Search PubMedSearch

PubMed · 9534720

MRI developments in perspective.

Abstract

Following Paul Lauterbur's seminal 1973 paper in Nature, considerable work was needed to overcome a number of physical, engineering and technical problems before the new technique of magnetic resonance imaging (MRI) could be applied clinically. Much of that pioneering work was done in the UK. Since the first head and whole-body images were obtained in the late 1970s, MRI has become a widely used clinical imaging modality capable of yielding tomographic images of excellent spatial resolution and tissue contrast. This review outlines the historical development of MRI in the context both of the technical problems which had to be overcome, and of the clinical uses of MRI. Current areas of research, such as the use of MRI to map brain function, the measurement of physiological parameters such as tissue perfusion, and the use of open-access real-time MRI to guide interventional procedures, are briefly discussed.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T W Redpath. 1997. MRI developments in perspective.. https://doi.org/10.1259/bjr.1997.0010

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Efficacy of cervical-smear collection devices: a systematic review and meta-analysis.

BACKGROUND: Few randomised controlled trials have sufficient power to show clear advantages of different designs of cervical-smear collection devices. We studied by systematic review whether the design of cervical-smear devices affects rates of inadequate smears and detection of disease and whether the presence of endocervical cells in the smear affects detection of disease. METHODS: We sought relevant randomised controlled trials by computer literature review by MEDLINE backed up by a manual search of 16 journals. Each trial was classified according to methodological quality criteria. Odds ratios were calculated where data allowed. FINDINGS: 34 randomised controlled trials investigating cervical Papanicolaou smear collection devices were identified. All 34 trials compared the ability of devices to collect endocervical cells, and 19 compared the ability of devices to detect dyskaryosis. Meta-analyses showed that compared with other collection devices, the Ayre's spatula is an ineffective device for collecting endocervical cells (for example, odds ratio for comparison of extended-tip spatulas vs Ayre's spatula 2.25 [95% CI 2.06-2.44]) and also gives a lower yield of dyskaryosis (odds ratio for comparison of extended-tip spatulas vs Ayre's spatula 1.21 [1.20-1.33]). Devices that effectively collect endocervical cells also detect a higher proportion of abnormal cytology than those that do not. INTERPRETATION: The widely used Ayre's spatula is the least effective device for cervical sampling and should be superseded by extended-tip spatulas for primary screening and investigation of women before and after treatment for cervical intraepithelial neoplasia. The presence of endocervical cells is a valid and convenient surrogate for the ability to detect dyskaryosis.

Equipment Design

Abutment region dosimetry for serial tomotherapy.

PURPOSE: A commercial intensity modulated radiation therapy system (Corvus, NOMOS Corp.) is presently used in our clinic to generate optimized dose distributions delivered using a proprietary dynamic multileaf collimator (DMLC) (MIMiC) composed of 20 opposed leaf pairs. On our accelerator (Clinac 600C/D, Varian Associates, Inc.) each MIMiC leaf projects to either 1.00 x 0.84 or 1.00 x 1.70 cm2 (depending on the treatment plan and termed 1 cm or 2 cm mode, respectively). The MIMiC is used to deliver serial (axial) tomotherapy treatment plans, in which the beam is delivered to a nearly cylindrical volume as the DMLC is rotated about the patient. For longer targets, the patient is moved (indexed) between treatments a distance corresponding to the projected leaf width. The treatment relies on precise indexing and a method was developed to measure the precision of indexing devices. A treatment planning study of the dosimetric effects of incorrect patient indexing and concluded that a dose heterogeneity of 10% mm(-1) resulted. Because the results may be sensitive to the dose model accuracy, we conducted a measurement-based investigation of the consequences of incorrect indexing using our accelerator. Although the indexing provides an accurate field abutment along the isocenter, due to beam divergence, hot and cold spots will be produced below and above isocenter, respectively, when less than 300 degree arcs were used. A preliminary study recently determined that for a 290 degree rotation in 1 cm mode, 15% cold and 7% hot spots were delivered to 7 cm above and below isocenter, respectively. This study completes the earlier work by investigating the dose heterogeneity as a function of position relative to the axis of rotation, arc length, and leaf width. The influence of random daily patient positioning errors is also investigated. METHODS AND MATERIALS: Treatment plans were generated using 8.0 cm diameter cylindrical target volumes within a homogeneous rectilinear film phantom. The plans included both 1 and 2 cm mode, optimized for 300 degrees, 240 degrees, and 180 degrees gantry rotations. Coronal-oriented films were irradiated throughout the target volumes and scanned using a laser film digitizer. The central target irradiated in 1 cm mode was also used to investigate the effects of incorrect couch indexing. RESULTS: The dose error as a function of couch index error was 25% mm(-1), significantly greater than previously reported. The clinically provided indexing system yielded 0.10 mm indexing precision. The intrinsic dose distributions indicated that more heterogeneous dose distributions resulted from the use of smaller gantry angle ranges and larger leaf projections. Using 300 degrees gantry angle and 1 cm mode yielded 7% hot and 15% cold spots 7 cm below and above isocenter, respectively. When a 180 degree gantry angle was used, the values changed to 22% hot and 27% cold spots for the same locations. The heterogeneities for the 2 cm mode were 70% greater than the corresponding 1 cm values. CONCLUSIONS: While serial tomotherapy is used to deliver highly conformal dose distributions, significant dosimetric factors must be considered before treatment. The patient must be immobilized during treatment to avoid dose heterogeneities caused by incorrect indexing due to patient movement. Even under ideal conditions, beam divergence can cause significant abutment-region dose heterogeneities. The use of larger gantry angle ranges, smaller leaf widths, and appropriate locations of the gantry rotation axis can minimize these effects.

Equipment Design