A Ventilator for Magnetic Resonance Imaging
Autor: | Laurence W. Hedlund, Rashid Nassar, Eric L. Effmann, Robert J. Herfkens, Peter Vock, Charles E. Putman, Jerry Dahlke, R. Kubek, Joel Deitz |
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Rok vydání: | 1986 |
Předmět: |
Thorax
Scanner medicine.medical_specialty Magnetic Resonance Spectroscopy Image quality Movement Dogs Abdomen Tidal Volume medicine Animals Radiology Nuclear Medicine and imaging Tidal volume Physics Ventilators Mechanical medicine.diagnostic_test Pulmonary Gas Exchange Respiration Magnetic resonance imaging Pulse sequence General Medicine Spin echo Breathing Radiology Biomedical engineering |
Zdroj: | Investigative Radiology. 21:18-23 |
ISSN: | 0020-9996 |
Popis: | Breathing motion severely degrades the quality of magnetic resonance images (MRI) of the thorax and upper abdomen and interferes with the acquisition of quantitative data. To minimize these motion effects, we built an MRI compatible ventilator for use in animal studies. Solid state circuitry is used for controlling ventilation parameters. The ventilator can be triggered internally at frequencies of 0.1 to 30 Hz or it can be triggered externally such as by the MRI pulse sequence. When triggered by the scanner, ventilation is synchronized to occur between image data acquisitions. Thus, image data are obtained when there is no breathing motion and at a minimum lung volume when hydrogen density is maximum. Since the ventilator can be adjusted to operate at virtually any frequency from conventional to high frequency, ventilation can be synchronized to all commonly used repetition times (100 ms to 2000 ms or more; 600 to 30 breaths/min). Scan synchronous ventilation eliminates breathing motion artifacts from most imaging sequences (single and multiple spin echo and inversion recovery). Best image quality is obtained when scan synchronous ventilation is combined with cardiac gating. These methods are also useful for quantitative research studies of thoracic and abdominal organs. |
Databáze: | OpenAIRE |
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