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Awake Craniotomy for Eloquent Region Glioblastoma Classified by Tumor Location-A Retrospective and Prospective Cohort Study.

INTRODUCTION: The efficacy of awake craniotomy (AC) with intraoperative mapping for glioblastoma (GBM) in eloquent regions remains debated. This study aims to evaluate functional and survival outcomes of GBM patients undergoing AC stratified by tumor locations. METHODS: A combined retrospective (2015-2023, n = 114: 43 AC vs. 71 standard craniotomy) and prospective cohort (2023-2025, n = 28: 13 AC vs. 15 standard craniotomy) of GBM patients with motor/language-eloquent tumors was analyzed. Tumors were classified into motor subtypes (I: precentral gyrus; II: premotor/supplementary motor; III: internal capsule posterior limb; IV: other) and language subtypes (I: Broca's/precentral; II: postcentral/supramarginal gyrus; III: Wernicke's; IV: insular; V: other). Outcomes included extent of resection (EOR), postoperative motor/language recovery, overall survival (OS), and progression-free survival (PFS). RESULTS: The retrospective cohort demonstrated that AC has advantages in functional preservation across various motor/language subtypes. However, AC was associated with significantly deteriorated survival outcomes specifically in precentral gyrus GBMs. A prospective cohort study, enrolling only precentral gyrus GBMs for validation, yielded results consistent with the retrospective findings: worsened OS and PFS (OS: HR = 3.223, p = 0.0450; PFS: HR = 2.374, p = 0.0476); reduced EOR (AC: 74.3% ± 5.3%; standard craniotomy: 86.9% ± 12.3%, p = 0.0470); and better motor recovery. CONCLUSIONS: Functional preservation and survival outcomes of AC in GBM exhibited subtype-specific correlations with tumor locations. AC with intraoperative mapping effectively preserves neurological function in GBM patients. However, for tumors involving the precentral gyrus, the AC approach carries greater risks than benefits and should be considered with caution. TRIAL REGISTRATION: Strategic Intervention on Preserving Motor Function During Awake Craniotomy: NCT05143788. Strategic Intervention on Preserving Language Function During Awake Craniotomy: NCT05143775.

Adult↗

Ultrasound-guided craniotomy for minimally invasive exposure of cerebral convexity lesions.

The authors describe a method of real-time ultrasound-guided craniotomy for an approach to cerebral convexity lesions. During surgery, a specially designed high frequency (7.5 MHz) sector probe with a thin (11 mm), extended tip is used to image the cerebral lesion through a single burr-hole. The distance between burr-hole and lesion and the direction of the target are then determined from the ultrasound images, and craniotomy is completed with the aid of these parameters. Errors in the preoperative planning of the approach, which might result in incorrect placement of the craniotomy, can easily be recognized and corrected at an early stage of the operation, before the craniotomy has been completed. This technique greatly improves the accuracy in placing craniotomy flaps. Since the risk of misplacing the craniotomy is virtually eliminated in lesions which are identifiable on ultrasound images, the technique allows the surgeon to keep the skull opening as limited as possible.

Brain Neoplasms↗

Management of supratentorial cavernous malformations: craniotomy versus gammaknife radiosurgery.

OBJECTIVE: Although craniotomy is the preferred treatment for symptomatic solitary supratentorial cavernous malformation (CM), radiosurgery is also an option. Our aim was to see which of these strategies was the most effective and under what circumstances. METHODS: Of the 46 patients with solitary supratentorial CM that we retrospectively studied, 24 presented with seizures, 16 with focal neurological deficits due to intracerebral hemorrhage, and 6 with both seizures and bleeding. Sixteen were treated with craniotomy and 30 with gammaknife radiosurgery (GKRS). The main outcome measures for comparing craniotomy with GKRS were the proportion of postoperative seizure-free patients and the proportion of patients in whom no rebleeding occurred. RESULTS: Of patients presenting with seizures with/without bleeding, a significantly higher proportion of the craniotomy group than the GKRS group became and remained seizure-free (11/14 [79%] versus 4/16 [25%]; P < 0.002), and of those presenting with bleeding with/without seizures, a somewhat (though nonsignificantly) higher proportion did not rebleed (4/4 [100%] versus 12/18 [67%]) after surgery. The remaining 2 of the 16 craniotomy patients did not rebleed and had no residual tumor at follow up. Twelve of the 30 GKRS patients had evidence of tumor regression at follow up. CONCLUSION: In the clinical management of solitary supratentorial CM, craniotomy for lesionectomy resulted in better seizure control and rebleeding avoidance than GKRS.

