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J Mocco

Publications and source records attributed to J Mocco.

At least 37 records · Page 2Linked to original sources

Preoperative prediction of long-term outcome in poor-grade aneurysmal subarachnoid hemorrhage.

OBJECTIVE: To evaluate which presentation indices, demographics, and clinical information predict 12-month outcome in poor-grade aneurysmal subarachnoid hemorrhage (SAH), and to provide a preoperative index of prognosis. METHODS: Data were obtained on all patients with poor-grade (Hunt and Hess Grades IV and V) aneurysmal SAH from a prospectively maintained SAH database and health outcomes project. Demographics, medical history, presenting clinical condition, and health outcomes were analyzed. Survival analysis was performed and Kaplan-Meier curves were generated. Multivariable logistic regression analysis was used to identify significant predictors of poor outcome at 12 months after hemorrhage, as measured by the modified Rankin disability scale. RESULTS: Survival curves for open surgery and endovascular treatment did not differ significantly. Overall, 40% of the 98 definitively treated patients had a favorable outcome at 12 months. Multivariable analysis identified patient age older than 65 years (P < 0.001), hyperglycemia (P < 0.03), worst preoperative Hunt and Hess Grade V (P < 0.0001), and aneurysm size of at least 13 mm (P < 0.002) as significant predictors of poor outcome. These variables were weighted and used to compute a poor-grade aneurysmal SAH Prognosis Score (hereafter, Prognosis Score) for each patient. A Prognosis Score of 0 was associated with a 90% favorable outcome; Prognosis Score of 1 with 83%; Prognosis Score of 2 with 43%; Prognosis Score of 3 with 8%; Prognosis Score of 4 with 7%; and a Prognosis Score of 5 with 0%. CONCLUSION: Outcome in poor-grade aneurysmal SAH is strongly predicted by patient age, worst preoperative Hunt and Hess clinical grade, and aneurysm size. Hyperglycemia on admission after poor-grade aneurysmal SAH increases the likelihood of poor outcome, and is a potentially modifiable risk factor. The Prognosis Score is a useful tool for preoperatively assessing the likelihood of a favorable outcome for poor-grade aneurysmal SAH patients.

Adult↗

Ventriculoperitoneal shunting of idiopathic normal pressure hydrocephalus increases midbrain size: a potential mechanism for gait improvement.

OBJECTIVE: Idiopathic normal pressure hydrocephalus (INPH) is characterized by a classic clinical triad of symptoms, including dementia, urinary incontinence, and gait disturbance. Recent work has demonstrated that the maximal midbrain anteroposterior (AP) diameter is significantly smaller in patients with INPH than in healthy, age-matched controls. The current study was undertaken to determine the effect of ventriculoperitoneal shunt placement on midbrain dimensions in INPH patients. METHODS: Twelve consecutive INPH patients undergoing ventriculoperitoneal shunt placement with pre- and postoperative computed tomographic scans at the Columbia University Medical Center were enrolled. Each patient's pre- and postoperative maximum AP and left-to-right diameters of the midbrain at the pontomesencephalic junction were independently measured in a blinded fashion by two of the authors. The average value of each dimension was computed by calculating the mean values of the measurements of the two observers. RESULTS: Both the mean AP diameter (preoperative mean, 2.06 +/- 0.04 cm; postoperative mean, 2.27 +/- 0.05; P = 0.0007) and left-to-right diameter (preoperative mean, 2.80 +/- 0.07; postoperative mean, 3.03 +/- 0.08; P = 0.0029) increased from pre- to postoperative imaging. The approximate cross-sectional area determined as the product of AP and left-to-right diameters also increased from pre- to postoperative images (preoperative mean, 5.79 +/- 0.22 cm; postoperative mean, 6.90 +/- 0.25 cm; P = 0.00049). CONCLUSION: This study provides supportive evidence that midbrain cytoarchitecture may play a role in the pathophysiology and post-ventriculoperitoneal shunt gait improvement of INPH patients.

Aged↗

Angiographically occult, progressively expanding, giant vertebral artery aneurysm. Case report.

