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Neuronavigational neuroendoscopic surgery. Frameless free-hand maneuvering of a handy rigid-rod neuroendoscope on visualized three-dimensional computerized image guidance: trajectory to the prepontine cistern in cadaver study.

BACKGROUND: Considering the separate benefits of neuronavigation and neuroendoscopy, neuroendoscopic surgery with the aid of neuronavigation systems will play an increasingly important role in the future. Bearing this in mind, the present research project was conducted to facilitate neuronavigational neuroendoscopic surgery along the pathway to the prepontine cistern using cadaver heads. MATERIALS AND METHODS: A computer-aided, frameless image-guided stereotactic navigation system and a new type of handy rigid-rod neuroendoscope were used. The ideal entry point and the safest trajectory to the prepontine cistern through the foramen of Monro were defined in two formalin-fixed cadaver heads and clinical brain MRI data. Then, maneuvering of the neuroendoscope with the aid of the neuronavigation system was performed. RESULTS: Straight trajectories from the entry point to the prepontine cistern could be designed. For the registration accuracy of the tip of the neuroendoscope, the virtual image registered a mean error distance of 5.42 mm away from the reference point along the axis of vertical line. However, free-hand maneuvering enabled the neuroendoscope to be finely manipulated without damaging brain tissues. Neuroendoscopic anatomical views of the interpeduncular and prepontine cistern were also acquired. CONCLUSION: Interactive use of free-hand maneuvering of the handy rigid-rod neuroendoscope together with frameless neuronavigation systems plot the way to true neuronavigational neuroendoscopic surgery in a safe and reliable manner. This pairing of the most recent technological neurosurgical options with better understanding of neuroendoscopic anatomy enables the neurosurgeon to acquire broader treatment options for central nervous system diseases.

Adult↗

Neuroendoscopic anatomy and surgery in pineal region tumors: role of neuroendoscopic procedure in the 'minimally-invasive preferential' management.

The therapeutic modalities for pineal region tumors in Western countries differ from those in far-eastern countries, that is, Japan and Korea, mainly because of the different patient populations. The majority of pineal region tumors in Japan and Korea are radio sensitive and/or chemosensitive, and adjuvant therapy rather than extensive surgery plays the main part in the treatment of these tumors. The authors have applied minimally-invasive preferential management in pineal region tumors in last 8 years. For the therapeutic regimen, if the tumor markers alpha-fetoprotein (AFP) and human chorionic gonadotropin (HCG) were not detected in serum and there was significant ventricular dilation visualized on neuroimages, neuroendoscopic surgery was first applied for tumor debulking with tissue diagnosis and gross morphological analysis of the tumor and the intraventricular structures, followed by third-ventriculostomy. In the results, our minimally-invasive preferential regimen clarified the precise indication for neuroendoscopic procedures, and the majority of our patients with dilated ventricles and no evidence of tumor markers were treated satisfactorily with effective neuroendoscopic procedures as the initial procedure. Then avoided unnecessary craniotomy and radiotherapy and promised excellent therapeutic outcomes. Neuroendoscopic procedures have a great advantage in the management of chemo- or radiosensitive tumors, such as germinoma, pineoblastoma, or primitive neuroectodermal tumor. The neuroendoscopic anatomy including the lateral and third ventricles with a pineal region tumor with or without tumor dissemination was described in detail, together with the neuroendoscopic surgical technique.

Brain Neoplasms↗

Long-term complications and definition of failure of neuroendoscopic procedures.

