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At least 127 records · Page 7Linked to original sources

The neuroendoscopic factors affecting outcome of endoscopic third ventriculostomy in pediatric patients with post infectious hydrocephalus.

BACKGROUND: The role of endoscopic third ventriculostomy(ETV) in infective hydrocephalus remains uncertain. Infection alters cerebrospinal-fluid composition, flow-dynamics, absorptive capacity, undermining the effectiveness of ETV. AIMS AND OBJECTIVES: This study aims to describe the intraventricular morphological findings and its correlation with ETV outcomes in a cohort of paediatric infective hydrocephalus. METHODOLOGY: Total 98 cases of infective HCP underwent ETV, were studied for intraventricular findings. Thin transparent third ventricular floor were considered as type-1, transluscent as type-2, floor with granuloma as type-3 and unidentifiable anatomy as type-4. Infective deposits were sent for histopathology. RESULT: Overall ETV was successful in 46 patients (46.93%). Success rate of ETV in type 1 (72.7%) was better than type-2 (50%) and type-3 (33.3%). The difference between type-1 and type-3 was statistically significant, p = 0.01. The success rate in presence of pre-pontine adhesions (46 cases) was 34.7%, significantly lower than the 66.6% observed in their absence (p = 0.005). ETV was not successful in all the 7 cases withy type-4 floor. Tissue biopsy confirmed microbiological diagnosis in 13 cases and helped in modifying pharmacological treatment as per culture (two with tuberculosis and three with fungal infection). CONCLUSION: ETV offers a meaningful therapeutic option in post-infectious HCP. Endoscopic appearance of the third ventricular floor and the pre-pontine space may predict its outcome. A thin, transparent floor in the absence of cisternal adhesions is associated with best outcomes, while progressive floor thickening, granuloma formation, and pre pontine fibrosis each correlate with declining success rates. The culture from exudates often helps in achieving organism oriented pharmaco-therapy that improves ETV success rate.

Humans↗

Neuroendoscopic laser-assisted ventriculostomy of the third ventricle.

Hydrocephalus is caused by an imbalance between the production and absorption of cerebrospinal fluid. Ventriculostomy of the third ventricle now is an acceptable treatment alternative for this problem. This procedure reduces costs over the course of the illness because the patient does not require subsequent shunt revisions throughout his or her life. The specialized care and the fear associated with the dependency on mechanical hardware also are eliminated if shunt placement is avoided. Postoperative complications may include increased intracranial pressure, bleeding, infection, and pain.

Child↗

Relationships of virtual reality neuroendoscopic simulations to actual imaging.

Advances in computer technology have permitted virtual reality images of the ventricular system. To determine the relevance of these images we have compared virtual reality simulations of the ventricular system with endoscopic findings in three patients. The virtual fly-through can be simulated after definition of waypoints. Flight objects of interest can be viewed from all sides. Important drawbacks are that filigree structures may be missed and blood vessels cannot be distinguished clearly. However, virtual endoscopy can presently be used as a planning tool or for training and has future potential for neurosurgery.

Adult↗

Neuroendoscopic surgery for intracerebral haemorrhage--comparison with traditional therapies.

Endoscopy is a new therapeutic option for hypertensive intracerebral haemorrhage. Although it has the advantages of being less invasive than craniotomy and more effective than conservative treatment, not all patients are candidates for it. Since it is important to clarify which characteristics of patients are indications for this operation, we retrospectively evaluated the role of endoscopic surgery in comparison with traditional treatments for hypertensive intracerebral haemorrhage. Seven patients were treated with endoscopic surgery in our institution between January 2000 and November 2001. Two had thalamic haemorrhage, 4 putaminal haemorrhage, and 1 intracerebral haemorrhage. The average age of patients was 55 years. Endoscopic operation was mainly selected for haematomas more than 20 ml and less than 40 ml in volume. Generally, endoscopy yielded good outcomes with GR in 50 % of patients. Adequate indications for endoscopic operation may be the following; 1) Putaminal haematoma of small-intermediate size, 2) Haematoma situated deep in the brain, e. g., thalamic haemorrhage, 3) Intraventricular haematoma, 4) High-risk patients who cannot tolerate general anaesthesia.

