Sandhitsu R. Das - Publications

Affiliations: 
University of Pennsylvania, Philadelphia, PA, United States 
Area:
Visual Recognition, Neuroimaging

22 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2019 de Flores R, Berron D, Ding SL, Ittyerah R, Pluta JB, Xie L, Adler DH, Robinson JL, Schuck T, Trojanowski JQ, Grossman M, Liu W, Pickup S, Das SR, Wolk DA, et al. Characterization of hippocampal subfields using ex vivo MRI and histology data: Lessons for in vivo segmentation. Hippocampus. PMID 31675165 DOI: 10.1002/Hipo.23172  0.307
2019 Xie L, Wisse LEM, Pluta J, de Flores R, Piskin V, Manjón JV, Wang H, Das SR, Ding SL, Wolk DA, Yushkevich PA. Automated segmentation of medial temporal lobe subregions on in vivo T1-weighted MRI in early stages of Alzheimer's disease. Human Brain Mapping. PMID 31034738 DOI: 10.1002/Hbm.24607  0.321
2019 Solomon EA, Stein JM, Das S, Gorniak R, Sperling MR, Worrell G, Inman CS, Tan RJ, Jobst BC, Rizzuto DS, Kahana MJ. Dynamic Theta Networks in the Human Medial Temporal Lobe Support Episodic Memory. Current Biology : Cb. PMID 30905609 DOI: 10.1016/J.Cub.2019.02.020  0.301
2019 Shah P, Bassett DS, Wisse LEM, Detre JA, Stein JM, Yushkevich PA, Shinohara RT, Elliott MA, Das SR, Davis KA. Structural and functional asymmetry of medial temporal subregions in unilateral temporal lobe epilepsy: A 7T MRI study. Human Brain Mapping. PMID 30666753 DOI: 10.1002/Hbm.24530  0.309
2018 Miller J, Watrous AJ, Tsitsiklis M, Lee SA, Sheth SA, Schevon CA, Smith EH, Sperling MR, Sharan A, Asadi-Pooya AA, Worrell GA, Meisenhelter S, Inman CS, Davis KA, Lega B, ... ... Das SR, et al. Lateralized hippocampal oscillations underlie distinct aspects of human spatial memory and navigation. Nature Communications. 9: 2423. PMID 29930307 DOI: 10.1038/S41467-018-04847-9  0.305
2017 Berron D, Vieweg P, Hochkeppler A, Pluta JB, Ding SL, Maass A, Luther A, Xie L, Das SR, Wolk DA, Wolbers T, Yushkevich PA, Düzel E, Wisse LEM. A protocol for manual segmentation of medial temporal lobe subregions in 7 Tesla MRI. Neuroimage. Clinical. 15: 466-482. PMID 28652965 DOI: 10.1016/J.Nicl.2017.05.022  0.302
2017 Kragel JE, Ezzyat Y, Sperling MR, Gorniak R, Worrell GA, Berry BM, Inman C, Lin JJ, Davis KA, Das SR, Stein JM, Jobst BC, Zaghloul KA, Sheth SA, Rizzuto DS, et al. Similar patterns of neural activity predict memory function during encoding and retrieval. Neuroimage. PMID 28377210 DOI: 10.1016/J.Neuroimage.2017.03.042  0.3
2016 Wolk DA, Das SR, Mueller SG, Weiner MW, Yushkevich PA. Medial temporal lobe subregional morphometry using high resolution MRI in Alzheimer's disease. Neurobiology of Aging. PMID 27836336 DOI: 10.1016/J.Neurobiolaging.2016.09.011  0.311
2016 Xie L, Pluta JB, Das SR, Wisse LE, Wang H, Mancuso L, Kliot D, Avants BB, Ding SL, Manjón JV, Wolk DA, Yushkevich PA. Multi-Template Analysis of Human Perirhinal Cortex in Brain MRI: Explicitly Accounting for Anatomical Variability. Neuroimage. PMID 27702610 DOI: 10.1016/J.Neuroimage.2016.09.070  0.322