OBJECTS: A lot has been published about neuroendoscopic procedures over the last decade. Most of these publications are about the effectiveness of endoscopic third ventriculostomy, the most frequently performed neuroendoscopic procedure. Little is published about the effectiveness of other, less frequently performed neuroendoscopic procedures. Over the years more reports about the complications of endoscopic procedures are published, but again most of these publications are about endoscopic third ventriculostomy and only a little is presented about the complications of all other neuroendoscopic procedures. Furthermore, most reports are about intraoperative and immediate postoperative complications; only a few reports evaluated the long-term complications of neuroendoscopic procedures. There are also a few publications that analyse the failures of neuroendoscopic procedures but a good definition of failure is not given. The reports mention, again, mainly endoscopic third ventriculostomy procedures, and are mostly directed at the short-term failure rates, defined as the need for a shunt to be placed. Less attention is paid to the effects of the endoscopic procedures in the longer term. Looking at longer terms emphasises the need for a better definition of failure. METHODS: To get more insight into the long-term complications and failures of neuroendoscopic procedures, we reviewed the literature and evaluated our own series of 485 different cranial endoscopic procedures. With the information gathered we tried to answer the questions mentioned above. CONCLUSIONS: Most of the complications of neuroendoscopic procedures are transient, either spontaneously or by medical intervention. Only a few permanent complications are known, in our series 1.6%, and most of them are not typically related to the endoscopic procedure itself but are due to the ventricular approach necessary for and the management of the endoscopy. Mortality rates are less than 1%. A uniform definition of failure cannot be given for all neuroendoscopic procedures, because the procedures are too heterogeneous and the indications are widespread. Failures are mainly diagnosed within a few months of the procedure but neurosurgeons must be aware of failure in the longer term, because if not diagnosed they can give rise to increased morbidity and probably mortality.

Brain Diseases↗

Influence of neuroendoscopic third ventriculostomy on the size of ventricles in chronic hydrocephalus.

Our intention was to compare the clinical outcome after surgical treatment of chronic hydrocephalus between patients who were subjected to neuroendoscopic third ventriculostomy and patients who underwent shunt implantation. At the Department of Neurosurgery of the Research Institute of Polish Mothers' Memorial Hospital from 1999 to 2001, 29 children, of an average age of 7 years (+/-7.1 years SD), underwent successful neuroendoscopic procedures, and from 1992 to 1994, 59 children, of an average age of 2 months (+/-1.9 months SD), underwent shunt implantation. The size of the ventricular system was described by the Frontal Horn Index and its change after operative procedures by the ratio of the final to the primary Frontal Horn Index. Head circumference was measured in percentiles according to the Kurniewicz-Witczakowa chart for Polish children. The reduction in head circumference after a neuroendoscopic procedure was, on average, significantly less than after a shunt implantation (0.39 percentiles +/-29.6 SD vs 17.93 percentiles +/-19.93 SD). Concerning the change in ventricular size after a neuroendoscopic procedure, it was noticed that the average ratio of the final to the primary Frontal Horn Index was 0.9. Meanwhile, the same parameter after a shunt implantation was 0.55. Based on the values of the Frontal Horn Indexes, it was observed that the ventricular system in infants after neuroendoscopic procedures was significantly larger than in other age groups (0.7 vs 0.5). After successful neuroendoscopic operations in a group of children suffering from Chiari II malformation, ventricular systems were slightly enlarged. The ratio of the final Frontal Index to the primary Frontal Horn Index was 1.31. In children suffering from chronic hydrocephalus, the average reduction in the size of the ventricular system and the rate of head circumference growth are lower after neuroendoscopic operations than after shunt implantations. Successful neuroendoscopic procedures are characterized by, on average, a higher rate of head circumference growth in infants than in neonates. In addition, the rate of head circumference growth after successful neuroendoscopic procedures could be higher than before the operation, which is clearly visible in children suffering from Chiari II malformation, but it does not mean a constant increase of that parameter during the postoperative period.

Adolescent↗

Experimental application of pulsed Ho:YAG laser-induced liquid jet as a novel rigid neuroendoscopic dissection device.

