Yonsei University · Medicine
Professor Hun Ho Park's research lab specializes in skull base surgery and neurosurgical endoscopy, with a focus on minimally invasive approaches for complex intracranial and spinal pathologies. The lab investigates innovative surgical techniques such as endoscopic transorbital approach (ETOA) for trigeminal schwannomas and paraclinoid meningiomas, emphasizing brain-sparing trajectories and improved visual outcomes. It also explores long-term tumor behavior after incomplete resection of vestibular schwannomas and develops reliable methods for managing cerebrospinal fluid leaks. Additionally, the lab contributes to spinal stabilization technologies, particularly dynamic systems that preserve motion and reduce adjacent segment degeneration.
Figures are computed from collected data and may differ slightly.
ETOA provides adequate access and resectability for trigeminal schwannomas limited in the middle fossa or dumbbell-shaped tumors located in the middle and posterior fossae, as does EEA for extracranial tumors. Tumors predominantly involving the posterior fossa still remain a challenge in endoscopic surgery.
RNFL thickness measured by optical coherence tomography has significant value as a prognostic factor of postoperative visual recovery for parachiasmal meningioma. Patients with normal RNFL thickness before surgery are more likely to have visual improvement after surgery than patients with a thin RNFL.
ETOA provides a logical line of access for intra-axial lesions in MTL. The safe and natural surgical trajectory of ETOA can spare brain retraction, neurovascular injury, and disruption of the lateral neocortex.
Our 2 different repair techniques for arachnoid recess tears are very reliable methods for managing this type of CSF leakage. The direct suture technique may be more appropriate for type 1 CSF leakage with a wider gap and more prominent CSF leakage.
The management of vestibular schwannoma (VS) with residual tumor following incomplete resection remains controversial and little is known regarding postoperative tumor volume changes. The behavior of residual tumors was analyzed for 111 patients who underwent surgery for newly diagnosed VS between September 2006 and July 2017. The postoperative tumor volume changes were assessed during a mean follow-up of 69 months (range 36-147 months). Fifty-three patients underwent imaging surveillance follow
Bioflex posterior dynamic stabilization system supports operation-induced unstable, destroyed segments and assists in physiological motion and stabilization at the instrumented level, decrease back and leg pain, maintain preoperative lumbar lordotic angle and reduce ROM of whole lumbar and instrumented segments. Prevention of adjacent segment degeneration and complication rates are something to be reconsidered through longer follow up period.
Resident cancer cells with stem cell-like features induce drug tolerance, facilitating survival of glioblastoma (GBM). We previously showed that strategies targeting tumor bioenergetics present a novel emerging avenue for treatment of GBM. The objective of this study was to enhance the therapeutic effects of dual inhibition of tumor bioenergetics by combination of gossypol, an aldehyde dehydrogenase inhibitor, and phenformin, a biguanide compound that depletes oxidative phosphorylation, with the
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