Adolescent↗

Risk factors for neurosurgical site infections after craniotomy: a critical reappraisal of antibiotic prophylaxis on 4,578 patients.

The objective of this study was to evaluate incidence and risk factors of postoperative infections, with emphasis on antibiotic prophylaxis, in a series of 4578 craniotomies. A prospective database was implemented for surveillance of postcraniotomy infections. During period A, no antibiotic prophylaxis was prescribed for scheduled, clean craniotomies, lasting less than 4 h, whereas emergency, clean-contaminated or long-lasting craniotomies received cloxacillin or amoxicillin-clavulanate. During period B, prophylaxis was given to every craniotomy. The effect of prophylaxis on craniotomy infections, independently of other risk factors, was studied by multivariate analysis. The overall infection rate was 6.6%. CSF leak, male gender, surgical diagnosis, surgeon, early re-operation, surgical duration and absence of prophylaxis were independent risk factors. CSF leak had the highest odds ratio. Antibiotic prophylaxis decreased infection rate from 9.7% down to 5.8% in the entire population (p<0.0001) mainly by decreasing rates in low risk patients from 10.0% down to 4.6% (p<0.0001). Antibiotic prophylaxis in craniotomy is effective in preventing surgical site infections even in low-risk patients.

Adult↗

Pain after craniotomy. A time for reappraisal?

Pain and nausea were prospectively assessed in 52 patients following elective craniotomy. When assessed at 6-hourly intervals the mean pain scores in patients during the first 24 h for all types of craniotomy were relatively low. However, for a period of at least 2 h 18% of patients complained of excruciating pain, 37% of patients complained of severe pain, 29% of patients complained of moderate pain, 4% of patients complained of mild pain and only 12% of patients complained of no pain in the 24 h following craniotomy. The mean dose of codeine phosphate used within the study period was 123 mg (SD 81). No statistically significant differences in severity of pain or use of codeine phosphate were found when comparing patients undergoing craniotomy at different sites. For at least 2 h 37% of patients complained of severe nausea or vomiting, 35% of patients complained of moderate nausea and only 29% of patients reported no symptoms of nausea during the 24-h study period. Again, no statistically significant differences were found in the severity of emetic symptoms when comparing patients undergoing craniotomy at different sites. Contrary to standard assumptions, severe or moderate pain in the first 24 h after craniotomy is common and is poorly treated with codeine phosphate alone.

Adolescent↗

Small shifts in craniotomy position in the lateral fluid percussion injury model are associated with differential lesion development.

Previous studies have shown that location and direction of injury may affect outcome in experimental models of traumatic brain injury. Significant variability in outcome data has also been noted in studies using the lateral fluid percussion brain injury model (FPI) in rats. In recent studies from our laboratory, we observed considerable variability in localization and severity of tissue damage as a function of small changes in craniotomy position. To further address this issue, we examined the relationship between craniotomy position and brain lesion size/location in rats subjected to moderate FPI (2.28 +/- 0.18 atmospheres). With placement of a 5-mm craniotomy adjacent to the sagittal suture, there was both ipsilateral and contralateral damage as detected at 3 weeks posttrauma using T2-weighted magnetic resonance imaging (MRI). The MRI lesions were generally restricted to the hippocampus and subcortical layers. Shifting of the craniotomy site laterally was associated with increased ipsilateral tissue damage and a greater cortical component that correlated with distance from the sagittal suture. In contrast, the contralateral MRI lesion did not change significantly in size or location unless the center of the craniotomy was placed more than 3.5 mm from the sagittal suture, under which condition contralateral damage could no longer be detected. Ipsilateral tissue damage as determined from the MRI scans was linearly correlated to motor outcome but not with cognitive outcome as assessed by the Morris Water Maze. We conclude that craniotomy position is critical in determining extent and location of tissue injury produced during the lateral FPI model in rats. Addressing such potential variability is essential for studies that address either injury mechanisms or therapeutic treatments.

Animals↗

Intracerebral hemorrhage occurring remote from the craniotomy site.

