the hemorrhagic core, the intracontusional oedematous low density area and a 1 cm rim of pericontusional normal-appearing brain tissue surrounding the contusion. Differences between rCBFs in the three ROIs were found (p < 0.0001). rCBF in both the hemorrhagic core (21.4 +/- 19.4 ml/ 100gr/min) and the intracontusional low density area (28.4 +/- 19 ml/100gr/min) were lower than rCBF in pericontusional normal-appearing area (41.9 +/- 16 ml/100gr/min) (p < 0.0001). No significant differences were found between rCBF measured in the hemorrhagic core and intracontusional low density area (p = 0.184). Our study suggests that in the mixed density contusions with multiple hemorrhagic cores, the CBF is concentrically distributed, improving from the core to the periphery.

Adult↗

Induced acute arterial hypertension and regional cerebral flow in intracontusional low density area.

Traumatic brain contusions have been associated with regional ischemia. We aimed to measure the effect of induced supra-normal values of cerebral perfusion pressure (CPP) on regional cerebral blood flow (rCBF) in the intracontusional low density area surrounding the contusional hemorrhagic core. In 7 severely head injured patients (GCS < or = 8) harbouring a contusion larger than 2 cm, the rCBF levels were measured, by means of Xenon-enhanced CT, in: 1) the intracontusional low density area: 2) contralaterally, in a normal brain symmetric area. CBF studies were performed at a baseline CPP of 65.3 mmHg +/- 7 and after 20 minutes of norepinephrine-induced CPP supernormal values (88.3 mmHg +/- 10.5) (p = 0.0013). A "paradoxical" reduction of rCBF levels was observed in both the intracontusional low density area (p = 0.07) and the contralateral "normal" area (p = 0.08). In particular, this decrease of rCBF in the intracontusional low density area (-25.7 + 10 ml/100gr/min) (p = 0.0009) was present in only 4 cases, having a mean rCBF at baseline of 25 +/- 16 ml/100gr/min. In the remaining 3 cases in which rCBF at baseline was abnormally low (12 +/- 7 ml/ 100gr/min), rCBF values improved slightly (3.6 +/- 2 ml/100gr/min) (p = 0.61). An acute increase of CPP seems to marginally affect rCBF in the intracontusional low density area having critically reduced initial values, but may greatly reduce rCBF in subjects starting from non-critical baseline values.

Acute Disease↗

Effect of Italy's motorcycle helmet law on traumatic brain injuries.

OBJECTIVES: To evaluate the impact of a revised Italian motorcycle-moped-scooter helmet law on crash brain injuries. DESIGN: A pre-post law evaluation of helmet use and traumatic brain injury (TBI) occurrence from 1999 to 2001. SETTING: Romagna region, northeastern Italy, with a 2000 resident population of 983 534 persons. PARTICIPANTS: Motorcycle-moped rider survey for helmet use compliance and all residents in the region admitted to the Division of Neurosurgery of the Maurizio Bufalini Hospital in Cesena, Italy for TBI. OUTCOME MEASURES: Helmet use compliance and change in TBI admissions and type(s) of brain lesions. RESULTS: Helmet use increased from an average of less than 20% to over 96%. A comparison of TBI incidence in the Romagna region shows that there was no significant variation before and after introduction of the revised helmet law, except for TBI admissions for motorcycle-moped crashes where a 66% decrease was observed. In the same area TBI admissions by age group showed that motorcycle mopeds riders aged 14-60 years sustained significantly fewer TBIs. The rate of TBI admissions to neurosurgery decreased by over 31% and epidural hematomas almost completely disappeared in crash injured moped riders. CONCLUSIONS: The revised Italian mandatory helmet law, with police enforcement, is an effective measure for TBI prevention at all ages.

Accidents, Traffic↗

Evolving lesions in traumatic subarachnoid hemorrhage: prospective study of 110 patients with emphasis on the role of ICP monitoring.

We have consecutively studied 110 patients with traumatic subarachnoid hemorrhage (tSAH) on the first Computed Tomography (CT) scan (obtained in each case within 3 hours from injury). The only exclusion criteria were brain death on admission, and severe hypotension due to extracranial injuries. All CTs were reviewed by one of us and the "worst" CT examination was determined. We defined the worst CT examination as that showing the most extensive degree of parenchymal-associated damage. Intracranial pressure was monitored in 25 severely head injured patients. Seventy-four patients (66%) showed an evolution from the initial CT scan (worst CT not corresponding to the admission CT). The outcome was favorable in 53 cases (73%) of patients with evolving lesions and in 32 cases (89%) with non evolving lesion. In the 25 severely head injured patients, Intra-cranial Pressure (ICP) monitoring (in combination with scheduled repeat CT scan) was helpful to identify the timing of the worst parenchymal damage and of surgery in those patients with an initial normal intracranial pressure in spite of an evolving lesion.

Brain Injuries↗

Integration of image transmission into a protocol for head injury management: a preliminary report.

