2022
DOI: 10.1002/nbm.4790
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Advanced design of MRI inversion pulses for inhomogeneous field conditions by optimal control

Abstract: Non-selective inversion pulses find widespread use in MRI applications, where requirements on them are increasingly demanding. With the use of high and ultrahigh field strength systems, robustness to ΔB 0 and B þ 1 inhomogeneities, while tackling SAR and hardware limitations, has rapidly become important. In this work, we propose a time-optimal control framework for the optimization of ΔB 0 -and1 -robust inversion pulses. Robustness is addressed by means of ensemble formulations, while allowing inclusion of ha… Show more

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Cited by 6 publications
(21 citation statements)
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“…As a reference, T 1 values of an inversion recovery experiment are given. by Graf et al 30 In the formulation of the cost functionals, we incorporated the flexibility to achieve arbitrary excitation tip angles. The application of the optimized RF pulses to dual-angle T 1 mapping led to a significant enhancement in the accuracy of predicting T 1 values in numerical simulations, phantom measurements, and in vivo experiments.…”
Section: Discussionmentioning
confidence: 99%
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“…As a reference, T 1 values of an inversion recovery experiment are given. by Graf et al 30 In the formulation of the cost functionals, we incorporated the flexibility to achieve arbitrary excitation tip angles. The application of the optimized RF pulses to dual-angle T 1 mapping led to a significant enhancement in the accuracy of predicting T 1 values in numerical simulations, phantom measurements, and in vivo experiments.…”
Section: Discussionmentioning
confidence: 99%
“…To improve convergence of the nonconvex optimization problem (7), the state constraints (5) are replaced by an L p penalization with p ℕ, p even, p ! ∞ as we approach the optimizer; refer to the preceding work 30 for details. Then, the optimization problem transforms into min Tp > 0,r,φ…”
Section: Optimal Control Design Of Robust Excitationmentioning
confidence: 99%
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“…In the proposed framework, it is critical for the modified GOIA to be an energy‐efficient base pulse for HAPY. In previous works, GOIA RF pulse modulation 19,20,40‐42 is mostly controlled by the index, N$$ N $$, of the time variable (i.e., Tfalse(tfalse)=tN$$ T(t)={t}^N $$). Besides reducing the peak power, 22,43 the current time‐resampling function (Equation ) provides more degrees of freedom in pulse shapes definition by mapping the linear time steps into fifth‐order polynomial shape.…”
Section: Discussionmentioning
confidence: 99%
“…The OPTIM pulse was designed by means of ensemble-based time optimal control ( Graf et al, 2022 ; Rund et al, 2018 ). Such a design alleviates the IE loss caused by the T2 relaxation during the pulse, and, thus, may achieve high performance at 7T.…”
Section: Methodsmentioning
confidence: 99%