OBJECTIVE: The purpose of this study was to analyze the available clinical data on postoperative intracerebral hemorrhages that occur in locations remote from the sites of craniotomy. METHODS: The findings of 37 cases of postoperative intracerebral hemorrhages occurring remote from the craniotomy sites were reviewed (5 from our records and 32 from the literature). RESULTS: Remote postoperative intracerebral hemorrhages presented within the first few hours postoperatively in 78% of the patients and were not related to the types of lesions for which the craniotomies were performed. Supratentorial procedures that produced infratentorial hemorrhages involved operations in the deep sylvian fissure and paraclinoid region in 81% of the patients and hemorrhages in the cerebellar vermis in 67% of the patients. Infratentorial procedures that produced supratentorial hemorrhages were performed with the patient in the sitting position for 87% of the patients. The remote supratentorial hemorrhages that occurred were superficial and lobar in 84% of the patients, as opposed to deep and basal ganglionic, which are classic locations for hypertensive hemorrhages. Remote intracerebral hemorrhages occurring after craniotomies were not associated with hypertension, coagulopathy, cerebrospinal fluid drainage, or underlying occult lesions. These hemorrhages commonly led to significant complications; 5 of 37 patients (14%) were left severely disabled, and 12 of 37 patients (32%) died. CONCLUSIONS: Remote intracerebral hemorrhage is a rare complication of craniotomy with significant morbidity and mortality. Such hemorrhages likely develop at or soon after surgery, tend to occur preferentially in certain locations, and can be related to the craniotomy site, operative positioning, and nonspecific mechanical factors. They do not seem to be related to hypertension, coagulopathy, cerebrospinal fluid drainage, or underlying pathological abnormalities.

Adult↗

Results of a randomized trial of vancomycin prophylaxis in craniotomy.

A single prophylactic dose of vancomycin was given in 143 supratentorial craniotomies with a bone flap and 26 suboccipital craniotomies. No antimicrobial agents were given to two similar groups of patients: 172 with supratentorial craniotomy and 19 with suboccipital craniotomy. The infection rate in the vancomycin groups was significantly lower (p less than 0.013), and bone-flap infections alone, the most common infection after supratentorial craniotomy, were significantly fewer (p less than 0.042). Antimicrobial prophylaxis is recommended only for selected high-risk groups. Since a bone flap is devascularized, its resistance to infection is reduced and, once infected, it usually requires surgical removal. Patients undergoing craniotomy with a bone flap therefore form a high-risk group, and antimicrobial prophylaxis is justified.

Adult↗

Tumor resection by stereotactic craniotomy using the Brown-Roberts-Wells system.

Precise localization of subcortical targets contributes to the technical challenge of craniotomies. To address this challenge, the application of readily available stereotactic localization techniques to open craniotomies was investigated. Over a 2-year period, 62 consecutive stereotactic craniotomies were performed successfully using the CT-compatible Brown-Roberts-Wells (BRW) apparatus. Standard BRW hardware and software were employed. This series consists of craniotomies in 50 patients for resection of subcortical mass lesions. Targets were consistently and precisely localized by the stereotactic frame. Pathology revealed 32 metastases, 18 glial tumors, 5 nonglial tumors, and 7 nonneoplastic lesions. Histology differed from presumptive diagnoses by neurodiagnostic imaging studies in 30.6% of cases. The average volume of tumors resected was 55,903 mm3. Gross total resection of all solid tumor tissue was consistently confirmed by postoperative contrast-enhanced CT. Postoperatively, 38 patients with masses were neurologically improved, 22 were unchanged, and 2 were worse. Median postoperative survival for glioblastoma multiforme after adjuvant therapy was 58.7 weeks and for metastases was 39.2 weeks. There were no postoperative deaths. Overall surgical morbidity was 3.7%. CT-directed stereotactic craniotomy using the BRW system is a safe, efficacious, and readily available technique. It successfully confers the precision of stereotactic methodology on open microneurosurgical procedures.

Adolescent↗

Surgical technique of the supraorbital key-hole craniotomy.

