The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magnetic resonance spectroscopy. This technique has been employed in human brain providing new hints on the Mg2+ homeostasis and on its involvement on the cellular bioenergetics. The possibility to assess the free cytosolic [Mg2+] in the human brain opened the chance to study the involvement of Mg2+ in different neurological pathologies, and particularly in those where the defective mitochondrial energy production represents the primary causative factor in pathogenesis. The results obtained, studying patients affected by different types of mitochondrial cytopathies, helped to clarify the functional relationship between the energy metabolism and...
Free cytosolic [Mg2+] can be assessed in vivo by P-31 MRS from the chemical shift of beta-ATP which ...
Magnesium (Mg) is involved in the regulation of metabolism and in the maintenance of the homeostasis...
Magnesium is well known for its diverse actions within the human body. From a neurological standpoin...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus mag...
none2The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphoru...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the free c...
Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the free c...
none2Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the f...
Abstract. Phosphorus magnetic resonance spectroscopy offers a unique opportu-nity to measure in vivo...
Our understanding of the physiology and biochemistry of the brain has improved dramatically in the l...
Our understanding of the physiology and biochemistry of the brain has improved dramatically in the l...
Free cytosolic [Mg2+] can be assessed in vivo by P-31 MRS from the chemical shift of beta-ATP which ...
Free cytosolic [Mg2+] can be assessed in vivo by P-31 MRS from the chemical shift of beta-ATP which ...
Magnesium (Mg) is involved in the regulation of metabolism and in the maintenance of the homeostasis...
Magnesium is well known for its diverse actions within the human body. From a neurological standpoin...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus mag...
none2The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphoru...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
The cytosolic free magnesium concentration can be assessed in vivo in human brain by phosphorus magn...
Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the free c...
Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the free c...
none2Phosphorus magnetic resonance spectroscopy offers a unique opportunity to measure in vivo the f...
Abstract. Phosphorus magnetic resonance spectroscopy offers a unique opportu-nity to measure in vivo...
Our understanding of the physiology and biochemistry of the brain has improved dramatically in the l...
Our understanding of the physiology and biochemistry of the brain has improved dramatically in the l...
Free cytosolic [Mg2+] can be assessed in vivo by P-31 MRS from the chemical shift of beta-ATP which ...
Free cytosolic [Mg2+] can be assessed in vivo by P-31 MRS from the chemical shift of beta-ATP which ...
Magnesium (Mg) is involved in the regulation of metabolism and in the maintenance of the homeostasis...
Magnesium is well known for its diverse actions within the human body. From a neurological standpoin...