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A comparison of the physical and chemical differences between cancellous and cortical bovine bone mineral at two ages.
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Citrate: a key signalling molecule and therapeutic target for bone remodeling disorder.
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Micron-resolution Imaging of Cortical Bone under 14 T Ultrahigh Magnetic Field.
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Characterization of Microstructural Changes on Biglycan Induced Mice Bone by Low-Field Nuclear Magnetic Resonance.
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Bone hydration: How we can evaluate it, what can it tell us, and is it an effective therapeutic target?
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本文引用的文献

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Sacrificial bonds and hidden length dissipate energy as mineralized fibrils separate during bone fracture.
Nat Mater. 2005 Aug;4(8):612-6. doi: 10.1038/nmat1428. Epub 2005 Jul 17.
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Highly ordered interstitial water observed in bone by nuclear magnetic resonance.
J Bone Miner Res. 2005 Apr;20(4):625-34. doi: 10.1359/JBMR.041217. Epub 2004 Dec 13.
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Bone chemical structure response to mechanical stress studied by high pressure Raman spectroscopy.
Calcif Tissue Int. 2005 Mar;76(3):207-13. doi: 10.1007/s00223-004-0168-z. Epub 2005 Mar 8.
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Nuclear magnetic resonance studies of bone water.
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1H MAS and 1H --> 31P CP/MAS NMR study of human bone mineral.
Calcif Tissue Int. 2003 Nov;73(5):476-86. doi: 10.1007/s00223-002-2111-5. Epub 2003 Sep 10.
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Detection of hydroxyl ions in bone mineral by solid-state NMR spectroscopy.
Science. 2003 May 16;300(5622):1123-7. doi: 10.1126/science.1078470.
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Materials become insensitive to flaws at nanoscale: lessons from nature.
Proc Natl Acad Sci U S A. 2003 May 13;100(10):5597-600. doi: 10.1073/pnas.0631609100. Epub 2003 May 5.
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Diffusion of exchangeable water in cortical bone studied by nuclear magnetic resonance.
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