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At least 145 records · Page 8Linked to original sources

A video analysis technique for organ dose assessment in pediatric fluoroscopy: applications to voiding cystourethrograms (VCUG).

The time-sequence videotape-analysis methodology, originally developed by Sulieman et al. [Radiol. 178, 653-658 (1991)] for use in tissue dose estimation in adult fluoroscopy exams, has been adapted to the study of the newborn voiding cystourethrogram (VCUG). Individual frames of fluoroscopic and radiographic video were analyzed with respect to unique combinations of field size, field center, projection, tube potential, and mA or mAs, respectively. A modified version of the stylized ORNL newborn model was coupled to the MCNP4C radiation transport code to report organ doses per unit entrance air kerma (free-in-air) for each identified x-ray field. A series of urinary bladder models was additionally developed representing the organ at differing stages of contrast filling. The technique was subsequently applied to two patients, a 3-month male and a 1-month female, examined via a conventional fluoroscopy system used just prior to departmental conversion to digital systems. The effective dose to these patients was estimated as 0.47 mSv and 1.36 mSv, respectively (ratio of 2.9). Corresponding ratios of cumulative fluoroscopy time and entrance air kerma were 2.2 and 1.6, respectively. For the male patient, the mean percent dose contribution from fluoroscopy for all irradiated organs was 71 +/- 12%, while that value for the female patient was 88 +/- 4%.

Computer Simulation↗

Effects of motion blurring in x-ray fluoroscopy.

In conventional fluoroscopy, continuous x-ray exposure blurs moving objects, while in pulsed fluoroscopy, short duration x-ray pulses acquire images without motion blur. Many perception experiments on noisy image sequences are consistent with low-pass temporal filtering by the human visual system, and this is anticipated to cause visual system "blurring" of moving objects. With moving cylinders in spatially white noise, we simulated 30 acq/s (acquisitions per second), continuous fluoroscopy having both x-ray and visual system motion blur. We also simulated pulsed fluoroscopy at 30 acq/s (pulsed-30) having visual system but not x-ray system motion blur. For both continuous and pulsed-30 acquisitions, with increasing velocity, detectability of small cylinders decreased by as much as approximately 50%, while detectability of large cylinders increased and then decreased. Detectability of pulsed-30 was only slightly higher than continuous, indicating that visual system motion blurring dominated x-ray system blurring. For the case of stationary objects, blurring greatly reduced detectability, indicating that last-image-hold of moving objects deteriorates with continuous acquisitions. With no free parameters, a human observer model with an independently measured spatio-temporal contrast sensitivity function accurately described all effects.

Contrast Sensitivity↗

Implementation of region-of-interest fluoroscopy by using the road mapping mode of a real-time digital radiographic unit.

In region-of-interest (ROI) fluoroscopy, a filter is used to greatly attenuate the x-ray beam outside the ROI and digital image processing is used to equalize the displayed brightness. The method is applicable to real-time imaging procedures such as vascular interventions for which a high-quality image is essential only over an ROI (eg, near the catheter tip), whereas the noise-degraded periphery may be acceptable for visualizing landmarks. Use of ROI fluoroscopy can greatly reduce radiation exposure to the patient and to staff while image quality in the ROI is maintained or improved. Exposure reduction factors greater than 5 were demonstrated for coil placement in a canine aneurysm model by using standard digital angiographic equipment operating in the road mapping mode. Potential applications for which future work will determine the clinical acceptability of ROI fluoroscopy include many of the highest-dose interventional procedures, in addition to general gastrointestinal fluoroscopy.

Animals↗

MR imaging- versus conventional X-ray fluoroscopy-guided renal angioplasty in swine: prospective randomized comparison.

