• Journal of Innovative Optical Health Sciences
  • Vol. 3, Issue 1, 61 (2010)
PENG MIAO1、2, MINHENG LI1, NAN LI2, ABHISHEK REGE2, YISHENG ZHU1, NITISH THAKOR2, and SHANBAO TONG3、*
Author Affiliations
  • 1Department of Biomedical Engineering, Shanghai Jiao Tong University Shanghai 200240, China
  • 2Department of Biomedical Engineering, Johns Hopkins University Baltimore, MD 21205, USA
  • 3Med-X Research Institute, Shanghai Jiao Tong University Shanghai 200230, China
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    DOI: Cite this Article
    PENG MIAO, MINHENG LI, NAN LI, ABHISHEK REGE, YISHENG ZHU, NITISH THAKOR, SHANBAO TONG. DETECTING CEREBRAL ARTERIES AND VEINS: FROM LARGE TO SMALL[J]. Journal of Innovative Optical Health Sciences, 2010, 3(1): 61 Copy Citation Text show less
    References

    [1] S. Strandgaard, J. Olesen, E. Skinhoj, N. A. Lassen, “Autoregulation of brain circulation in severe arterial hypertension,” Br. Med. J. 1, 507–510 (1973).

    [2] L. D. Lunsford, D. Kondziolka, D. J. Bissonette, “Intraoperative imaging of the brain,” Stereotact. Funct. Neurosurg. 66, 58–64 (1996).

    [3] K. Sato et al., “Intraoperative intrinsic optical imaging of neuronal activity from subdivisions of the human primary somatosensory cortex,” Cereb. Cortex 12, 269–280 (2002).

    [4] A. Grinvald, E. Lieke, R. D. Frostig, C. D. Gilbert, T. N. Wiesel, “Functional architecture of cortex revealed by optical imaging of intrinsic signals,” Nature 324, 361–364 (1986).

    [5] A. K. Dunn, H. Bolay, M. A. Moskowitz, D. A. Boas, “Dynamic imaging of cerebral blood flow using laser speckle,” J. Cereb. Blood Flow Metab. 21, 195–201 (2001).

    [6] L. Edvinsson, E. T. MacKenzie, McCulloch, Cerebral Blood Flow and Metabolism, Raven Press, New York (1993).

    [7] J. D. Briers, S. Webster, “Laser speckle contrast analysis (LASCA): A nonscanning, full-field technique for monitoring capillary blood flow,” J. Biomed. Opt. 1, 174–179 (1996).

    [8] H. Cheng, Q. Luo, S. Zeng, S. Chen, J. Cen, H. Gong, “Modified laser speckle imaging method with improved spatial resolution,” J. Biomed. Opt. 8(3), 559–564 (2003).

    [9] P. Miao, N. Li, A. Rege, S. Tong, N. Thakor, “Model based reconstruction for simultaneously imaging cerebral blood flow and deoxyhemoglobin distribution,” in 31th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBS), IEEE, Minneapolis, MN (2009).

    [10] H. Motulsky, A. Christopoulos, Fitting Models to Biological Data Using Linear and Nonlinear Regression: A Practical Guide to Curve Fitting, Oxford University Press, USA (2004).

    [11] N. Otsu, “A threshold selection method from graylevel histograms,” IEEE Trans. SMC 9, 62–69 (1979).

    [12] J. Holash, P. C. Maisonpierre, D. Compton, P. Boland, C. R. Alexander, D. Zagzag, G. D. Yancopoulos, S. J. Wiegand, “Vessel cooption, regression, and growth in tumors mediated by angiopoietins and VEGF,” Science 284(5422), 1994–1998 (1999).

    [13] M. J. Mack, “Minimally invasive and robotic surgery,” JAMA 285(5), 568–572 (2001).

    [14] D. W. Choi, “Cerebral hypoxia: Some new approaches and unanswered questions,” J. Neurosci. 10(8), 2493–2501 (1990).

    [15] A. G. Sorensen, W. A. Copen, L. stergaard, F. S. Buonanno, R. G. Gonzalez, G. Rordorf, B. R. Rosen, L. H. Schwamm, R. M.Weisskoff,W. J. Koroshetz, “Hyperacute stroke: simultaneous measurement of relative cerebral blood volume, relative cerebral blood flow, and mean tissue transit time,” Radiology 210(2), 519–527 (1999).

    PENG MIAO, MINHENG LI, NAN LI, ABHISHEK REGE, YISHENG ZHU, NITISH THAKOR, SHANBAO TONG. DETECTING CEREBRAL ARTERIES AND VEINS: FROM LARGE TO SMALL[J]. Journal of Innovative Optical Health Sciences, 2010, 3(1): 61
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