Hunterian ligation is a well-known treatment for complex aneurysms not amenable to direct microsurgical clip application. After proximal parent vessel occlusion, cerebral angiography is typically used to confirm aneurysm thrombosis. The authors report on a vertebral artery (VA) aneurysm that had progressively expanded and caused brainstem compression after hunterian ligation, despite nondiagnostic findings on both conventional and computed tomography (CT) angiography at multiple time points. This 64-year-old woman underwent hunterian ligation of a 1.8-cm VA aneurysm at the origin of the right posterior inferior cerebellar artery. An immediately postoperative conventional angiogram and follow-up CT angiograms obtained 5 and 6 years postligation confirmed complete obliteration of the lesion. Nine years after the initial surgery, however, the patient experienced neurological deterioration. Although CTs showed substantial aneurysm enlargement together with pontine compression, angiograms once again demonstrated complete right VA occlusion with no retrograde filling of the aneurysm. On reexploration, the aneurysm was effectively debulked, clipped, and obliterated. Arterial bleeding was found in the lesion neck, as was evidence of microrecanalization. Hunterian ligation for complex aneurysms carries the risk of microrecanalization and lesion expansion despite nondiagnostic angiography. Although this ligation procedure remains a viable treatment option in carefully selected patients, an extended follow-up evaluation period may be required even when imaging suggests aneurysm obliteration.

Aged↗

Preclinical evaluation of the neuroprotective effect of soluble complement receptor type 1 in a nonhuman primate model of reperfused stroke.

OBJECT: Postischemic cerebral inflammatory injury has been extensively investigated in an effort to develop effective neuroprotective agents. The complement cascade has emerged as an important contributor to postischemic neuronal injury. Soluble complement receptor Type 1 (sCR1), a potent inhibitor of complement activation, has been shown to reduce infarct volume and improve functional outcome after murine stroke. Given numerous high-profile failures to translate promising antiinflammatory strategies from the laboratory to the clinic and given the known species-specificity of the complement cascade, the authors sought to evaluate the neuroprotective effect of sCR1 in a nonhuman primate model of stroke. METHODS: A total of 48 adult male baboons (Papio anubis) were randomly assigned to receive 15 mg/kg of sCR1 or vehicle. The animals were subjected to 75 minutes of middle cerebral artery occlusion/reperfusion. Perioperative blood samples were analyzed for total complement activity by using a CH50 assay. Infarct volume and neurological scores were assessed at the time the animals were killed, and immunohistochemistry was used to determine cerebral drug penetration and C1q deposition. An interim futility analysis led to termination of the trial after study of 12 animals. Total serum complement activity was significantly depressed in the sCR1-treated animals compared with the controls. Immunostaining also demonstrated sCR1 deposition in the ischemic hemispheres of treated animals. Despite these findings, there were no significant differences in infarct volume or neurological score between the sCR1--and vehicle-treated cohorts. CONCLUSIONS: A preischemic bolus infusion of sCR1, the most effective means of administration in mice, was not neuroprotective in a primate model. This study illustrates the utility of a translational primate model of stroke in the assessment of promising antiischemic agents prior to implementation of large-scale clinical trials.

Animals↗

Correlation of cerebral metabolites with functional outcome in experimental primate stroke using in vivo 1H-magnetic resonance spectroscopy.

BACKGROUND AND PURPOSE: Ensuring the translatability of primate stroke models is critical for preclinical testing of cerebroprotective strategies, and such models would benefit from further characterization of the experimental ischemic tissue. Our purpose was to examine the cerebral metabolic response to stroke in baboons with MR spectroscopy and to correlate metabolite levels with functional neurologic outcomes. METHODS: Seven baboons underwent 1 hour of middle cerebral artery occlusion. At 3 and 10 days, each animal was imaged with traditional MR imaging and multivoxel proton (1)H-MR spectroscopy, and a neurologic examination was performed. Spectra obtained from the infarcted hemisphere of each animal were compared with the contralateral hemisphere, and metabolite levels were correlated with neurologic outcome scores. RESULTS: Spectra obtained at 3 days postischemia revealed prominent lactate (LAC) resonances and attenuated N-acetylaspartate (NAA) peaks in infarcted hemispheres. Ten-day spectra showed persistence of these findings in animals with large strokes (>30% of the hemisphere), with partial normalization of the spectra in animals with small strokes (<30% of the hemisphere). Mean area under the curve from LAC spectra had a negative correlation with functional outcome by 2 different scoring systems (r(2) = 0.72 and 0.73), whereas NAA showed a positive correlation (r(2) = 0.79 and 0.62). CONCLUSIONS: The metabolic alterations observed in our primate model of reperfused ischemia by (1)H-MR spectroscopy recapitulate those seen in clinical stroke. Furthermore, correlations between LAC and NAA peaks with functional outcome further suggest that MR spectroscopy may play a role in outcome prediction following cerebral infarction in higher primates.

Animals↗

Elevations in preoperative monocyte count predispose to acute neurocognitive decline after carotid endarterectomy for asymptomatic carotid artery stenosis.

