Measuring the Absolute Water Content of the Brain Using Quantitative MRI
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Publisher
Humana Press
Link
http://link.springer.com/content/pdf/10.1007/978-1-61737-992-5_3.pdf
Reference83 articles.
1. Shah, N. J., Zaitsev, M., Steinhoff, S., Zilles, K. A new method for fast multislice T1 mapping. Neuroimage 2001;14(5):1175–1185.
2. Steinhoff, S., Zaitsev, M., Zilles, K., Shah, N. J. Fast T(1) mapping with volume coverage. Magn Reson Med 2001 Jul;46(1):131–140.
3. Neeb, H., Shah, N. J. Enhancing the precision of quantitative water content mapping by optimizing sequence parameters. Magn Reson Med 2006a;56(1):224–229.
4. Neeb, H., Zilles, K., Shah, N. J. A new method for fast quantitative mapping of absolute water content in vivo. Neuroimage 2006b;31(3):1156–1168.
5. Neeb, H., Zilles, K., Shah, N. J. Fully-automated detection of cerebral water content changes: Study of age- and gender-related H2O patterns with quantitative MRI. Neuroimage 2006c;29(3):910–922.
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