BACKGROUND: The enormous development of microsurgical techniques and instrumentation together with preoperative planning using the excellent preoperative diagnostic facilities available, enables neurosurgeons to treat more complicated diseases through smaller and more specific approaches. METHODS: The technical details of the supraorbital key-hole craniotomy are described in this article as it has been evolving in our experience for more than 10 years. After an eyebrow skin incision with careful soft tissue dissection and single frontobasal burr-hole trephination, a supraorbital craniotomy is carried out with a diameter of about 1.5 x 2.5 cm. As a real frontolateral approach, the supraorbital craniotomy avoids removal of the orbital rim, the lesser sphenoid wing or the zygomatic arch. RESULTS AND CONCLUSIONS: The supraorbital craniotomy allows wide intracranial exposure of the deep-seated supra- and parasellar region, according to the concept of key-hole approaches. The limited craniotomy requires minimal brain retraction thus significantly decreasing approach-related morbidity. In addition, the short skin incision within the eyebrow, the careful soft tissue dissection, and the single burr hole trephination result in a pleasing cosmetic outcome.

Brain Diseases↗

Simple reconstruction of frontal sinus opened during craniotomy using small autogenous bone piece: technical note.

BACKGROUND: Accidental opening of the frontal sinuses during craniotomy can lead to various postoperative complications. We report a simple and reliable reconstruction method using no exogenous or autogenous material obtained from another site. METHODS: This method involves packing a small wedge-shaped piece of bone obtained from the bone flap of the craniotomy into the nasal recess of the exposed sinus. The large opened frontal sinus is reconstructed as a new minimized frontal sinus with mucous membrane and bony roof in the nasal recess. RESULTS: Eleven patients with large frontal sinus opening during craniotomy (7 cases of bifrontal craniotomy for the basal interhemispheric approach) underwent frontal sinus reconstruction by packing of a small bone piece into the nasal recess. No patients suffered postoperative complications related to the opened frontal sinus such as pneumocephalus or cerebrospinal fluid rhinorrhea. CONCLUSIONS: Packing of a small bone piece from the bone flap is a quick and reliable method to reconstruct the frontal sinus opened during craniotomy.

Bone Transplantation↗

Compression of the internal jugular vein by the transverse process of the atlas as the cause of cerebellar hemorrhage after supratentorial craniotomy.

BACKGROUND: The cerebellar hemorrhage reported in numerous cases after supratentorial craniotomy has uniformly exhibited the characteristics of hemorrhage associated with venous infarction rather than arterial bleeding. The cause has remained obscure, although previous reports suggested that the cause may be obstruction of flow in the internal jugular vein immediately below the base of the skull. METHODS: The microsurgical anatomy of 36 internal jugular veins in the upper cervical region were defined in adult cadaveric specimens using 3-40x magnification with special attention to the relationship of the vein to the atlas. RESULTS: In every specimen, the posterior wall of the internal jugular vein rested against the transverse process of the atlas as the vein descended immediately below the jugular foramen. In 14 of 36 specimens, the transverse process indented the posterior wall of the vein, causing the vein to be slightly or moderately angulated as it descended across the anterior surface of the transverse process. Three veins were severely kinked as they descended across the transverse process of the atlas. CONCLUSIONS: Obstruction of flow in the internal jugular vein at the site where the vein descends across the transverse process of the atlas is a likely cause of the venous hypertension that has resulted in the cerebellar hemorrhage reported in numerous cases after supratentorial craniotomy. An examination of the biomechanics of the region confirms that turning the head to the side opposite a supratentorial craniotomy and extending the neck, common practices with unilateral supratentorial craniotomy, further aggravates the angulation and obstruction of the internal jugular vein at the transverse process of C1 on the side ipsilateral to the craniotomy.

Adult↗

Accidental dural tears occurring during supratentorial craniotomy -- a prospective analysis of predisposing factors in 100 patients.