BACKGROUND AND PURPOSE: Although the incidence of major stroke attributable to carotid endarterectomy (CEA) is low (1% to 2%), approximately 25% of patients experience subtle postoperative neurocognitive dysfunction. This study examines whether preoperative leukocyte profiles predict cognitive outcome in asymptomatic CEA patients. METHODS: Sixty-nine asymptomatic CEA patients underwent neuropsychometric testing preoperatively and on postoperative day 1 (POD1). Preoperative white blood cell counts and differentials were obtained. Logistic regression was performed for risk factors for neurocognitive decline. Variables achieving univariate P<0.10 were included in multivariate analysis. RESULTS: Eighteen (26%) patients experienced neurocognitive decline on POD1; multivariate analysis demonstrated that preoperative monocyte count (P=0.011) and age (P=0.02) independently predicted outcome. CONCLUSIONS: Preoperative monocyte count and age are independently associated with acute neurocognitive decline after CEA for asymptomatic stenosis.

Age Factors↗

APOE-epsilon4 predisposes to cognitive dysfunction following uncomplicated carotid endarterectomy.

BACKGROUND: Between 9% and 23% of patients undergoing otherwise uncomplicated carotid endarterectomy (CEA) develop subtle cognitive decline 1 month postoperatively. The APOE-epsilon4 allele has been associated with worse outcome following stroke. OBJECTIVE: To investigate the ability of APOE-epsilon4 to predict post-CEA neurocognitive dysfunction. METHODS: Seventy-five patients with CEA undergoing elective CEA were prospectively recruited in this nested cohort study and demographic variables were recorded. Patients were evaluated before and 1 month after surgery with a standard battery of five neuropsychological tests. APOE genotyping was performed by restriction fragment length polymorphism analysis in all patients. Neuropsychological deficits were identified by comparing changes (before to 1 month post-operation) in individual performance on the test battery. Logistic regression was performed for APOE-epsilon4 and previously identified risk factors. RESULTS: Twelve of 75 (16%) CEA patients possessed the APOE-epsilon4 allele. Eight of 75 (11%) patients experienced neurocognitive dysfunction on postoperative day 30. One month post-CEA, APOE-epsilon4-positive patients were more likely to be cognitively injured (42%) than APOE-epsilon4-negative patients (5%) (p = 0.002). In multivariate analysis, the presence of the APOE-epsilon4 allele increased the risk of neurocognitive dysfunction at 1 month 62-fold (62.28, 3.15 to 1229, p = 0.007). Diabetes (51.42, 1.94 to 1363, p = 0.02), and obesity (24.43, 1.41 to 422.9, p = 0.03) also predisposed to injury. CONCLUSION: The APOE-epsilon4 allele is a robust independent predictor of neurocognitive decline 1 month following CEA.

Aged↗

Pilomyxoid astrocytoma: diagnosis, prognosis, and management.

Pilomyxoid astrocytoma (PMA) is a recently defined pediatric brain tumor; PMAs were previously classified within the pilocytic astrocytoma (PA) category. Nevertheless, PMA has different histological features and has been shown to behave more aggressively than PA. These findings indicate that PMA may be a unique entity that is distinct from PA, or it may be an unusual variant. To increase awareness of PMA within the neurosurgical community, the authors review the diagnostic criteria, prognostic implications, and current management of this recently described pediatric low-grade astrocytoma.

Astrocytoma↗

The natural history of intracranial carotid artery atherosclerosis.

Intracranial atherosclerosis is the cause of a significant number of strokes. Despite maximal medical therapy, this disease continues to carry a poor prognosis. The authors reviewed studies in which the outcomes after conservative management in patients with intracranial carotid artery atherosclerosis were reported. Analysis of the literature demonstrates that maximal medical therapy frequently fails with this disease, leaving patients at high risk for cerebral infarction and death. A better understanding of the pathophysiological aspects and natural history of this condition may serve to guide clinical decision making and the choice of therapeutic options in this patient population.

Carotid Artery Diseases↗

Current endovascular treatment options for intracranial carotid artery atherosclerosis.

A substantial number of strokes are caused by intracranial atherosclerosis, a disease that traditionally has been treated medically. Recent technological advancements, however, have revolutionized the treatment of this condition by enabling the use of endovascular methods. In this paper the authors focus on the internal carotid artery, and review relevant studies concerning angioplasty with stent placement for the management of intracranial atherosclerosis in this vessel. With continued experience and a multidisciplinary approach in the evaluation of these patients, favorable outcomes may be achieved.

Angioplasty↗

Toward objective quantification of perfusion-weighted computed tomography in subarachnoid hemorrhage: quantification of symmetry and automated delineation of vascular territories.

