Publications

Found 370 results
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Journal Article
Wang JC, Buser Z, Fish DE, Lord EL, Roe AK, Chatterjee D, Gee EL, Mayer EN, Yanez MY, McBride OJ et al..  2017.  Intraoperative Death During Cervical Spinal Surgery: A Retrospective Multicenter Study.. Global Spine J. 7(1 Suppl):127S-131S.
Golub D, Hyde J, Dogra S, Nicholson J, Kirkwood KA, Gohel P, Loftus S, Schwartz TH.  2020.  Intraoperative MRI versus 5-ALA in high-grade glioma resection: a network meta-analysis. J Neurosurg. :1-15.
Laratta JL, Shillingford JN, Hardy N, Lombardi JM, Saifi C, Romanov A, Lenke LG, Lehman RA, K Riew D.  2017.  Intrawound Tobramycin Powder Eradicates Surgical Wound Contamination: An In Vivo Rabbit Study.. Spine (Phila Pa 1976). 42(24):E1393-E1397.
Laratta JL, Shillingford JN, Hardy N, Lombardi JM, Saifi C, Romanov A, Lenke LG, Lehman RA, K Riew D.  2017.  Intrawound Tobramycin Powder Eradicates Surgical Wound Contamination: An In Vivo Rabbit Study.. Spine (Phila Pa 1976). 42(24):E1393-E1397.
Laratta JL, Shillingford JN, Hardy N, Lombardi JM, Saifi C, Romanov A, Lenke LG, Lehman RA, K Riew D.  2017.  Intrawound Tobramycin Powder Eradicates Surgical Wound Contamination: An In Vivo Rabbit Study.. Spine (Phila Pa 1976). 42(24):E1393-E1397.
Laratta JL, Shillingford JN, Hardy N, Lombardi JM, Saifi C, Romanov A, Lenke LG, Lehman RA, K Riew D.  2017.  Intrawound Tobramycin Powder Eradicates Surgical Wound Contamination: An In Vivo Rabbit Study.. Spine (Phila Pa 1976). 42(24):E1393-E1397.
Liberta TA, Kagiwada M, Ho K, Spat-Lemus J, Voelbel GT, Kohn A, Perrine K, Josephs L, McLean EA, Sacks-Zimmerman A.  2020.  An investigation of Cogmed working memory training for neurological surgery patients. Interdisciplinary Neurosurgery. (September)
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Ming Q, Liou J-Y, Yang F, Li J, Chu C, Zhou Q, Wu D, Xu S, Luo P, Liang J et al..  2020.  Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats.. Front Syst Neurosci. 14:599781.
Garton ALA, Gupta VP, Larsen AMGiantini, Kamel H, Knopman J, Stieg PE.  2020.  Letter: Effect of Blood Pressure Variability During the Acute Period of Subarachnoid Hemorrhage on Functional Outcomes.. Neurosurgery. 87(3):E428-E429.
Shetty SRaviraj, Ruiz-Treviño AS, Omay SBulent, Almeida JPaulo, Liang B, Chen Y-N, Singh H, Schwartz TH.  2017.  Limitations of the endonasal endoscopic approach in treating olfactory groove meningiomas. A systematic review.. Acta Neurochir (Wien). 159(10):1875-1885.
Niethammer M, Tang CC, LeWitt PA, Rezai AR, Leehey MA, Ojemann SG, Flaherty AW, Eskandar EN, Kostyk SK, Sarkar A et al..  2017.  Long-term follow-up of a randomized AAV2- gene therapy trial for Parkinson's disease.. JCI Insight. 2(7):e90133.
Niethammer M, Tang CC, LeWitt PA, Rezai AR, Leehey MA, Ojemann SG, Flaherty AW, Eskandar EN, Kostyk SK, Sarkar A et al..  2017.  Long-term follow-up of a randomized AAV2- gene therapy trial for Parkinson's disease.. JCI Insight. 2(7):e90133.
Santillan A, Boddu S, Schwarz J, Lin N, Y Gobin P, Knopman J, Patsalides A.  2018.  LVIS Jr. stent for treatment of intracranial aneurysms with parent vessel diameter of 2.5 mm or less.. Interv Neuroradiol. 24(3):246-253.
Rajappa P, Cobb WS, Vartanian E, Huang Y, Daly L, Hoffman C, Zhang J, Shen B, Yanowitch R, Garg K et al..  2017.  Malignant Astrocytic Tumor Progression Potentiated by JAK-mediated Recruitment of Myeloid Cells.. Clin Cancer Res. 23(12):3109-3119.
Julie DA, Lazow SP, Vanderbilt DB, Taube S, Yondorf MZ, Sabbas A, Pannullo S, Schwartz TH, A Wernicke G.  2020.  A matched-pair analysis of clinical outcomes after intracavitary cesium-131 brachytherapy versus stereotactic radiosurgery for resected brain metastases.. J Neurosurg. :1-8.
Link TW, Boddu S, Marcus J, Rapoport BI, Lavi E, Knopman J.  2018.  Middle Meningeal Artery Embolization as Treatment for Chronic Subdural Hematoma: A Case Series.. Oper Neurosurg (Hagerstown). 14(5):556-562.
Link TW, Boddu S, Marcus J, Rapoport BI, Lavi E, Knopman J.  2018.  Middle Meningeal Artery Embolization as Treatment for Chronic Subdural Hematoma: A Case Series.. Oper Neurosurg (Hagerstown). 14(5):556-562.
Link TW, Boddu S, Paine SM, Kamel H, Knopman J.  2019.  Middle Meningeal Artery Embolization for Chronic Subdural Hematoma: A Series of 60 Cases.. Neurosurgery. 85(6):801-807.
Parajón A, Alimi M, Navarro-Ramirez R, Christos P, Torres-Campa JM, Moriguchi Y, Lang G, Härtl R.  2017.  Minimally Invasive Transforaminal Lumbar Interbody Fusion: Meta-analysis of the Fusion Rates. What is the Optimal Graft Material? Neurosurgery. 81(6):958-971.
Xie L, Cen L-P, Li Y, Gilbert H-Y, Strelko O, Berlinicke C, Stavarache MA, Ma M, Wang Y, Cui Q et al..  2022.  Monocyte-derived SDF1 supports optic nerve regeneration and alters retinal ganglion cells' response to Pten deletion.. Proc Natl Acad Sci U S A. 119(15):e2113751119.