Literature DB >> 6227934

Cardiac imaging using gated magnetic resonance.

P Lanzer, E H Botvinick, N B Schiller, L E Crooks, M Arakawa, L Kaufman, P L Davis, R Herfkens, M J Lipton, C B Higgins.   

Abstract

To overcome the limitations of magnetic resonance (MR) cardiac imaging using nongated data acquisition, three methods for acquiring a gating signal, which could be applied in the presence of a magnetic field, were tested: an air-filled plethysmograph, a laser-Doppler capillary perfusion flowmeter, and an electrocardiographic gating device. The gating signal was used for timing of MR imaging sequences (IS). Application of each gating method yielded significant improvements in structural MR image resolution of the beating heart, although with both plethysmography and laser-Doppler velocimetry it was difficult to obtain cardiac images from the early portion of the cardiac cycle due to an intrinsic delay between the ECG R wave and peripheral detection of the gating signal. Variations in the temporal relationship between the R wave and plethysmographic and laser-Doppler signals produced inconsistencies in the timing of IS. Since the ECG signal is virtually free of these problems, the preferable gating technique is IS synchronization with an electrocardiogram. The gated images acquired with this method provide sharp definition of internal cardiac morphology and can be temporarily referenced to end diastole and end systole or intermediate points.

Mesh:

Year:  1984        PMID: 6227934     DOI: 10.1148/radiology.150.1.6227934

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  24 in total

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3.  Image-guided optimization of the ECG trace in cardiac MRI.

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4.  Cardiac-Gated En Face Doppler Measurement of Retinal Blood Flow Using Swept-Source Optical Coherence Tomography at 100,000 Axial Scans per Second.

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5.  Magnetic resonance imaging of the hila and mediastinum.

Authors:  W R Webb
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Review 6.  Feasibility of developing a method of imaging neuronal activity in the human brain: a theoretical review.

Authors:  D S Holder
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8.  Nuclear magnetic resonance imaging of the heart.

Authors:  R E Steiner
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9.  Magnetic resonance imaging of aneurysms and thrombi.

Authors:  E Zeitler; W Kaiser; G Schuierer; M Wojtowycz; K Kunigk; A Oppelt; E Stetter; H von Wulfen; D Raithel
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10.  Acoustic cardiac triggering: a practical solution for synchronization and gating of cardiovascular magnetic resonance at 7 Tesla.

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Journal:  J Cardiovasc Magn Reson       Date:  2010-11-16       Impact factor: 5.364

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