RATIONALE AND OBJECTIVES: Perfusion-weighted computed tomography (CTP) is a relatively recent innovation that estimates a value for cerebral blood flow (CBF) using a series of axial head CT images tracking the time course of a signal from an intravenous contrast bolus. MATERIALS AND METHODS: CTP images were obtained using a standard imaging protocol and were analyzed using commercially available software. A novel computer-based method was used for objective quantification of side-to-side asymmetries of CBF values calculated from CTP images. RESULTS: Our method corrects for the inherent variability of the CTP methodology seen in the subarachnoid hemorrhage (SAH) patient population to potentially aid in the diagnosis of cerebral vasospasm (CVS). This method analyzes and quantifies side-to-side asymmetry of CBF and presents relative differences in a construct termed a Relative Difference Map (RDM). To further automate this process, we have developed a unique methodology that enables a computer to delineate vascular territories within a brain image, regardless of the size and shape of the brain. CONCLUSIONS: While both the quantification of image symmetry using RDMs and the automated assignment of vascular territories were initially designed for the analysis of CTP images, it is likely that they will be useful in a variety of applications.

Adult↗

Co-registration of radiographic and pathologic infarct territory in a non-human primate model of stroke.

OBJECTIVES: Infarct volume correlation using magnetic resonance imaging (MRI) and pathology specimens enables exact tissue localization of cerebral injury following experimental stroke. We describe a protocol that enables co-registration of radiographic signal change and histologic ischemia in a non-human primate model of stroke. METHODS: One male baboon underwent left middle cerebral artery territory occlusion/reperfusion. MRI [5 mm axial T2 weighted (T2W) slices] was carried out 9 days post-ischemia after which the animal was killed. Immediately post-mortem, the whole brain was perfused and fixed in paraformaldehyde and sliced into 5 mm axial sections that corresponded to those demonstrated on MRI. Slices (40 microm) were obtained from each section and were then stained using Luxol hematoxylin and eosin. RESULTS: The relative area of hyperintensity demonstrated on T2W MRI approximates, in size and location, the region of infarct on gross pathology. This was confirmed microscopically. DISCUSSION: With the use of advanced imaging modalities, this co-registration technique affords the capacity to differentiate ischemic core, penumbra, and uninjured cortex following experimental stroke. Such a precise delineation enables immunohistochemical analysis of a wide variety of substrates in each of the aforementioned regions.

Animals↗

An extramedullary foramen magnum cavernous malformation presenting with acute subarachnoid hemorrhage: case report and literature review.

OBJECTIVE AND IMPORTANCE: This case summarizes our experience with the first described intradural extramedullary cavernous malformation at the foramen magnum and reminds the neurosurgical community to consider cavernous malformations in the differential diagnosis for subarachnoid hemorrhage. CLINICAL PRESENTATION: A 21-year-old man presented with an occipital headache, photophobia, nausea, neck stiffness, and fever of 10 days' duration. A lumbar puncture yielded a clear pink fluid with 300 leukocytes/mm3 (30% neutrophils and 65% lymphocytes) and 42,200 erythrocytes/mm3, a protein count of 243 mg/dl, and a glucose count of 56 mg/dl. Computed tomography revealed a 1.5-cm right-sided dural-based mass of high attenuation that spanned the foramen magnum and a segment of the upper spinal canal. Magnetic resonance imaging showed a loculated, heterogeneously enhancing mass with a cystic component that slightly displaced the medulla to the left. An angiogram was negative for aneurysms and vascular malformations but did show an area of early filling and slow washout of the epidural venous plexus at the posterior canal margin of C1 and C2. INTERVENTION: A suboccipital craniectomy and C1 laminectomy were performed. Upon opening of the dura, an encapsulated mass was visualized. The lesion was located on the right lateral surface of the cervicomedullary junction and was entirely extraparenchymal. The mass was microsurgically dissected, and its associated venous malformation was left intact. The patient's postoperative course was uneventful, with a return to baseline function. Pathological examination confirmed the diagnosis of cavernous malformation. CONCLUSION: Our report not only presents a unique combination of pathological lesion, location, and presentation but also demonstrates that such lesions may be treated surgically with excellent results.

Acute Disease↗

Aggressive cranial vault decompression for cranial hyperostosis: technical case report of two cases.