PURPOSE: To test the hypothesis that the technical success rates, complication rates, and procedural times for magnetic resonance (MR) imaging-guided percutaneous transluminal angioplasty (PTA) and conventional (x-ray) fluoroscopy-guided PTA for treatment of renal artery stenosis are similar. MATERIALS AND METHODS: The study was animal care and use committee approved. After surgically inducing bilateral renal artery stenosis in 11 swine, the authors performed baseline digital subtraction angiography. They transferred each animal to a 1.5-T MR imaging unit and randomly decided which artery would be treated with MR-guided PTA. With MR imaging guidance, angioplastic devices were tracked by using active and passive techniques. Vascular depiction was achieved by using catheter-directed MR angiography. Stenotic vessels were dilated by using 5-6-mm-diameter balloon catheters. PTA was then performed in the contralateral artery by using conventional fluoroscopy-guided techniques. With the intention to treat, the authors compared the technical success (residual stenosis < 50%) rates, complication rates, and procedural times for each guidance method. They compared technical successes and complications by using the McNemar test and procedural times by using a paired t test, with P < .05 indicating a significant difference. RESULTS: The authors successfully dilated nine (82%) of 11 renal arteries with MR guidance and all 11 arteries (100%) with conventional fluoroscopic guidance. The difference was not significant (P = .5). Complications occurred in three (27%) arteries with MR guidance and in one (9%) artery with fluoroscopic guidance, with no significant differences (P = .5). The mean MR-guided PTA procedural time was 46 minutes longer than the fluoroscopy-guided PTA procedural time; this difference was significant (P = .01). CONCLUSION: In a small cohort of swine, the authors did not observe a significant difference between MR imaging- and conventional fluoroscopy-guided renal artery PTA in terms of success and complication rates. However, no evidence of similarity between the techniques should be assumed. Procedural times differed significantly.

Angioplasty↗

Benefits and safety of CT fluoroscopy in interventional radiologic procedures.

PURPOSE: To determine the benefits and safety of computed tomographic (CT) fluoroscopy when compared with conventional CT for the guidance of interventional radiologic procedures. MATERIALS AND METHODS: Data on 203 consecutive percutaneous interventional procedures performed with use of CT fluoroscopic guidance and 99 consecutive procedures with conventional CT guidance were obtained from a questionnaire completed by the radiologists and CT technologists who performed the procedures. The questionnaire specifically addressed radiation dose measurements to patients and personnel, total procedure time, total CT fluoroscopy time, mode of CT fluoroscopic guidance (continuous versus intermittent), success of procedure, major complications, type of procedure (biopsy, aspiration, or drainage), site of procedure, and level of operator experience. RESULTS: The median calculated patient absorbed dose per procedure and the median procedure time with CT fluoroscopy were 94% less and 32% less, respectively, than those measurements with conventional CT scanning (P <.05). An intermittent mode of image acquisition was used in 97% of the 203 cases. This resulted in personnel radiation dosimetric readings below measurable levels in all cases. CONCLUSION: As implemented at the authors' institution, use of CT fluoroscopy for the guidance of interventional radiologic procedures markedly decreased patient radiation dose and total procedure time compared with use of conventional CT guidance.

Adolescent↗

Frameless stereotactic navigation in transsphenoidal surgery: comparison with fluoroscopy.

Surgical navigation systems (frameless stereotaxy) have been used in addition to or instead of fluoroscopy during transsphenoidal surgery. This study compares the intraoperative localization by an optical tracking system (Elekta Viewscope) with fluoroscopy. Viewscope and fluoroscope sagittal images were compared by the establishment of a Cartesian coordinate system based on anatomical landmarks and by the spatial localization of surgically relevant points for 20 patients. The Viewscope was found to have a total deviation of 3.0 +/- 0.6 mm (mean +/- SD) compared to fluoroscopy (p < 0.01). Much of the error resulted from the registration process, which according to the Viewscope software had an expected error of 3.1 +/- 0.8 mm for this series of patients, and from the probe-to-system correlation (error of 1.0 +/- 0.3 mm). Although frameless stereotactic systems give the surgeon useful trajectory data with three-dimensional visualizations, they remain somewhat inaccurate. The multiplanar abilities of the Viewscope provide an additional but not mandatory advantage to the simplicity and accuracy of fluoroscopy during this type of surgery.

Adolescent↗

Reliability of three-dimensional fluoroscopy for detecting pedicle screw violations in the thoracic and lumbar spine.

