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Y Erşahin

Publications and source records attributed to Y Erşahin.

At least 19 recordsLinked to original sources

Neuroendoscopic biopsy for intraventricular tumors.

Neuroendoscopy has been shown to be an effective and minimally invasive method in the management of intraventricular tumors. Endoscopic tumor biopsy with or without additional endoscopic procedures such as third ventriculostomy and septostomy can be performed at the same session. Neuroendoscopic tumor biopsy was performed in 18 patients in our department. Their ages ranged from 2 to 65 years (median 12 years); only two of them were adult. Location of the tumors were as follows: pineal region in 7, hypothalamus and 3rd ventricle in 4, lateral ventricle in 4, thalamus in 2, and tectal in 1 patient. All procedures were performed under general anesthesia using rigid neuroendoscopes. Cerebrospinal fluid (CSF) was collected at the beginning of the procedure for cytological analysis and for pineal tumor markers. Biopsy forceps were used to obtain tissue from the lesion. The third ventriculostomy was performed in all patients with a pineal tumor, in addition to the tumor biopsy. The pathological examinations revealed a low-grade astrocytoma in 6 patients, anaplastic astrocytoma in 3, germinoma in 3, pineocytoma in 1, pineoblastoma in 2, glioblastoma multiforme in 1 and granulomatous lesion in 1. Subsequent mode of treatment such as radiation therapy, chemotherapy or radical surgery was determined on the basis of pathological diagnosis. Neuroendoscopic tumor biopsy is a less invasive method than open surgery and has some advantages such as treating the hydrocephalus at the same surgical session and the availability of CSF cytology. Neuroendoscopic techniques should be considered in selected patients.

Adolescent↗

Is meningocele really an isolated lesion?

OBJECT: We designed this study to elucidate the associated occult spinal lesions in patients with simple dorsal meningocele. METHODS: The study population was comprised of two groups. Group I comprised newly diagnosed patients with dorsal spinal meningocele, and group II comprised patients who had had surgery for meningocele and presented with progressive neurological deficits. Magnetic resonance imaging (MRI) scans of the whole spinal column were done. The associated spinal cord malformations were also treated at the same operation. There were 14 boys and 8 girls, with an age range from birth to 4 years (mean 3.9 months), in group I. Of 20 patients (90%) with associated spinal lesions, 6 had more than one lesion, excluding hydromyelia. Group II was made up of 6 patients who had been previously operated on for a meningocele and who presented with tethered cord syndrome. These were 4 boys and 2 girls, who ranged in age from 4 to 10 years (mean 6 years). RESULTS: The level of the conus terminalis was lower than L3 in all patients. The other findings on MRI, besides low conus, were as follows: tight filum, split cord malformation, epidermoid, dorsal lipoma and hydromyelia. CONCLUSIONS: Meningocele frequently camouflages a second, occult, spinal lesion. MRI of the whole spinal column should be performed. An intradural exploration performed with a microneurosurgical technique is needed to detect the fibrous bands that may lead to spinal cord tethering and to release the entrapped nerve roots. The other associated spinal anomalies should be operated on during the same operation.

Child↗

Intraosseous neurinoma of the parietal bone.

Intraosseous neurinoma is very uncommon tumor. Its location in the skull is extremely rare. A 4-year-old boy presented with a lump in the right occipital region. Computed tomography revealed a soft tissue mass with bony erosion in the right occipital bone. The solid, nontender, and immobile mass was totally removed. The pathological examination showed that it was an intraosseous neurinoma. Total resection of intraosseous neurinomas is sufficient treatment and is not followed by recurrence.

Child, Preschool↗

Tethered cord syndrome in adults.

BACKGROUND: The tethered cord syndrome (TCS) consists of an abnormally low conus medullaris tethered by a thickened filum terminale or various forms of spinal dysraphism. The adult variant of the syndrome seems not to be as rare as once thought. METHOD: This study includes 11 patients with a TCS. Clinical, radiological findings and outcome were reviewed in these adult patients with TCS. FINDINGS: The patients ranged in age from 18 to 34 years (mean 24.09 years). There were 7 men and 4 women. The presenting symptoms in order of frequency were as follows: low back pain radiating to legs, urinary complaints, weakness in legs and impotence. All patients had magnetic resonance imaging scans. Physical exercise in 8, birth delivery in 1 and carrying heavy objects in 1 patient were determined as the precipitating factors. No precipitating factor could be defined in one of the patients. All patients were operated on, except for one. None of the patients worsened after surgery. INTERPRETATION: The patients presenting with low back pain and sciatica responded to surgery better than those with sphincter problems.