Adult↗

A neuroendoscopic approach to the aqueduct via the fourth ventricle combined with suboccipital craniectomy.

OBJECTIVES: We have tried to approach the aqueduct less invasively with the endoscope in combination with a small suboccipital craniectomy, especially for lesions of the aqueduct close to the fourth ventricle. METHODS: The patient is placed in the prone position and a small suboccipital craniectomy is performed. After elevating the bilateral tonsils with retractors, the sheath of the endoscope is inserted from a small skin incision made on the posterior midline of the neck, far from the craniectomy site. The skin incision for endoscopic insertion is planned on the linear extension connecting the aqueduct and the foramen of Magendi on the craniocervical MRI. A rigid endoscope is inserted through the fourth ventricle to the aqueduct for exploration and surgical manipulation. RESULTS: Two cases with hydrocephalus due to aqueductal stenosis, with gait disturbance were operated. After exploration of the aqueduct via the fourth ventricle, endoscopic aqueductal plasty was performed. The postoperative courses were uneventful. The patients' symptoms disappeared. CONCLUSIONS: This approach can be applied for less invasive endoscopic exploration and surgery around the aqueduct close to the fourth ventricle with a rigid endoscope, without overflexion of the neck, or a large craniectomy, or overretraction of the tonsils, or incision of the inferior vermis.

Cerebral Aqueduct↗

Use of a nitrogen arm-stabilized endoscopic microdriver in neuroendoscopic surgery.

Stabilization and manipulation of instruments in endoscopic neurosurgery has traditionally been a manual task. Conventional self-retaining retractors have failed to provide reliable fixation for endoscopic procedures. Most surgeons rely on a team approach to endoscopy with one individual controlling the endoscope while the other manipulates instruments within the field of view. This two-surgeon approach is manpower intensive and not an option at many facilities. Recently developed technology provides the independent practitioner with another option. Several nitrogen-powered stabilizing arms have been introduced which decrease or eliminate problems with post-positioning drift. To facilitate fine maneuvering of the endoscope, a new positioning arm is available with an incorporated microdriver capable of sub-millimeter adjustments. We present an illustrative case of the utility of this device in selected endoscopic procedures.

Adolescent↗

Neuroendoscopic management of a solitary pineal region tumor. Case report of an adenocarcinoma metastasis.

The present case describes a two-step endoscopic management of hydrocephalus and diagnosis of a single pineal region metastasis arising from a gastric adenocarcinoma. A 62-year-old man presenting with signs of subacute obstructive hydrocephalus from a pineal region mass had at first been treated with an endoscopic third ventriculostomy. As cerebrospinal fluid tumor markers (alpha-fetoprotein, beta-human chorionic gonadotropin) were negative, an endoscopic biopsy of the pineal region tumor was performed through a more anterior frontal burr hole. Pathology showed an adenocarcinoma and primary tumor work-up revealed an unsuspected gastric tumor, the pathology of which matched with the intracranial metastasis. The present report emphasizes the role of neuroendoscopy in pineal region tumors and reports a rare case of a solitary gastric adenocarcinoma metastasis in this location.

Adenocarcinoma↗

Neuroendoscopic third ventriculostomy in the management of fourth ventricular outlet obstruction.

Acquired fourth ventricular outlet obstruction, an uncommon entity, has been conventionally managed by ventriculoperitoneal shunt placements or excision of the obstructing membranes. The role of endoscopic third ventriculostomy is highlighted in the present communication. Three patients presenting with symptoms of raised intracranial pressure were diagnosed to have fourth ventricular outlet obstruction by neuroimaging studies and underwent endoscopic third ventriculostomy. All the patients had relief of their symptoms in the postoperative period. Neuroimaging studies performed at follow-up revealed decrease in ventricular size in all. Endoscopic third ventriculostomy is a useful alternative in the management of acquired fourth ventricular outlet obstruction.

Adult↗

Experimental use of semiconductor diode laser for neuroendoscopic surgery.

