Lia Hocke

Affiliations: 
Tufts University Sackler School of Biomedical Research 
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"Lia Hocke"
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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
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