Adolescent↗

Intracranial meningeal tumours in childhood: a clinicopathologic study including MIB-1 immunohistochemistry.

Primary tumours of the meninges with a relatively high tendency for malignant behaviour are uncommon in childhood. This study concerns 18 cases of meningeal tumours in children under the age of 16, of which 13 were meningiomas and five were other tumours arising in the meninges. Meningiomas showed a preponderance in females as in adult series, and the majority were supratentorial in localisation. The percentage of meningeal tumours and meningiomas among all brain tumours in our centre were 3.72% and 2.69%, respectively. Four out of 13 meningiomas were fibroblastic, four were transitional, one was meningothelial, two were psammomatous and two were papillary meningiomas. Seven (38.8%) out of 18 tumours showed anaplastic features, including two papillary meningiomas, two hemangiopericytomas, one mesenchymal chondrosarcoma, one pleomorphic sarcoma and one anaplastic meningeal tumour. Papillary meningiomas with hemangiopericytoma-like solid areas were seen frequently in our cases (15.3%). Meningoangiomatosis was associated with two meningeal tumours. MIB1 (Ki-67) labelling indices (LIs) ranged between 0% and 13.6% (mean 1.83%) in benign, and between 1% and 20% (mean 7.2%) in malignant tumour, including papillary meningiomas. Mean MIB-1 LIs were 5.61% and 1.14% in non-recurrent and recurrent cases, respectively. MIB-1 LIs showed significant differences between benign and malignant meningeal tumours but no significant correlation either with prognosis or recurrence. Despite the fact that brain tumours are among the most common neoplasms of childhood, meningeal tumours are rare lesions, accounting for less than 2% of published series of intracranial neoplasms in childhood [5, 8, 18, 24, 30, 32]. It has been suggested that the clinical and pathological characteristics of meningiomas in this age group differ from those of adults [14, 18, 24, 45]. Besides meningiomas, there are a few reports of other meningeal tumours in childhood and difficulties in differential diagnosis may arise within this group, especially in anaplastic tumours [11, 13, 32, 44, 46]. One of the major problems in meningiomas and some tumours arising in the meninges is the discordance that arises between the histologic appearance of the tumour and behaviour [4]. Several studies have attempted to determine the proliferation potential of meningiomas, including immunohistochemical labelling with monoclonal antibodies to Ki-67, proliferating cell nuclear antigen (PCNA), and bromodeoxyuridine (BUdR); flow cytometric DNA analysis; or argyrophilic nucleolar organizer regions (AgNORs) counting [9, 10, 15, 19, 22, 26, 31, 35, 53]. The studies concerning proliferation markers have contradictory results [9, 10, 15, 26, 31, 42, 53]. MIB-1 detects the same or a similar epitope as the original antibody Ki-67 and reacts with a proliferation associated antigen expressed in all active parts of the cell cycle, G1, S, G2 and M (mitosis), but not in the G0 or quiescent phases [7]. In this study we examined the clinicopathological characteristics and MIB1 values of 18 meningeal tumours in children under the age of 16 years within the last 25 years (from 1970 to 1995).

Adolescent↗

Meningioma of the cavernous sinus in a child.

Intracranial meningiomas in children are rare, representing 1-4.2% of central nervous system tumors and 1.5-1.8% of all intracranial meningiomas. Meningiomas arising from the lateral wall of the cavernous sinus account for less than 1% of all intracranial meningiomas. To our knowledge, only one case of a meningioma arising from the cavernous sinus has been reported in childhood. A 6-year-old boy presented with left ophthalmoplegia. A slight drooping of the left eyelid was noted at the age of 1 year. Magnetic resonance imaging (MRI) with contrast administration revealed an enhancing mass lesion located in the left cavernous sinus. The tumor, arising from the lateral wall of the cavernous sinus, was totally removed and the oculomotor nerve was reconstructed with a sural nerve graft. MRI displayed total tumor removal 1 month after the surgery. The pathological diagnosis was of a psammomatous meningioma.

Cavernous Sinus↗