BACKGROUND AND OBJECTIVES: Although water jet technology has been considered as a feasible neuroendoscopic dissection methodology because of its ability to perform selective tissue dissection without thermal damage, problems associated with continuous use of water and the ensuing fountain-effect-with catapulting of the tissue-could make water jets unsuitable for endoscopic use, in terms of safety and ease of handling. Therefore, the authors experimented with minimization of water usage during the application of a pulsed holmium:yttrium-aluminum-garnet (Ho:YAG) laser-induced liquid jet (LILJ), while assuring the dissection quality and the controllability of a conventional water jet dissection device. We have developed the LILJ generator for use as a rigid neuroendoscope, discerned its mechanical behavior, and evaluated its dissection ability using the cadaveric rabbit ventricular wall. STUDY DESIGN/MATERIALS AND METHODS: The LILJ generator is incorporated into the tip of a stainless steel tube (length: 22 cm; internal diameter: 1.0 mm; external diameter: 1.4 mm), so that the device can be inserted into a commercial, rigid neuroendoscope. Briefly, the LILJ is generated by irradiating an internally supplied water column within the stainless steel tube using the pulsed Ho:YAG laser (wave length: 2.1 microm, pulse duration time: 350 microseconds) and is then ejected through the metal nozzle (internal diameter: 100 microm). The Ho:YAG laser pulse energy is conveyed through optical quartz fiber (core diameter: 400 microm), while cold water (5 degrees C) is internally supplied at a rate of 40 ml/hour. The relationship between laser energy (range: 40-433 mJ/pulse), standoff distance (defined as the distance between the tip of the optical fiber and the nozzle end; range: 10-30 mm), and the velocity, shape, pressure, and average volume of the ejected jet were analyzed by means of high-speed camera, PVDF needle hydrophone, and digital scale. The quality of the dissection plane, the preservation of blood vessels, and the penetration depth were evaluated using five fresh cadaveric rabbit ventricular walls, under neuroendoscopic vision. RESULTS: Jet velocity (7.0-19.6 m/second) and pressure (0.07-0.28 MPa) could be controlled by varying the laser energy, which determined the penetration depth in the cadaveric rabbit ventricular wall (0.07-1.30 mm/shot). The latter could be cut into desirable shapes-without thermal effects-under clear neuroendoscopic vision. The average volume of a single ejected jet could be confined to 0.42-1.52 microl/shot, and there was no accompanying generation of shock waves. Histological specimens revealed a sharp dissection plane and demonstrated that blood vessels of diameter over 100 microm could be preserved, without thermal damage. CONCLUSIONS: The present pulsed LILJ system holds promise as a safe and reliable dissection device for deployment in a rigid neuroendoscope.

Animals↗

Efficacy of neuroendoscopic procedures in minimally invasive preferential management of pineal region tumors: a prospective study.

OBJECT: This prospective study is based on a consecutive series of 20 patients with pineal region tumors who underwent minimally invasive preferential management. The purpose of this report is to discuss the role of neuroendoscopic procedures in the management of pineal region tumors. METHODS: If the tumor markers alpha-fetoprotein and human chorionic gonadotropin were not detected in serum and there was significant ventricular dilation visualized on neuroimages, neuroendoscopic surgery was first applied for tumor debulking with tissue diagnosis and gross morphological analysis of the tumor and the intraventricular structures, followed by third ventriculostomy. Subsequent procedures were determined on the basis of verified individual tumors. For treatment of germinomas and pineoblastomas, if no tumor dissemination was confirmed by pre-, intra-, or postoperative findings, stereotactic radiotherapy or radiosurgery was performed after one course of chemotherapy with the ICE regimen (isofomid, cisplatin, and etoposide) and followed by two additional courses of chemotherapy. For treatment of malignant germ cell tumors, after extensive surgery, adjuvant chemotherapy with the ICE regimen was performed in three courses in all cases. Then radiotherapy was started using various methods, depending on the evidence of tumor dissemination. For treatment of teratomatous and neuroectodermal tumors other than pineoblastomas, extensive surgical removal was performed. As for adjuvant therapy, if the tumor was a low-grade glioma or if the patient was younger than 5 years of age, postoperative treatment did not include radiotherapy. If the tumor was a malignant teratoma or high-grade glioma, conventional focal radiotherapy was performed, followed by chemotherapy with ICE for 1 year. All but two treated patients had ventriculomegaly. Neuroendoscopic procedures were performed in six of 15 treated patients. Neuroendoscopic biopsy with tumor debulking offered enough material for tissue diagnosis, including immunohistochemical analysis and, in one case, revealed evidence of tumor dissemination undetectable on neuroimaging. With one exception, no shunt was required in any patient undergoing endoscopic third ventriculostomy. Stereotactic radiotherapy was performed in indicated cases. Favorable therapeutic outcomes were obtained in all cases of germinoma and pineoblastoma, with follow-up periods ranging from 24 months to 6.5 years. CONCLUSIONS: Our minimally invasive preferential regimen clarified the precise indication for neuroendoscopic procedures, and the majority of our patients with dilated ventricles and no evidence of tumor markers were treated satisfactorily with effective neuroendoscopic procedures as the initial procedure, avoiding unnecessary craniotomy and radiotherapy and promising excellent therapeutic outcomes. The treatment for malignant pineal region tumors remains a subject for further study.

