In vivo NMR relaxation studies of tumors
I. D. Weisman, L. H. Bennett, L. R. Maxwell
Abstract
I. D. Weisman, L. H. Bennett, L. R. Maxwell
Abstract
Pulsed nuclear magnetic resonance has been used to differentiate between normal mouse tail tissue and a malignant transplanted melanoma S91 located on the tail of a live mouse. Measurements of proton spin-lattice and spin-spin relaxation serve to detect and monitor the tumor growth. The mature tumor exhibits a spin-lattice relaxation time T1of\sim0.7- 0.8s contrasting with the corresponding normal tail tissue T1of half this value. On the other hand spin-spin relaxation in normal tissue cannot be characterized by a single relaxation time T2. The corresponding relaxation in a mature tumor is found to be closer to a single exponential but still requires at least two superimposed exponential decays.
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Pulsed nuclear magnetic resonance has been used to differentiate between normal mouse tail tissue and a malignant transplanted melanoma S91 located on the tail of a live mouse. Measurements of proton spin-lattice and spin-spin relaxation serve to detect and monitor the tumor growth. The mature tumor exhibits a spin-lattice relaxation time T1of\sim0.7- 0.8s contrasting with the corresponding normal tail tissue T1of half this value. On the other hand spin-spin relaxation in normal tissue cannot be characterized by a single relaxation time T2. The corresponding relaxation in a mature tumor is found to be closer to a single exponential but still requires at least two superimposed exponential decays.
Key concepts: Relaxation (psychology), Nuclear magnetic resonance, Spin–lattice relaxation, In vivo, Exponential function, Physics, Biology, Mathematics