The authors demonstrate an experimental use of the newly developed high power aluminium-gallium-arsenide (AlGaAr) diode laser (DIOMED 25, Olympus Optical Company, Tokyo, Japan). The unit consists of a compact body and fiberoptic probes with small accessories. There are two types (contact and non-contact) of probes. Tissue effects on rat liver, femoral artery, and brain tissue were examined. Adding that, we measured the thermal changes on the liver surface produced by the laser beam with a thermography system. For coagulation with the contact probe, 5 or 7 W was adequate but 10 W was too excess because of tissue adhesion. For cutting, low absorption of the laser in less vascularized tissue like brain white matter provided a deeper tissue damage compared with more vascularized tissue. The temperature at the center reached over 100 degrees C during 10 seconds after laser treatment with the cutting probe. These findings suggest that this system proved to be a good candidate for endoscopic hemostasis and cutting with meticulous maneuver.

Animals↗

Temperature distribution produced by laser irradiation in a ventricle model. The use of airflow in neuroendoscopic surgery.

The changes in intraventricular temperature during potassium titanyl phosphate laser irradiation were investigated using a ventricle configuration model. The laser had an output of 3 to 20 watts in 1 second pulse mode. The model ventricular cavity was filled with still air or saline, or irrigated with air or saline. The laser irradiation in a continuous mode with the output of 15 or 20 watts was also examined under air flow or saline irrigation. In pulse-mode irradiation, the temperature increase was less than 5.0 degrees C under all conditions with the outputs up to 10 watts. With 20 watts pulse irradiation, the temperature increase was within 7 degrees C with air flow, and over 20 degrees C in still air. The later condition occasionally induced a plume of steam resulting in excessive temperature elevation at a remote point. With the continuous irradiation of 15 or 20 watt, the temperature increased by about 4.0 degrees C even under saline irrigation, which required over 30 sec to return to the pre-irradiation level. These results indicate the possible use of pulse mode laser irradiation and air flow endoscopic surgery within the ventricular system. With continuous mode laser irradiation, however, the importance of saline irrigation and proper cooling interval is suggested.

Air Movements↗

Value of constructive interference in steady-state three-dimensional, Fourier transformation magnetic resonance imaging for the neuroendoscopic treatment of hydrocephalus and intracranial cysts.

OBJECTIVE: To assess the value of constructive interference in steady-state, three-dimensional, Fourier transformation (CISS) magnetic resonance imaging in the endoscopic management of hydrocephalus and intracranial cysts. METHODS: CISS imaging and T2-weighted imaging were performed for 14 consecutive patients before and after fenestration procedures, using a flexible endoscope, to treat loculated or multiloculated hydrocephalus (4 patients), aqueductal stenosis or obstruction (4 patients), arachnoid cysts (4 patients), a cyst of the velum interpositum (1 patient), or an ependymal cyst (1 patient). Fifteen fenestration procedures were performed, including one reoperation. RESULTS: Preoperative CISS imaging demonstrated intracystic intraventricular septa not observed with conventional T2-weighted imaging for 11 of 15 procedures and provided better brain tissue/cerebrospinal fluid contrast, allowing better understanding of the cause of hydrocephalus and the nature of the cysts. CISS imaging and T2-weighted imaging were equally useful for monitoring postoperative changes in the sizes of ventricles or cysts and the presence of flow voids after third ventriculostomies. However, only CISS imaging clearly demonstrated the site of fenestration for six of the nine patients who underwent fenestration procedures. CONCLUSION: CISS imaging provides excellent cerebrospinal fluid/brain tissue contrast, allowing detailed study of the anatomic features of the ventricular system and cystic lesions. CISS imaging is valuable for both preoperative decision-making and postoperative evaluation.

Brain Diseases↗

Neuroendoscopic procedures: anesthetic considerations for a growing trend: a review.

The recent trend in neurosurgery is shifting toward further reduction in invasiveness to minimize trauma to the brain. Endoscopy holds the promise of shortened hospital stay with improved postoperative outcome. An important minimally invasive technique is neuroendoscopy. The ventricular system and subarachnoid space of the brain provide suitable conditions for the use of an endoscope. The currently available literature focuses only on recent advances in neuroendoscopy from the surgical perspective. To date, there is paucity of anesthetic literature emphasizing the implications for this growing trend. The surgical technique, instrumentation, anesthetic requirements, potential pitfalls and complications of this technique must be completely understood to ensure a successful outcome. The purpose of this review is to provide knowledge of indications, instrumentation, and anesthetic considerations in anticipation of complications steming from this procedure.

Anesthesia↗