Adolescent↗

[Clinical application and future prospect of neuroendoscopic surgery].

The clinical application and future prospect of neuroendoscopic surgery are described. In the historical trend, it is emphasized that the neuroendoscopic surgery has become one of the major or leading procedures in "minimally-invasive approaches" to the intracranial lesions. The presently-available instrument include procedures using an endoscope of three different types: rigid-rod, steerable/flexible-fiber-rod and semi-rigid-rod. To use a rigid-rod or fiber-rod scope, it is available to apply forceps, laser, a microballoon and other fine instruments. The indication for neuroendoscopic surgery has been expanded to almost all neurosurgical procedures, as "endoscope-assisted" procedures are applied more to micro neurosurgical procedures (endoscope-assisted microsurgery). The realistic indication for "pure neuroendoscopic surgery" includes reconstruction of cerebrospinal fluid (CSF) pathway such as third ventriculostomy, septostomy, foramen reconstruction, fenestration of septation; removal or biopsy of tumor/cystic lesion, mainly in the intraventricular regions; and removal of hematoma involving the cerebral parenchyma (intracerebral hematoma), ventricles/(intraventricular hematoma) or subdural space (subdural hematoma). The intraparenchymal or deep-seated intracisternal lesions can be the realistic indication for "pure neuroendoscopic surgery" when the instrument are further developed in future. Neuroendoscopic surgery will play a promising and major role in the "minimally-invasive neurological procedure" in the 21st century.

Brain↗

Frameless free-hand maneuvering of a small-diameter rigid-rod neuroendoscope with a working channel used during high-resolution imaging. Technical note.

A newly designed small-diameter rigid-rod neuroendoscope was created to evaluate the applicability of free-hand maneuvering during high-resolution imaging. The neuroendoscope was designed as a light, handheld tool weighing 550 g. A 20-cm-long objective lens, 2 mm in diameter, is placed in the lower two thirds of the single-space lumen of an oval-shaped outer sheath, 16.5 mm long and 3.5 x 2.5 mm at maximum diameter. Included are microinstruments of 1.3-mm diameter for various neuroendoscopic procedures, including microscissors, biopsy forceps, grasping forceps, monopolar coagulator/cutting rod, and bipolar coagulator that can be introduced through the upper one third of the lumen. Because the endoscope is held steady in the surgeon's left hand, with the handle gripped at the base, quick back-and-forth movements can be made along the long axis, via a peel-away sheath inserted to the ventricle, shifting of the endoscope tip to the side of the objective target will be minimal. Given the instrument's unified configuration, the surgeon will never lose orientation during maneuvering. Using the farthest right of three inlet/outlet orifices, the short and handy semiflexible microinstruments can be guided and controlled by the surgeon's right hand. After experience in 66 cases in which various neuroendoscopic procedures yielded excellent operative outcomes (morbidity rate in complications related to the endoscopic procedure 0%; mortality rate 0%), the endoscope prototype was finalized in the ideal form for frameless maneuvering that uses a rigid-rod endoscope. The "gun-butt" holder for use with the operator's left hand provides stability and allows the endoscope to be handled with improved control. These new aspects of the neuroendoscope and surgical technique offer substantial improvement over the flexible-steerable fiberoptic endoscopes.

Equipment Design↗

Neuroendoscopic techniques in the treatment of arachnoid cysts in children and comparison with other operative methods.

