Lia Hocke
Affiliations: | Tufts University Sackler School of Biomedical Research |
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Fitzgerald B, Yao JF, Hocke LM, et al. (2023) Using carpet plots to analyze blood transit times in the brain during hypercapnic challenge magnetic resonance imaging. Frontiers in Physiology. 14: 1134804 |
Fitzgerald B, Yao JF, Talavage TM, et al. (2021) Using carpet plots to analyze transit times of low frequency oscillations in resting state fMRI. Scientific Reports. 11: 7011 |
Tong Y, Hocke LM, Frederick BB. (2019) Low Frequency Systemic Hemodynamic "Noise" in Resting State BOLD fMRI: Characteristics, Causes, Implications, Mitigation Strategies, and Applications. Frontiers in Neuroscience. 13: 787 |
Aslan S, Hocke L, Schwarz N, et al. (2019) Extraction of the cardiac waveform from simultaneous multislice fMRI data using slice sorted averaging and a deep learning reconstruction filter. Neuroimage. 198: 303-316 |
Hocke LM, Oni IK, Duszynski CC, et al. (2018) Automated Processing of fNIRS Data-A Visual Guide to the Pitfalls and Consequences. Algorithms. 11 |
Rohan M, Yamamoto R, Ohashi K, et al. (2017) 259. NIRS Observation of Changes in Brain Activity following Low Field Magnetic Stimulation Biological Psychiatry. 81: S106-S107 |
Erdoğan SB, Tong Y, Hocke LM, et al. (2016) Correcting for Blood Arrival Time in Global Mean Regression Enhances Functional Connectivity Analysis of Resting State fMRI-BOLD Signals. Frontiers in Human Neuroscience. 10: 311 |
Tong Y, Hocke LM, Lindsey KP, et al. (2016) Systemic Low-Frequency Oscillations in BOLD Signal Vary with Tissue Type. Frontiers in Neuroscience. 10: 313 |
Tong Y, Lindsey KP, Hocke LM, et al. (2016) Perfusion information extracted from resting state functional magnetic resonance imaging. Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism |
Hocke LM, Tong Y, Lindsey KP, et al. (2016) Comparison of peripheral near-infrared spectroscopy low-frequency oscillations to other denoising methods in resting state functional MRI with ultrahigh temporal resolution. Magnetic Resonance in Medicine |