OBJECTIVE AND IMPORTANCE: Camurati-Engelmann's disease, also known as progressive diaphysial dysplasia, is a disorder of the bone metabolism. Neurological manifestations of progressive diaphysial dysplasia include cranial nerve dysfunction, generalized weakness, cerebellar herniation, and increased intracranial pressure. In the past, surgical intervention has been of limited and temporary benefit. We present two patients with cranial hyperostosis secondary to Camurati-Engelmann's disease who were treated successfully with a single surgery involving a combination of multiple craniotomies for cranial vault decompression. CLINICAL PRESENTATION: Two patients presented with signs and symptoms of increased intracranial pressure secondary to Camurati-Engelmann's syndrome. Radiological workup revealed marked cranial hyperostosis. INTERVENTION: The patients underwent aggressive cranial vault decompression. Multiple craniotomies were performed, and the inner table was then drilled down until the bone was 1 cm thick. CONCLUSION: Effective surgical options are needed for clinically significant cranial hyperostosis. In an effort to further define operative management in these patients, we describe a single, aggressive surgical procedure that may be used for successful cranial decompression.

Adult↗

Herniation secondary to critical postcraniotomy cerebrospinal fluid hypovolemia.

OBJECTIVE: Cerebrospinal fluid hypovolemia resulting in postural headaches is a well-known clinical entity, but severe forms of cerebrospinal fluid hypovolemia with altered mental status and signs of transtentorial herniation ("brain sag") have rarely been reported. This article describes the clinical features of brain sag after craniotomy in an attempt to increase recognition of this syndrome. METHODS: Between April 2001 and January 2003, 220 consecutive patients with subarachnoid hemorrhage were prospectively enrolled in the Columbia Subarachnoid Hemorrhage Outcomes Project; 137 underwent craniotomy for aneurysm clipping. Among these patients, the diagnosis of brain sag was made when all three of the following criteria were present: clinical signs of transtentorial herniation, head computed tomographic scans revealing effacement of the basal cisterns with an oblong brainstem, and improvement of symptoms after placement of the patient in the Trendelenburg position (-15 to -30 degrees). For each patient, the symptoms, clinical course, and subsequent response to treatment were characterized. In addition, brainstem dimensions were measured on computed tomographic scans taken before, during, and after resolution of brain sag. A "sag ratio" was generated for these time points by dividing the maximum anteroposterior distance by the maximum bipeduncular distance. RESULTS: Eleven (8.0%) of 137 aneurysmal subarachnoid hemorrhage patients treated by craniotomy and an intraoperative spinal drain met the criteria for brain sag. Signs of transtentorial herniation developed most commonly between 2 and 4 days postoperatively. Pupillary asymmetry was noted in 10 (91.0%) of 11 patients, whereas the other patient demonstrated extensor posturing. The Trendelenburg position reversed the symptoms in all patients. The mean sag ratios before, during, and after resolution of brain sag were 0.91 +/- 0.03 (mean +/- standard error), 1.18 +/- 0.03, and 0.91 +/- 0.03, respectively. This represented a 30.9% elongation of the brainstem during sag (P < 0.001) and a 23.6% change back to baseline after resolution of the syndrome (P < 0.002). There was no significant difference between the presag and postsag ratios. CONCLUSION: Severe cerebrospinal fluid hypovolemia after craniotomy may produce a dramatic herniation syndrome that is completely reversed by the Trendelenburg position. Brain sag should be included in the differential diagnosis for acute postoperative clinical deterioration in this patient population.

Adult↗

Pilomyxoid astrocytoma: a review.

Pilomyxoid astrocytoma (PMA) is a recently described type of brain tumor. PMA shares similar features with pilocytic astrocytoma (PA), the most common central nervous system (CNS) tumor in the pediatric population, yet displays subtle histologic differences. Previous studies have shown PMA to behave more aggressively than PA, with shorter progression-free and overall survival as well as a higher rate of recurrence and CNS dissemination. These findings suggest that PMA may be a unique and distinct neoplasm. This review summarizes the histologic, clinical, and radiographic characteristics of PMA. In addition, the current treatment options and research endeavors involving this disease are described. Increased recognition of PMA within the medical community has the potential to affect the treatment and prognosis of pediatric low-grade astrocytomas.

Astrocytoma↗

The natural history of unruptured intracranial aneurysms.

Since the publication of preliminary results from the International Study of Unruptured Intracranial Aneurysms in 1998 there has been a great deal of debate concerning the natural history of these lesions and their attendant risk of aneurysmal subarachnoid hemorrhage. Therefore, the authors reviewed a selected number of crucial studies concerning this topic to determine the best evidence-based estimate of a rupture rate for these lesions. Based on this analysis, the yearly risk of bleeding for an unruptured intracranial aneurysm is estimated to be approximately 1% for aneurysms 7 to 10 mm in diameter. This risk of rupture increases with aneurysm size and it likewise diminishes as the size of the lesion decreases. This general rule serves as a reasonable interpretation of the results reported in the current body of literature.

Clinical Trials as Topic↗