OBJECTIVE: The authors intended to evaluate the application of neuroendoscopic techniques for the treatment of arachnoid cysts in children and compare it with other operative methods. METHODS: The analysis covered the results of treatment of 44 children with arachnoid cysts who were subjected to neuroendoscopic procedures and 62 patients who underwent other operations. RESULTS: The neuroendoscopic treatment of arachnoid cysts was very effective because of low rate of reoperative treatment (six out of 44 patients), no need to change the operative method (40 effective out of total 44 operative procedures), and low rate of persistent worsening (none of 44 patients worsened). CONCLUSIONS: Summing up all the mentioned aspects of neuroendoscopic techniques, the neuroendoscopic techniques were the most suitable operative procedures in the treatment of arachnoid cysts in the presented group of patients, providing that the connection between the lumen of the arachnoid cyst and the cerebrospinal fluid cisterns was of good quality.

Adolescent↗

The effectiveness of neuroendoscopic interventions in children with brain tumours.

OBJECT: The purpose of this study was to review the efficacy of neuroendoscopic interventions in children with brain tumours and tumour-related hydrocephalus. METHODS: In all, 61 consecutive neuroendoscopic operations carried out in 53 children with brain tumours over a 6-year period were reviewed. The patients ranged in age from 5 months to 18 years (median 9 years). Forty of 61 presentations were with a newly diagnosed tumour and hydrocephalus - the remainder predominantly had a known tumour and worsening hydrocephalus. CONCLUSIONS: Neuroendoscopic third ventriculostomy (NTV) successfully relieved hydrocephalus in the short term in 45 of 47 cases and in the longer term in 39 of 47 cases. Neuroendoscopic biopsy provided definitive tissue diagnosis in 10 of 16 cases and 5 tumours were resected. There was 1 postoperative death, which not directly related to the neuroendoscopy and few significant complications otherwise. Neuroendoscopic methods allow effective immediate and longer term control of hydrocephalus as well as the opportunity for CSF sampling and tumour biopsy in selected cases.

Adolescent↗

Neuroendoscopic anatomy and surgery of the cerebellopontine angle.

To probe the feasibility and utility of neuroendoscopic inspection of the anatomy of the cerebellopontine angle (CPA) and of neuroendoscopic assisted microneurosurgery (NEAMN) for CPA lesions via a retrosigmoid approach, we used retrosigmoid NEAMN in 28 patients with CPA lesions. Prior to this, we undertook anatomical observation of bilateral CPA in two adult cadaver heads using the neuroendoscope. NEAMN tumour resection was performed in eight acoustic neuromas, one meningioma and 14 cholesteatomas and NEAMN vascular decompression was performed in five patients with trigeminal neuralgia. Both the neurovascular structures of the CPA and the ventral surface of the pons, as well as the clivus, can be inspected using the neuroendoscope through a retrosigmoid approach with a 2-3 cm diameter bony opening. Complete excision of the tumour with preservation of the facial nerve was achieved in all eight acoustic neuromas. Likewise, total resection of the tumour was possible in the 14 cholesteatomas and one meningioma. Paroxysmal facial pain resolved after NEAMN vascular decompression in the five patients with trigeminal neuralgia. There were no postoperative complications or deaths in this series. The CPA can be divided into three levels - the cranial, medial, and caudal, and each level contains specific neurovascular structures as seen through the neuroendoscope. Knowledge of these divisions is useful to master the common NEAMN procedures of the CPA. NEAMN for CPA lesions via a retrosigmoid approach is a useful adjunct to standard microneurosurgical techniques effect and may decrease the operative risk.

Adult↗

Treatments of hamartoma with neuroendoscopic surgery and stereotactic radiosurgery: a case report.

Hypothalamic hamartoma is a non-neoplastic tumor manifesting as gelastic seizure, precocious puberty, and abnormal behavior. Treatment of it is very complicated due to its location. We report a case of hypothalamic hamartoma treated by neuroendoscopic surgery and stereotactic radiosurgery. A 5-year-old girl presented with violent behavior, precocious puberty, gelastic seizure and atonic seizure. She was diagnosed with hypothalamic hamartoma by CT and magnetic resonance imaging at 11 months of age. Tumor size did not change, but tumor intensity had changed on the MR image at 5 years of age. Magnetic resonance spectroscopy revealed decreased N-acetylaspartate and increased choline and creatine in the tumor. After neuroendoscopic biopsy, she underwent linear accelerator stereotactic radiosurgery. But her symptoms remained unchanged for 6 months. She then underwent partial resection and laser coagulation of the tumor by a neuroendoscopic approach. After the procedure, the frequency of her seizures was remarkably decreased, and her violent behavior improved. The transventricular neuroendoscopic approach to the hypothalamus is less invasive than the radical surgery. Neuroendoscopic surgery can be one of the treatments of choice for hypothalamic hamartoma.

