Animal models suggest that acetylcarnitine production is essential for maintaining metabolic flexibility and insulin sensitivity. Because methods to detect acetylcarnitine involve biopsy of the tissue of noninvasive alternatives to measure acetylcarnitine concentrations could facilitate our understanding of its physiological relevance in humans. investigated the use of long-echo time (TE) proton magnetic resonance spectroscopy (1H-MRS) to measure skeletal muscle acetylcarnitine on a clinical 3T scanner. We applied long-TE 1H-MRS to measure endurance-trained athletes, lean and obese sedentary subjects, and type diabetes mellitus (T2DM) patients to cover a wide spectrum in insulin sensitivity. A long-TE 1H-MRS protocol was implemented for suc...
Magnetic resonance spectroscopy (MRS) of skeletal muscle has been successfully applied by physiologi...
Intramyocellular acetylcarnitine (IMAC) is involved in exercise-related fuel metabolism. It is not k...
The incidence of Type 2 diabetes is on the rise. This disease is characterised by the body not respo...
Animal models suggest that acetylcarnitine production is essential for maintaining metabolic flexibi...
PURPOSE: Acetylcarnitine formation is suggested to be crucial in sustaining metabolic flexibility an...
The incidence of Type 2 diabetes is on the rise. This disease is characterised by the body not respo...
In this chapter, techniques and application of multinuclear (1H, 13C, and 31P) in vivo magnetic reso...
Using in vivo proton magnetic resonance spectroscopy (1H-MRS), a new peak resonating at 2.13 ppm pos...
OBJECTIVE — Intramyocellular acetylcarnitine (IMAC) is involved in exercise-related fuel metabolism....
AbstractCarnitine is well recognized as a key regulator of long-chain fatty acyl group translocation...
Magnetic resonance spectroscopy (MRS) and spectroscopic imaging (MRSI) provide metabolic information...
Magnetic resonance spectroscopy (MRS) is a noninvasive technique that enables to follow metabolic pr...
BACKGROUND: At the onset of exercise, the speed at which PCr decreases towards a new steady state (P...
Acetylcarnitine plays a pivotal role in the regulation of mitochondrial and cellular lipid trafficki...
Magnetic resonance spectroscopy (MRS) of skeletal muscle has been successfully applied by physiologi...
Intramyocellular acetylcarnitine (IMAC) is involved in exercise-related fuel metabolism. It is not k...
The incidence of Type 2 diabetes is on the rise. This disease is characterised by the body not respo...
Animal models suggest that acetylcarnitine production is essential for maintaining metabolic flexibi...
PURPOSE: Acetylcarnitine formation is suggested to be crucial in sustaining metabolic flexibility an...
The incidence of Type 2 diabetes is on the rise. This disease is characterised by the body not respo...
In this chapter, techniques and application of multinuclear (1H, 13C, and 31P) in vivo magnetic reso...
Using in vivo proton magnetic resonance spectroscopy (1H-MRS), a new peak resonating at 2.13 ppm pos...
OBJECTIVE — Intramyocellular acetylcarnitine (IMAC) is involved in exercise-related fuel metabolism....
AbstractCarnitine is well recognized as a key regulator of long-chain fatty acyl group translocation...
Magnetic resonance spectroscopy (MRS) and spectroscopic imaging (MRSI) provide metabolic information...
Magnetic resonance spectroscopy (MRS) is a noninvasive technique that enables to follow metabolic pr...
BACKGROUND: At the onset of exercise, the speed at which PCr decreases towards a new steady state (P...
Acetylcarnitine plays a pivotal role in the regulation of mitochondrial and cellular lipid trafficki...
Magnetic resonance spectroscopy (MRS) of skeletal muscle has been successfully applied by physiologi...
Intramyocellular acetylcarnitine (IMAC) is involved in exercise-related fuel metabolism. It is not k...
The incidence of Type 2 diabetes is on the rise. This disease is characterised by the body not respo...