Label-free photoacoustic microscopy of myocardial sheet architecture.
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Lihong V. Wang | Chi Zhang | Ya-Jian Cheng | Chi Zhang | S. Wickline | Junjie Chen | Lihong V Wang | Junjie Chen | Samuel Wickline | Ya-Jian Cheng
[1] C. Anthony. Cytochrome c and the oxidation of C1 compounds in Pseudomonas AM1. , 1970, The Biochemical journal.
[2] Andrew E Arai,et al. Myocardial oxygenation in vivo: optical spectroscopy of cytoplasmic myoglobin and mitochondrial cytochromes. , 1999, American journal of physiology. Heart and circulatory physiology.
[3] Sheng-Kwei Song,et al. Regional ventricular wall thickening reflects changes in cardiac fiber and sheet structure during contraction: quantification with diffusion tensor MRI. , 2005, American journal of physiology. Heart and circulatory physiology.
[4] Andrew D McCulloch,et al. Laminar fiber architecture and three-dimensional systolic mechanics in canine ventricular myocardium. , 1999, American journal of physiology. Heart and circulatory physiology.
[5] Jan Laufer,et al. Quantitative spatially resolved measurement of tissue chromophore concentrations using photoacoustic spectroscopy: application to the measurement of blood oxygenation and haemoglobin concentration , 2007, Physics in medicine and biology.
[6] Lihong V. Wang,et al. Subwavelength-resolution label-free photoacoustic microscopy of optical absorption in vivo. , 2010, Optics letters.
[7] P. Hunter,et al. Laminar structure of the heart: ventricular myocyte arrangement and connective tissue architecture in the dog. , 1995, The American journal of physiology.
[8] Qifa Zhou,et al. Reflection-mode submicron-resolution in vivo photoacoustic microscopy. , 2012, Journal of biomedical optics.
[9] Lihong V. Wang,et al. Functional photoacoustic microscopy for high-resolution and noninvasive in vivo imaging , 2006, Nature Biotechnology.
[10] Da-Kang Yao,et al. Label-free photoacoustic microscopy of cytochrome c in cells , 2012, Photonics West - Biomedical Optics.
[11] John Forder,et al. Histological validation of myocardial microstructure obtained from diffusion tensor magnetic resonance imaging. , 1998, American journal of physiology. Heart and circulatory physiology.
[12] J W Covell,et al. Transverse shear along myocardial cleavage planes provides a mechanism for normal systolic wall thickening. , 1995, Circulation research.
[13] Gregory B. Sands,et al. Three-dimensional transmural organization of perimysial collagen in the heart , 2008, American journal of physiology. Heart and circulatory physiology.
[14] Lihong V. Wang. Multiscale photoacoustic microscopy and computed tomography. , 2009, Nature photonics.
[15] G. Majno,et al. Cells, tissues, and disease : principles of general pathology , 1996 .