OBJECT: Accidental dural tears during craniotomy constitute a possible source of CSF leakage and wound infection. This can turn an elective procedure into a complicated and cost-intensive problem. Only a few studies have addressed the incidence of dural tears, but there have been many studies dealing with various techniques that can be employed to repair dural tears. The present study was carried out to analyze predisposing factors for dural tears during trepanation in order to optimize the design of a robot-assisted trepanation system. PATIENTS: 100 patients were analyzed prospectively. An evaluation sheet was designed to document size and location of the lesion and the craniotomy, the geometry and number of burr holes, and the auxiliary tools used during bone flap removal. Furthermore, the suspected histology was noted and anatomical facts, including cranial vault thickness and the presence of hyperostosis frontalis interna, were documented. RESULTS: In 100 craniotomies performed, in the majority of cases (64 %), in order to gain access to intracerebral lesions, 30 dural tears were seen, involving both dural layers in 26 cases. There were 26 tears located under the margins of the craniotomy; the length was 0-3 cm in 18 patients (69 %). Significant predisposing factors were the thickness of the cranial vault and the presence of a hyperostosis frontalis. Furthermore, the location (frontal) and the diagnosis of an extracerebral pathology, including meningiomas, were significant factors for dural tears. Elderly patients and the use of the drill to complete the trepanation were also significant predisposing factors. Dural repair was done using suturing, in most of the cases combined with a free periostal flap. Central dural tears were integrated into the planned dural opening. A vascularized flap or muscle was used in the minority of cases. Postoperative cerebral fluid leakage was seen in two patients, wound infections in three. CONCLUSIONS: Dural tears occurring during craniotomy cannot be prevented, when predisposing factors are taken into account. The absence of brain damage may due to two factors: 1) in elderly patients with hyperostosis, an additional atrophy of the brain is present; 2) extracerebral tumors, with their space-occupying growth, shift the underlying brain away from the calvaria. Considering the design of a robot-assisted trepanation system, the following conclusions seem possible: dural tears cannot be avoided because predisposing factors are overriding. For improved safety, additional, specialized instrumentation is required.

Adolescent↗

Postoperative headache after the lateral suboccipital approach: craniotomy versus craniectomy.

The lateral suboccipital approach to the cerebellopontine angle is typically performed as a small craniectomy. Incisional pain and headache following cerebellopontine angle surgery have been reported. Adherence of the cervical muscles to the dura, which is richly innervated, with consequent traction has been suggested to be responsible for postoperative headache. Therefore, postoperative headache probably could be reduced by replacing the bone flap between the muscles and the dura. In a prospective non-randomized study this hypothesis was tested by comparing craniectomy and craniotomy. 40 patients underwent removal of an acoustic neuroma via the retrosigmoid approach. Patients with a history of migraine, with additional intracerebral tumors or recurrencies as well as patients who developed a CSF fistula postoperatively were excluded. 29 patients were eligible for further evaluation. 13 patients underwent a craniotomy, 16 patients a craniectomy. All patients were subject to a standardized telephone interview three months and one year after surgery. Comparing the craniotomy group to the craniectomy group no difference was observed regarding age, sex, tumor size and duration of operation. 3 months as well as 12 months postoperatively headache was significantly (p < 0.05) less frequent in the craniotomy group as compared to the craniectomy group. In conclusion, an osteoplastic craniotomy significantly reduces postoperative headache and is therefore highly recommended.

Adult↗

Early prediction of infection after craniotomy for brain tumours.

Reliably predicting infection soon after craniotomies would prevent infection and reduce treatment costs and hospitalization expenses. Therefore we analysed potential risk factors and blood count data after craniotomies for brain tumours in order to predict infection as soon as possible after surgery. We analysed 139 patients who underwent craniotomies for brain tumours from January 1997 to December 2001, and divided them into four categories (Types A to D) according to the following: increase in their white blood counts (WBCs) from Day 0 to Day 1, maximum WBC between Day 0 and Day 2, and maximum c-reactive protein (CRP) between Day 0 and Day 4 after surgery. We evaluated potential risk factors and the blood count data for infections via logistic regression analysis. Type D patients had a significantly higher rate of infection (p = 0.0123) than the other Types, while Type B patients had the lowest rate among the four groups (p = 0.0006). When Type A patients suffered CSF leakages, they had a significantly higher possibility of meningitis (p < 0.0001) or scalp infection (p = 0.012). In those Type A or D patients who were male, more than 70 years old, and suffered from metastases from primary lung cancer lesions, the possibility of pneumonia was significantly higher (p = 0.0178). In conclusion, we are able to predict infection within four days after craniotomies for brain tumours according to standard blood count data and certain risk factors. This possibility allows for improved care and better clinical outcomes in patients that undergo craniotomies for brain tumours.

Adolescent↗

The influence of scalp infiltration with bupivacaine on hemodynamics and postoperative pain in adult patients undergoing craniotomy.