Neurosurgical care is limited in many parts of the world to one or two hospitals serving a large geographic area. The quality of neurosurgical response to emergencies depends on the reliability and completeness of the information received from referral hospitals. The aim of this study is to show how application of guidelines for head injury management in an entire area can be usefully combined with transmission of images from the peripheral to the central hospital. From January 1998 to December 2000, 1665 CT examinations were sent via image transfer to the Neurosurgical Unit; 637 first examinations (47%) and 206 second examinations (70%) were related to acute trauma cases. Out of 637 first examinations, 150 patients were actually transferred to the Neurosurgery Unit (23%), whereas of 206 second examinations, only 10 patients were secondarily transferred (5%). In the absence of the outcomes of patients located outside the Neurosurgical Unit, we studied in detail these 10 patients. They are, in fact, the only way for us to partially measure the impact of our system. Only in a single case could the death be attributed to a delay in transferring the patient. We then studied the factors influencing the decision of patient transfer. Mean GCS was 11 both for transferred and non transferred cases. The mean age of all patients was 52 years (median 48, SD 20.5 years); mean age of non-transferred patients was 54 years and for transferred patients it was 41 years (p < 0.01). The same statistically significant difference concerning age applied to any type of pathology sent via image link. In conclusion our data show that it is feasible to co-ordinate in an entire area the treatment of head injured patients. Available systems for CT images link are reliable and mostly useful. Unnecessary transfers can be avoided and the neurosurgeons can evaluate the images of a number of patients who have always been treated outside our Units. This results in more work for the neurosurgeons on duty, but also in a better quality service for the whole area. The lack of follow-up for patients not admitted to Neurosurgery is the limitation on a quality assessment of the system.

Adult↗

Regional brain injury epidemiology as the basis for planning brain injury treatment. The Romagna (Italy) experience.

AIM: Neurosurgical services for traumatic brain injury (TBI) should be based upon the understanding of the epidemiology of TBI in the region as well as the clinical parameters. Our objective was to measure incidence and epidemiologic factors associated with TBI in the Romagna region of Northeastern Italy and correlate those parameters with neurosurgical imaging and related clinical features. METHODS: Guidelines for brain injury management in our region were derived following meetings of all physicians involved in the treatment of brain injury. An epidemiologic study was undertaken in 1998. The study population was all patients admitted for hospital care in the Region following a TBI with a discharge diagnosis of pertinent International Classification Disease, 9(th) revision, codes. Data on the extent, diagnoses, severity, external causes and hospital course were abstracted from the hospital record and computer entered for analyses. RESULTS: Using data for the population of Romagna of about 1000000 persons we identified, in the full year 1998, 2430 TBI patients or an incidence rate of 250 per 100000 resident population. There were, in addition, 460 nonresident patients who were admitted in the region. External causes of injury were generally similar to reports from other places in Western Europe, with the exception of a very low frequency of cases stemming from violence. Age specific incidence rates were highest among young children, persons aged 15-24, and those aged 65 and older. Computerized tomography scans were given to 1732 patients and intracranial traumatic lesions were identified in 497 (28.6%) patients or a rate of 38 /100000. We performed 128 craniotomies, an incidence rate of 11/100000. The case fatality rate (CFR) was 2.8% among admitted patients with the highest rate among those aged 75 or older. CONCLUSION: Incidence of TBI in Italy is similar to other published European series. The number of minor brain injuries admitted for hospital care remains high and can be significantly reduced with better use of CT scans in adults whenever possible. The workload for a neurosurgical unit servicing a population of 1 million is limited and does not justify the opening of new units for trauma care or the use of craniotomies outside the Neurosurgical Unit.

Adolescent↗

Growing-fracture of the orbital roof with post-traumatic encephalocele in an adult patient. Case report.

Growing fractures are a rare entity, usually occurring in paediatric age. Localisation at the orbital region is even rarer. We report the case of a growing fracture of the orbital roof with post-traumatic encephalocele in an adult patient, the 1(st) similar case in adulthood at our knowledge. Clinical and neuroimaging aspects are described, underlining the role of MRI in displaying intraorbital encephalocele. Surgical treatment with relevant technical notes is discussed as well.

Aged↗

Intensive care management of head-injured patients in Europe: a survey from the European brain injury consortium.

OBJECTIVES: (a) to describe current practice in the monitoring and treatment of moderate and severe head injuries in Europe; (b) to report on intracranial pressure and cerebral perfusion pressure monitoring, occurrence of measured and reported intracranial hypertension, and complications related to this monitoring; (c) to investigate the relationship between the severity of injury, the frequency of monitoring and management, and outcome. METHODS: A three-page questionnaire comprising 60 items of information has been compiled by 67 centres in 12 European countries. Information was collected prospectively regarding all severe and moderate head injuries in adults (> 16 years) admitted to neurosurgery within 24 h of injury. A total of 1005 adult head injury cases were enrolled in the study from 1 February 1995 to 30 April 1995. The Glasgow Outcome Scale was administered at 6 months. RESULTS: Early surgery was performed in 346 cases (35%); arterial pressure was monitored invasively in 631 (68%), ICP in 346 (37%), and jugular bulb saturation in 173 (18%). Artificial ventilation was provided to 736 patients (78%). Intracranial hypertension was noted in 55% of patients in whom ICP was recorded, while it was suspected in only 12% of cases without ICP measurement. There were great differences in the use of ventilation and CPP monitoring among the centres. Mortality at 6 months was 31%. There was an association between an increased frequency of monitoring and intervention and an increased severity of injury; correspondingly, patients who more frequently underwent monitoring and ventilation had a less favourable outcome. CONCLUSIONS: In Europe there are great differences between centres in the frequency of CPP monitoring and ventilatory support applied to head-injured patients. ICP measurement disclosed a high rate of intracranial hypertension, which was not suspected in patients evaluated on a clinical basis alone. ICP monitoring was associated with a low rate of complications. Cases with severe neurological impairment, and with the worse outcome, were treated and monitored more intensively.

Adult↗