1973IEEE Transactions on MagneticsRequires access

In vivo NMR relaxation studies of tumors

I. D. Weisman, L. H. Bennett, L. R. Maxwell

Open publisher page 3 citations

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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What this paper is about

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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Available 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.

Key concepts: Relaxation (psychology), Nuclear magnetic resonance, Spin–lattice relaxation, In vivo, Exponential function, Physics, Biology, Mathematics

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