2015 Das SR, Mancuso L, Olson IR, Arnold SE, Wolk DA. Short-Term Memory Depends on Dissociable Medial Temporal Lobe Regions in Amnestic Mild Cognitive Impairment. Cerebral Cortex (New York, N.Y. : 1991). PMID 25725042 DOI: 10.1093/Cercor/Bhv022  0.311
2014 Dhillon PS, Wolk DA, Das SR, Ungar LH, Gee JC, Avants BB. Subject-specific functional parcellation via prior based eigenanatomy. Neuroimage. 99: 14-27. PMID 24852460 DOI: 10.1016/J.Neuroimage.2014.05.026  0.313
2014 Das S, Pluta J, Mancuso L, Kliot D, Yushkevich P, Wolk DA. P4-104: INVOLVEMENT OF ANTERIOR AND POSTERIOR MEDIAL TEMPORAL LOBE NETWORKS IN EARLY ALZHEIMER'S DISEASE Alzheimer's & Dementia. 10: P822-P822. DOI: 10.1016/J.Jalz.2014.05.1620  0.302
2013 Das SR, Pluta J, Mancuso L, Kliot D, Orozco S, Dickerson BC, Yushkevich PA, Wolk DA. Increased functional connectivity within medial temporal lobe in mild cognitive impairment. Hippocampus. 23: 1-6. PMID 22815064 DOI: 10.1002/Hipo.22051  0.314
2010 Das SR, Lazarewicz MT, Wilson RC, Finkel LH. Sensitivity to motion features in upright and inverted point-light displays Journal of Vision. 6: 1032-1032. DOI: 10.1167/6.6.1032  0.733
2009 Das SR, Mechanic-Hamilton D, Korczykowski M, Pluta J, Glynn S, Avants BB, Detre JA, Yushkevich PA. Structure specific analysis of the hippocampus in temporal lobe epilepsy. Hippocampus. 19: 517-25. PMID 19437496 DOI: 10.1002/Hipo.20620  0.302
2009 Das SR, Lazarewicz MT, Wilson RC, Finkel LH. Sensitivity to motion features in point light displays of biological motion. Spatial Vision. 22: 105-25. PMID 19228453 DOI: 10.1163/156856809787465627  0.737
2006 Das SR, Wilson RC, Lazarewicz MT, Finkel LH. Two-stage PCA extracts spatiotemporal features for gait recognition Journal of Multimedia. 1: 9-17. DOI: 10.4304/Jmm.1.5.9-17  0.74
2006 Das SR, Wilson RC, Lazarewicz MT, Finkel LH. Gait recognition by two-stage principal component analysis Fgr 2006: Proceedings of the 7th International Conference On Automatic Face and Gesture Recognition. 2006: 579-584. DOI: 10.1109/FGR.2006.56  0.724
2006 Wilson RC, Das SR, Finkel LH. Motion as shape: A novel method for the recognition and prediction of biological motion Bmvc 2006 - Proceedings of the British Machine Vision Conference 2006. 669-678.  0.673
2005 Lazarewicz MT, Das S, Finkel LH. Recognition of temporal event sequences by a network of cortical neurons Neurocomputing. 65: 143-151. DOI: 10.1016/J.Neucom.2004.10.001  0.725
2004 Das S, Lazarewicz M, Finkel LH. Principal component analysis of temporal and spatial information for human gait recognition. Conference Proceedings : ... Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual Conference. 6: 4568-71. PMID 17271323 DOI: 10.1109/IEMBS.2004.1404267  0.747
2003 Das S, Finkel LH. Cortical integration of bottom-up, top-down and horizontal information in biological motion recognition International Ieee/Embs Conference On Neural Engineering, Ner. 2003: 75-78. DOI: 10.1109/CNE.2003.1196759  0.629
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