Conventional magnetic resonance methods that provide interior temperature profiles, which find use in clinical applications such as hyperthermic therapy, can develop inaccuracies caused by the inherently inhomogeneous magnetic field within tissues or by probe dynamics, and work poorly in important applications such as fatty tissues. We present a magnetic resonance method that is suitable for imaging temperature in a wide range of environments. It uses the inherently sharp resonances of intermolecular zero-quantum coherences, in this case flipping up a water spin while flipping down a nearby fat spin. We show that this method can rapidly and accurately assign temperatures in vivo on an absolute scale
Accurate time‐resolved temperature mapping is crucial for the safe use of hyperthermia‐mediated drug...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...
Purpose: A review of MRI temperature imaging methods based on intermolecular multiple quantum cohere...
The development of accurate and non-invasive temperature imaging techniques has a wide variety of ap...
The development of accurate and non-invasive temperature imaging techniques has a wide variety of ap...
The ability to measure tissue temperature non invasively and in vivo is critical to a number of appl...
Purpose: Because the resonance frequency of water–fat intermolecular zero-quantum coherences (iZQCs)...
The Larmor frequency of water protons has reliably linear temperature dependence. Since this frequen...
Background: Optimal control of minimally invasive interventions by hyperthermia requires dynamic tem...
The Larmor frequency of water protons has reliably linear temperature dependence. Since this frequen...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
Accurate time‐resolved temperature mapping is crucial for the safe use of hyperthermia‐mediated drug...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...
Purpose: A review of MRI temperature imaging methods based on intermolecular multiple quantum cohere...
The development of accurate and non-invasive temperature imaging techniques has a wide variety of ap...
The development of accurate and non-invasive temperature imaging techniques has a wide variety of ap...
The ability to measure tissue temperature non invasively and in vivo is critical to a number of appl...
Purpose: Because the resonance frequency of water–fat intermolecular zero-quantum coherences (iZQCs)...
The Larmor frequency of water protons has reliably linear temperature dependence. Since this frequen...
Background: Optimal control of minimally invasive interventions by hyperthermia requires dynamic tem...
The Larmor frequency of water protons has reliably linear temperature dependence. Since this frequen...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
PurposeA novel highly accurate method for MR thermometry, effective at high field, is introduced and...
Accurate time‐resolved temperature mapping is crucial for the safe use of hyperthermia‐mediated drug...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...
Different Magnetic Resonance Imaging (MRI) techniques for temperature measurement of particles under...