Neurosurgery
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The application of minimally invasive spine surgery (MISS) in degenerative spine disease and deformity has seen rapid growth in the past 20 years. Building on this experience, such methods have been adopted into spine oncology in the past decade, particularly for metastatic disease. The impetus for this growth stems from the benefits of surgical decompression combined with radiation treatment in patients with metastatic disease in conjunction with the need for less morbid interventions in a patient population with limited life expectancy. ⋯ The implementation of navigation and robotic capabilities has transformed MISS by streamlining surgery and further reducing the surgical footprint while laser ablation, endoscopy, and robotic surgery hold the potential to minimize the surgical footprint even further. MISS for intradural tumors is commonly performed, while the role for other primary tumors has yet to be defined. In this article, we describe the evolution of and indications for MISS in spine oncology through a retrospective literature review.
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The transforaminal lumbar interbody fusion remains one of the most common surgical techniques used for spinal arthrodesis. Spine surgery over the last three decades has increasingly emphasized approaches that reduce tissue trauma, iatrogenic injury, and perioperative morbidity. ⋯ In this paper, the authors review the techniques and considerations underlying visualization within both methods, as well as provide summary of a hybrid system incorporating the advantages of both. Minimally invasive transforaminal lumbar interbody fusion modalities must be selected in accordance with patient factors to achieve optimal outcomes.
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Robotic-assisted spine surgery has significantly advanced surgical precision and safety. This is particularly pertinent in minimally invasive spine surgeries that rely on imaging and technologies for visualization and the ability to accomplish surgical goals through smaller surgical corridors. The ability to preoperatively plan and then place pedicle screws across a wide range of applications has reduced the difficulty of even complex surgeries that once may have been considered prohibitive for minimally invasive approaches. While challenges and limitations remain, ongoing research and development aim to address these to continually expand the benefits of robotic-assisted spine surgery.
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Hydrocephalus after Gamma Knife® stereotactic radiosurgery (SRS) for vestibular schwannomas is a rare but manageable occurrence. Most series report post-SRS communicating hydrocephalus in about 1% of patients, thought to be related to a release of proteinaceous substances into the cerebrospinal fluid. While larger tumor size and older patient age have been associated with post-SRS hydrocephalus, the influence of baseline ventricular anatomy on hydrocephalus risk remains poorly defined. ⋯ Patients with vestibular schwannoma with higher baseline EI, larger tumor volumes, and fourth ventricle deformation are at increased odds of developing post-SRS hydrocephalus. These patients should be counseled regarding risk of hydrocephalus and carefully monitored after SRS.