Brain Diseases↗

Indications for neuroendoscopic aqueductoplasty without stenting for obstructive hydrocephalus due to aqueductal stenosis.

OBJECTIVE: Neuroendoscopic aqueductoplasty (EAP) is a curative and radical procedure for obstructive hydrocephalus due to aqueductal stenosis that re-establishes the physiological circulation of cerebrospinal fluid (CSF). We assessed the indications for safe neuroendoscopic aqueductoplasty without stenting to treat aqueductal stenosis. METHODS: In the past 5 years, 6 (5.5 %) of the 110 patients with obstructive hydrocephalus due to aqueductal stenosis were judged to be suitable for EAP on the basis of the MRI features of the aqueduct and intraoperative neuroendoscopic findings from the third ventricle for the aqueductal stenosis. The remaining 104 patients were treated by neuroendoscopic third ventriculostomy. Indications for safe EAP were determined retrospectively based on the clinical features, preoperative MRI, intraoperative neuroendoscopic findings and outcome of the 6 patients who underwent EAP. RESULTS: There were no deaths due to EAP. All of the patients showed improvement or resolution of their preoperative symptoms. In 5 patients, dilatation of the third ventricle and lateral ventricles diminished, and prestenotic dilatation of the aqueduct also disappeared. After an average follow-up period of 39.5 months, recurrence of aqueductal stenosis has not been observed. In one patient, there was a complication of oculomotor nerve paresis after EAP. CONCLUSIONS: EAP can be considered the best surgical procedure for restoring physiological circulation of CSF in patients with obstructive hydrocephalus caused by aqueductal stenosis. However, EAP candidates must be selected very carefully using the following indications: 1) obstructive triventricular hydrocephalus with increased intracranial pressure, 2) translucent membranous stenosis or aqueduct obstruction, and 3) prestenotic dilatation of the aqueduct.

Adolescent↗

Concurrent three dimensional neuroendoscopy: initial descriptions of application to clinical practice.

Applications of endoscopic technique neurosurgery are becoming increasingly popular as greater evidence of the safety and efficacy of these techniques is reported. Nevertheless, significant technical limitations need to be solved before neuroendoscopy can achieve widespread popularity. One limitation is the surgeon's difficulties in becoming anatomically oriented in a two-dimensional (2-D) environment. The lack of appropriate visual cues to orient oneself in three-dimensional (3-D) space makes relatively simple anatomical regions difficult to navigate. The authors describe an endoscopy system that allows for stereoscopic visualization during minimally invasive procedures and that acts as an adjunct to conventional open craniotomies. Four cases are described in which stereoendoscopy was used as either a primary means of visualization or as an adjunct to the operating microscope in conventional open neurosurgical procedures. The authors believe that stereoendoscopic vision is a significant advance in endoscope technology and will play a large role in the popularization of minimally invasive techniques in neurosurgery.

Journal Article↗

Neuroendoscopic approach to tectal tumors: a consecutive series.

