Journal Cover Features

Clinical Neurophysiology June 2021 cover featuring Noor lab research
Clinical Neurophysiology, June 2021
Clinical Neurophysiology 2026 cover featuring Noor lab research
Clinical Neurophysiology, 2026

Journal Papers

  1. Noor MS, Jadapalli J, Walker HC and McIntyre CC. 2026. Localizing beta synchronous neurons in the subthalamic nucleus using directional DBS recordings and patient-specific biophysical modeling. Clinical Neurophysiology 186: 2111854. doi:10.1016/j.clinph.2026.2111854
  2. Zalasky N, Luo F, Kim LH, Noor MS, Brown E, Arantes A, Ramasubbu R, Gruber A, Kiss Z, Clark DL. 2024. Integration of valence and conflict processing through cellular-field interactions in human subgenual cingulate during emotional face processing in treatment-resistant depression. Molecular Psychiatry. doi:10.1038/s41380-024-02667-6
  3. Noor MS, Steina AK, and McIntyre CC. 2024. Dissecting Deep Brain Stimulation Evoked Neural Activity in the Basal Ganglia. Neurotherapeutics 21(3): e00356. doi:10.1016/j.neurot.2024.e00356
  4. Seas A*, Noor MS*, Choi KS, Veerakumar A, Obatusin M, Dahill-Fuchel J, Tiruvadi V, Xu E, Riva-Posse P, Rozell CJ, Mayberg HS, McIntyre CC, Waters AC, Howell B. 2024. Subcallosal cingulate deep brain stimulation evokes two distinct cortical responses via differential white matter activation. Proceedings of the National Academy of Sciences 121(14): e2314918121. doi:10.1073/pnas.2314918121
  5. Chen H*, Noor MS*, Bingham CS, and McIntyre CC. 2024. Optimization of an anatomically and electrically detailed subthalamic nucleus neuron model. Journal of Neurophysiology 132: 136–146. doi:10.1152/jn.00287.2023
  6. Noor MS, Howell B, McIntyre CC. 2023. Role of the volume conductor on simulations of local field potential recordings from deep brain stimulation electrodes. PloS One 18(11): e0294512. doi:10.1371/journal.pone.0294512
  7. Clark DL, Khalil T, Kim LH, Noor MS, Luo F, Kiss ZHT. 2023. Aperiodic subthalamic activity predicts motor severity and stimulation response in Parkinson disease. Parkinsonism and Related Disorders 110: 105397. doi:10.1016/j.parkreldis.2023.105397
  8. Yu L, Noor MS, Kiss Z, and Murari K. 2022. Monitoring stimulus-evoked hemodynamic response during deep brain stimulation with single fiber spectroscopy. Journal of Biophotonics 15(11): e202200076. doi:10.1002/jbio.202200076
  9. Noor MS, McIntyre CC. 2021. Biophysical characterization of local field potential recordings from directional deep brain stimulation electrodes. Clinical Neurophysiology 132(6): 1321-9. Issue cover. doi:10.1016/j.clinph.2021.01.027
  10. Yalaz M, Deuschl G, Noor MS, Butz M, Schnitzler A, Helmers A, Hoft M. 2021. Determining the Rotational Orientation of Directional Deep Brain Stimulation Electrodes using Magnetoencephalography. Journal of Neural Engineering 18(5): 056056. doi:10.1088/1741-2552/ac2c4d
  11. Yalaz M, Noor MS, Schnitzler A, McIntyre CC, Deuschl G, Hoft M. 2021. DBS electrode localization and rotational orientation detection using SQUID-based magnetoencephalography. Journal of Neural Engineering 18(2): 026021. doi:10.1088/1741-2552/abe099
  12. Noor MS, Yu L, Murari K, Kiss ZHT. 2020. Neurovascular coupling during deep brain stimulation. Brain Stimulation 13(3): 916-27. doi:10.1016/j.brs.2020.03.005
  13. Luo F, Kim LH, Magown P, Noor MS, Kiss ZHT. 2018. Long-lasting electrophysiological after-effects of high frequency stimulation in the globus pallidus: human and rodent slice studies. Journal of Neuroscience 38(50): 10734-46. doi:10.1523/JNEUROSCI.0785-18.2018
  14. Noor MS, Murari K, McCracken CB, Kiss ZHT. 2016. Spatiotemporal dynamics of cortical perfusion in response to thalamic deep brain stimulation. NeuroImage 126:131-9. Issue cover. doi:10.1016/j.neuroimage.2015.11.017
  15. Zhang X, Noor MS, McCracken CB, Kiss ZHT, Yadid-Pecht O, Murari K. 2016. CMOS Image Sensor and System for Imaging Hemodynamic Changes in Response to Deep Brain Stimulation. IEEE Transactions on Biomedical Circuits and Systems 10(3): 632-42. doi:10.1109/TBCAS.2015.2453256
  16. Tsanov M, Chah E, Noor MS, Egan C, Reilly RB, Aggleton JP, Erichsen JT, Vann SD, O’Mara SM. 2014. The irregular firing properties of thalamic head direction cells mediate turn-specific modulation of the directional tuning curve. Journal of Neurophysiology 112(9): 2316-31. doi:10.1152/jn.00583.2013

Conference Papers

  1. Chen H*, Noor MS*, Bingham CS, and McIntyre CC. 2023. An anatomically and biophysically realistic rodent subthalamic nucleus neuron model. Proceedings of the 11th International IEEE/EMBS Conference on Neural Engineering (NER), Baltimore, MD. doi:10.1109/NER52421.2023.10123731
  2. Yu L, Noor MS, Kiss Z, and Murari K. 2018. Hemodynamic monitoring in different cortical layers with a single fiber optical system. Neural Imaging and Sensing, 104811H. doi:10.1117/12.2289138
  3. Yu L, Noor MS, Kiss Z, and Murari K. 2017. A Lightweight, Head-Mounted Optical System for Monitoring Cerebrovascular Perfusion during Deep Brain Stimulation. Optics in the Life Sciences, Jtu4A.10. doi:10.1364/BODA.2017.JTu4A.10
  4. Yu L, Noor MS, Kiss Z, and Murari K. 2016. A Miniaturized Optical System for Monitoring Cerebrovascular Perfusion during Deep Brain Stimulation. Frontiers in Optics, FTh4D.4. doi:10.1364/FIO.2016.FTh4D.4
  5. Acosta AI, Noor MS, Kiss ZHT, Murari K. 2015. A lightweight discrete biphasic current stimulator for rodent deep brain stimulation. Proceedings of the 2015 IEEE Biomedical Circuits and Systems Conference (BioCAS), Atlanta, GA, pp. 1-4. doi:10.1109/BioCAS.2015.7348360
  6. Zhang X, Noor MS, McCracken CB, Kiss ZHT, Yadid-Pecht O, Murari K. 2013. A miniaturized system for imaging vascular response to deep brain stimulation. Proceedings of the 2013 IEEE Biomedical Circuits and Systems Conference, Rotterdam, Netherlands, pp. 126-129. doi:10.1109/BioCAS.2013.6679655