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논문 기본정보

Concurrent recording of RF pulses and gradient fields ndash; comprehensive field monitoring for MRI

논문 개요

기관명, 저널명, ISSN, ISBN 으로 구성된 논문 개요 표입니다.
기관명 NDSL
저널명 NMR in biomedicine
ISSN 0952-3480,1099-1492
ISBN

논문저자 및 소속기관 정보

저자, 소속기관, 출판인, 간행물 번호, 발행연도, 초록, 원문UR, 첨부파일 순으로 구성된 논문저자 및 소속기관 정보표입니다
저자(한글) Brunner, David O.,Dietrich, Benjamin E.,Ccedil,avu #351,o #287,lu, Mustafa,Wilm, Bertram J.,Schmid, Thomas,Gross, Simon,Barmet, Christoph,Pruessmann, Klaas P.
저자(영문)
소속기관
소속기관(영문)
출판인
간행물 번호
발행연도 2016-01-01
초록 Reconstruction of MRI data is based on exact knowledge of all magnetic field dynamics, since the interplay of RF and gradient pulses generates the signal, defines the contrast and forms the basis of resolution in spatial and spectral dimensions. Deviations caused by various sources, such as system imperfections, delays, eddy currents, drifts or externally induced fields, can therefore critically limit the accuracy of MRI examinations. This is true especially at ultra #8208;high fields, because many error terms scale with the main field strength, and higher available SNR renders even smaller errors relevant. Higher baseline field also often requires higher acquisition bandwidths and faster signal encoding, increasing hardware demands and the severity of many types of hardware imperfection. To address field imperfections comprehensively, in this work we propose to expand the concept of magnetic field monitoring to also encompass the recording of RF fields. In this way, all dynamic magnetic fields relevant for spin evolution are covered, including low #8208; to audio #8208;frequency magnetic fields as produced by main magnets, gradients and shim systems, as well as RF pulses generated with single #8208; and multiple #8208;channel transmission systems. The proposed approach permits field measurements concurrently with actual MRI procedures on a strict common time base. The combined measurement is achieved with an array of miniaturized field probes that measure low #8208; to audio #8208;frequency fields via 19 F NMR and simultaneously pick up RF pulses in the MRI system's 1 H transmit band. Field recordings can form the basis of system calibration, retrospective correction of imaging data or closed #8208;loop feedback correction, all of which hold potential to render MRI more robust and relax hardware requirements. The proposed approach is demonstrated for a range of imaging methods performed on a 7 thinsp;T human MRI system, including accelerated multiple #8208;channel RF pulses. Copyright ⓒ 2015 John Wiley Sons, Ltd.
원문URL http://click.ndsl.kr/servlet/OpenAPIDetailView?keyValue=03553784&target=NART&cn=NART76141020
첨부파일

추가정보

과학기술표준분류, ICT 기술분류,DDC 분류,주제어 (키워드) 순으로 구성된 추가정보표입니다
과학기술표준분류
ICT 기술분류
DDC 분류
주제어 (키워드) magnetic field monitoring,trajectory mapping,RF pulse monitoring,smart systems,system control,system correction