OBJECT: The authors report a consecutive series of 10 patients who presented with signs and symptoms caused by tectal tumors. Clinical findings, radiographic features, neuroendoscopic management strategies, and histological findings are reported and discussed. METHODS: Since January 1990, 11 neuroendoscopic procedures were performed in 10 patients who harbored tectal tumors. The patients were followed for an average of 5 years (range 2 months-11 years), and a retrospective study was conducted in which case notes, radiological findings, operative notes, and histopathological findings were assessed. Magnetic resonance (MR) imaging was performed, and the images were used to classify patients into three groups: those with hypertrophy of the tectum in whom isointensity appeared on T1-weighted images (Group 1); those with a tectal tumor occupying the cerebral aqueduct in whom decreased signal intensity appeared on T1-weighted images, as well as no enhancement after gadolinium administration (Group 2); and those with a tectal tumor in whom mixed signal intensity and conspicuous evidence of contrast enhancement appeared on T1-weighted images (Group 3). The results of histological examination were consistent with MR imaging features: in Group 1, glial tissue or gliosis; in Group 2, benign astrocytoma; and in Group 3, malignant astrocytoma. Cerebrospinal fluid diversion was the only surgical treatment that provided relief from obstructive hydrocephalus. One patient in Group 3 underwent radiotherapy and subsequent partial tumor removal under neuroendoscopic guidance. Thereafter, the tumor remained in decline. All patients had normal intellectual status after undergoing surgery in which a neuroendoscope was used. CONCLUSIONS: Neuroendoscopic procedures can provide histological diagnosis, define the tumor-midbrain interrelationship, and be highly effective in treating obstructive hydrocephalus and in removing tectal tumors. This procedure may receive clinical application as a new management strategy for tectal glioma.

Adolescent↗

Neuroendoscopic placement of Ommaya reservoir into a cystic craniopharyngioma.

INTRODUCTION: Total removal of the tumor is the most acceptable therapeutic modality in the management of craniopharyngioma; however, there are innumerable factors that can upset treatment plans. Unresectable lesions are often treated with gamma knife surgery (GKS). Reduction of the cystic volume is necessary, to decrease the area to be treated with GKS. An Ommaya reservoir system is usually placed during open surgery or by stereotactic access. MATERIALS AND METHODS: The authors use a neuroendoscope for safer and less invasive placement of the Ommaya reservoir into deep-seated cystic lesions. The cystic component is aspirated, and the Ommaya reservoir tube is precisely guided and placed into the cyst cavity under neuroendoscopic control with a newly developed two-burr-hole technique. This neuroendoscopic procedure could make it easier to reduce cystic volume prior to GKS as the final procedure. This technique may also be used for instillation of chemotherapeutic agents and for repeat aspirations, making the achievement of cystic control more likely. This type of neuroendoscopic management is a safe and effective procedure and could be considered as an alternative management technique for some stubborn cystic craniopharyngiomas.

Catheterization↗

Effectiveness of neuroendoscopic procedures in the treatment of complex compartmentalized hydrocephalus in children.

OBJECTIVE: The main object of the work is to assess the suitability of neuroendoscopic techniques for the treatment of complex compartmentalized hydrocephalus. METHODS: For this purpose the authors compared two groups of children treated in the Research Institute of the Polish Mother's Memorial Hospital from March 1997 to January 2002. The first group of 47 children, treated using neuroendoscopic procedures, was compared with the second, which comprised 80 children treated conventionally by complicated shunt implantations. RESULTS: The children treated neuroendoscopically needed on average 1.7660 procedures during the entire therapy, and 1.0232 operations a year. The same parameters in the conventionally-treated group were as follows: the total number of procedures was 7.050, and the rate of reoperation was 3.949 procedures a year. The proportion of patients who suffered from complications connected with operative treatment and who had a bad outcome was higher in the conventionally-treated group than in the neuroendoscopic one.

Adolescent↗

Operative indications and neuroendoscopic management of symptomatic cysts of the septum pellucidum.

OBJECTIVE: Since there is no current consensus on the diagnostic standards or surgical indications for symptomatic cysts of the septum pellucidum (CSP), we presented our experience treating such cases with neuroendoscopic surgery in order to possibly make a contribution to the attainment of such a consensus. METHODS: In the last 5 years, we effectively treated 5 patients (4 males and 1 female) with CSP by neuroendoscopic surgery. The 3 congenital cases were young: 9, 14, and 29 years old. The 2 secondary cases were adults aged 51 and 65 years old. We were able to fenestrate, and biopsy for pathological analysis, the cyst walls of symptomatic CSP using a minimally invasive neuroendoscopic technique, with postoperative improvement in compression of adjacent structures, as well as clinical signs. CONCLUSIONS: It is necessary to consider the overall picture including clinical signs, progress of the condition, intracranial pressure, and cerebral circulation, in deciding whether surgery is indicated. Neuroendoscopic surgery is an effective, optimal, and convenient therapeutic modality for symptomatic CSP.

Adolescent↗