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Parthasarathy Thirumala

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Articles 18
Citations 107
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Recent Articles
1.
Al-Qudah A, Alkalbani L, Tallapaneni P, Vinuthna D, Suresh V, Anetakis K, et al.
Eur Neurol . 2025 Feb; :1-17. PMID: 39999825
Introduction: Postoperative delirium (POD) that is associated with intracranial surgeries can have several adverse outcomes, including a high rate of morbidity and mortality. The use of intraoperative neurophysiological monitoring (IONM)...
2.
Jain U, Jain B, Brown J, Selvakumar J, Sultan I, Rahim F, et al.
J Stroke Cerebrovasc Dis . 2024 Aug; 33(11):107958. PMID: 39159904
Objective: Perioperative Large Vessel Occlusions (LVOs) occurring during and following surgery are of immense clinical importance. As such, we aim to present risk factors and test if the Society of...
3.
Mina A, Espino J, Bradley A, Thirumala P, Batmanghelich K, Visweswaran S
Stud Health Technol Inform . 2024 Jan; 310:274-278. PMID: 38269808
Continuous intraoperative monitoring with electroencephalo2 graphy (EEG) is commonly used to detect cerebral ischemia in high-risk surgical procedures such as carotid endarterectomy. Machine learning (ML) models that detect ischemia in...
4.
Jorge A, Fish E, Dixon C, Hamilton K, Balzer J, Thirumala P
World Neurosurg . 2019 Jun; 129:e607-e613. PMID: 31158549
Background: Iatrogenic spinal cord injury (iSCI) during spinal corrective surgery can result in devastating complications, such as paraplegia or paraparesis. Perioperatively, iSCI often occurs as a direct injury during spinal...
5.
Jorge A, Zhou J, Dixon E, Hamilton K, Balzer J, Thirumala P
J Clin Neurophysiol . 2019 Jan; 36(2):155-160. PMID: 30694945
Purpose: Intraoperative neurophysiological monitoring using somatosensory evoked potentials has been linked to a reduction in the incidence of neurological deficits during corrective surgery. Nonetheless, quantitative assessments of somatosensory evoked potential...
6.
Ares W, Grandhi R, Panczykowski D, Weiner G, Thirumala P, Habeych M, et al.
Oper Neurosurg (Hagerstown) . 2017 Jun; 14(2):151-157. PMID: 28633394
Background: Somatosensory evoked potential (SSEP) monitoring is used extensively for early detection and prevention of neurological complications in patients undergoing many different neurosurgical procedures. However, the predictive ability of SSEP...
7.
Thirumala P, Zhou J, Natarajan P, Balzer J, Dixon E, Okonkwo D, et al.
Spine J . 2017 May; 17(11):1611-1624. PMID: 28527755
Background Context: Perioperative neurologic complications after spine surgery may increase morbidity and health-care costs related to the procedure. Purpose: We estimate the national incidence of perioperative neurologic complications following anterior...
8.
Acharya J, Hani A, Cheek J, Thirumala P, Tsuchida T
Neurodiagn J . 2017 Apr; 56(4):245-252. PMID: 28436791
This revision to the EEG Guidelines is an update incorporating current electroencephalography technology and practice and was previously published as Guideline 5. While the 10-10 system of electrode position nomenclature...
9.
Acharya J, Hani A, Thirumala P, Tsuchida T
Neurodiagn J . 2017 Apr; 56(4):253-260. PMID: 28436788
This revision to the EEG Guidelines is an update incorporating current electroencephalography technology and practice and was previously published as Guideline 6. A discussion of methodology for the appropriate selection...
10.
Ying T, Thirumala P, Gardner P, Habeych M, Crammond D, Balzer J
J Neurol Surg B Skull Base . 2015 Dec; 76(6):411-5. PMID: 26682118
Objectives To evaluate the incidence and discuss the pathogenesis of early postoperative conductive hearing loss (CHL) after microvascular decompression (MVD) for hemifacial spasm (HFS). Design Pre- and postoperative audiogram data...