UNLABELLED: After craniotomy, hypertension may contribute to intracerebral hemorrhage. We studied whether scalp infiltration with bupivacaine during craniotomy reduces postoperative pain and hypertension. In a double-blind fashion, 36 adult patients (ASA physical status II or III) undergoing elective craniotomy were randomly assigned to receive scalp infiltration with either bupivacaine (0.25%) and epinephrine (1:200,000) or saline/ epinephrine (1:200,000) for skeletal fixation, skin incision, and wound closure. Heart rate (HR) and mean arterial pressure (MAP) were measured after anesthesia induction, after skull-pin insertion, after scalp infiltration, during dural closure, during skin closure, on admission to postanesthesia care unit (PACU), and 1 h after admission. Visual analog pain scores were recorded in the PACU. MAP was significantly greater in the saline group at scalp infiltration. HR was significantly faster in the saline group at dural and skin closure. The bupivacaine group reported significantly less pain than the saline group at PACU admission and 1 h after admission. Pain scores did not correlate with hemodynamic measurements. We conclude that scalp infiltration with 0.25% bupivacaine with 1:200,000 epinephrine blunts certain intraoperative hemodynamic responses and reduces postoperative pain but has no effect on postoperative hemodynamics. IMPLICATIONS: We sought to evaluate whether scalp infiltration with bupivacaine and epinephrine at the beginning and end of craniotomy would afford more intra- and postoperative hemodynamic stability and influence immediate postoperative pain. We found that intraoperative hemodynamics were not influenced greatly; however, craniotomy patients do have significant postoperative pain, which does not seem to have an influence on hemodynamics in the postanesthesia care unit.

Adolescent↗

Scalp nerve blocks decrease the severity of pain after craniotomy.

UNLABELLED: Up to 80% of patients report moderate to severe pain after craniotomy. In this study, we assessed the efficacy of scalp block for decreasing postoperative pain in brain surgery. Thirty patients scheduled for supratentorial craniotomy were enrolled. They were randomly divided into two groups: Ropivacaine (scalp block with 20 mL of ropivacaine 0.75%) and Saline (scalp block with 20 mL of saline 0.9%). Anesthesia was standardized. The scalp block was performed after skin closure and before awakening. Postoperative pain was assessed at 4, 8, 12, 16, 20, 24, and 48 h by using a 10-cm visual analog scale. Analgesia was provided with sub- cutaneous codeine as requested by the patient. Average visual analog scale scores were higher in the Saline group as compared with Ropivacaine (3.7 +/- 2.4 vs 2.0 +/- 1.6; P = 0.036). The total dose of codeine did not differ, nor did the duration of time before the first dose of codeine was required in the Ropivacaine (571 +/- 765 min) versus Saline (319 +/- 409 min; P = 0.17) group. In conclusion, we found that postoperative scalp block decreases the severity of pain after craniotomy and that this effect is long lasting, possibly through a preemptive mechanism. IMPLICATIONS: Up to 80% of patients report moderate to severe pain after craniotomy. This randomized double-blinded study demonstrated that ropivacaine scalp block decreases the severity of pain after supratentorial craniotomy.

Adolescent↗

Bilateral craniotomies for blunt head trauma.

Development of delayed or recurrent intracranial hematomas requiring reexploration or a secondary craniotomy is well known. Patients with bilateral pathology requiring bilateral craniotomies as the initial emergency operative intervention, however, are uncommon. The lack of available literature and the large volume of head trauma seen at our institution prompted us to analyze the retrospective data on blunt head injury requiring bilateral craniotomies. Twenty patients underwent bilateral craniotomies at the University of Miami/Jackson Memorial Medical Center between January 1986 and June 1994. Ages ranged from 18 to 85 years. Mechanism of injury included motor vehicle crash (n = 4), pedestrian hit by automobile (n = 4), assault (n = 8), fall from height (n = 3), and unknown (n = 1). Epidural hematomas, acute subdural hematomas, contusions, and intracerebral hematomas were seen in varying combinations. The preoperative Glasgow Coma Scale (GCS) score ranged from 4 to 14, with a mean of 8.8 (+/-0.82 SE). Sixteen of the 20 patients survived and were discharged from the hospital. The survivors' Rancho Los Amigos Scale score on discharge ranged from 2 to 8, with a mean of 6.1 (+/-0.45 SE). A Fisher's exact test was performed to compare the outcome between the patients with mild (GCS score 13-15) to moderate (GCS score 9-12) head injury and those with severe (GCS score 4-8) head injury. It showed a statistically higher frequency of death in the severe category (p < 0.05). In conclusion, the outcome of patients with bilateral pathology requiring emergency bilateral craniotomy at initial treatment correlated well with their GCS scores at initial presentation.

Adolescent↗