OBJECTIVE: Thoracic and lumbar pedicle screws have become popular because of their biomechanical superiority over other methods of spinal fixation. However, the safety and efficacy of transpedicular screws depend on their proper placement. Recent advances in imaging have resulted in the ability to acquire three-dimensional (3-D) axial images of the spine during surgery, and this study was undertaken to assess the reliability of this technology to detect pedicle violations. METHODS: Pedicle screws were placed in six human cadaver spines from T1 to S1 using standard techniques. Intentional pedicle violations were created in 74 of 216 pedicles, and violations were graded on a four-point scale (range, 0-3). Radiographic images were then obtained using a conventional spiral computed tomographic scanner and the Siremobil Iso-C 3D (Siemens Medical Solutions, Erlangen, Germany) 3-D fluoroscopy unit. An independent neuroradiologist then graded pedicle violations as ascertained by the two imaging modalities. RESULTS: Using direct inspection of the pedicles as the "gold standard," the overall sensitivity and specificity for detecting pedicle violations were 0.716 and 0.789, respectively, with 3-D fluoroscopy. The overall sensitivity and specificity for detecting pedicle violations were 0.608 and 0.937, respectively, with conventional computed tomography. All Grade 2 pedicle violations were detected in the thoracic spine by both modalities, and all Grade 3 violations were detected by both modalities. CONCLUSION: Axial images obtained with 3-D fluoroscopy demonstrate a higher sensitivity but lower specificity than conventional computed tomographic scanning for assessing pedicle violations. By providing real-time intraoperative imaging, 3-D fluoroscopy may enhance the safety of thoracic transpedicular instrumentation.

Bone Screws↗

Assessment of target recovery after TV camera saturation in X-ray fluoroscopy using a personal computer with frame-grabber.

X-ray fluoroscopy images were digitized with a personal computer and frame-grabber system. This system was used to measure the recovery from saturation of the target of a TV camera by calculating the time at which contrast falls to 50% (C 1/2). This measurement was performed on images of: (a) a rotating lead disk with a slit at its side and (b) a square hole in a thick lead sheet. These images represented the moving (MOTR) and stationary (SOTR) object target recovery. The SOTR method produced much higher C 1/2 values in two mobile fluoroscopy systems used for cardiac catheterizations where waveforms permitted the application of both methods. The SOTR method was also applied to three additional fluoroscopy systems. It was found that, contrary to expectations, C 1/2 increased with exposure rate in all five machines. Target recovery characteristics of the machines tested, represented by the gradient of C 1/2 against exposure rate, were found to increase with inherent noise level measured in the vidicon camera target. The set-up used here for measuring target recovery proved to work quickly and reproducibly for both SOTR and MOTR. If initial values are calculated then the condition of any fluoroscopy system may easily be followed irrespective of the method used.

Fluoroscopy↗

CT fluoroscopy-assisted needle puncture and ethanol injection for hepatocellular carcinoma: a preliminary study.

OBJECTIVE: We assessed the usefulness of real-time CT fluoroscopy for needle guidance and evaluated the clinical usefulness of a unified CT fluoroscopy and angiography system in the treatment of hepatocellular carcinoma. SUBJECTS AND METHODS: A single-session percutaneous ethanol injection was performed with CT fluoroscopy guidance and monitoring for 15 hepatocellular carcinomas with an average size of 2.5 cm (range, 0.7-4.7 cm) in 10 consecutive patients. Of these, seven lesions were not seen on sonography. To mark the lesion for puncture, we performed CT arteriography or arterial injection of iodized oil. A puncture guide was applied to 12 lesions. RESULTS: The average depth from the skin's surface to the lesion was 9.3 cm (range, 4.5-11.5 cm), and the puncture route was transthoracic in five lesions and transabdominal in 13. The overall success rate in puncturing the lesions was 94.4% (17/18 sessions). The average number of punctures was 3.3, and it significantly decreased after introduction of a puncture guide compared with freehand puncture (p < .01). The average amount of injected ethanol was 12.7 ml (range, 4-27 ml). The ratio of injected ethanol dose to calculated ethanol dose was 0.6. Local recurrence occurred in four (26.7%) of 15 lesions after an average of 5 months. CONCLUSION: Using CT fluoroscopy for guidance of the needle and for monitoring ethanol infusion in the target lesion, we have found single-session percutaneous ethanol injection to be possible for hepatocellular carcinomas smaller than 5 cm or not revealed by sonography. The puncture guidance equipment was helpful for accurate insertion of the needle into the lesion, allowing a minimum number of punctures and minimal radiation exposure.

Aged↗

Breast cancer following multiple chest fluoroscopies among tuberculosis patients. A case-control study in Denmark.

A case-control study of breast cancer among tuberculosis (TB) patients in Denmark (1937-1954) was conducted to provide additional information on the radiation risk associated with low-dose chest fluoroscopy exposures. Records of 46013 TB patients were linked to the Danish Cancer Registry and 125 subsequent female breast cancers identified. Medical records were located for 89 (71%) of these women who developed breast cancer and on 390 controls, who were individually matched to cases on age and calendar year of TB diagnosis, and survival. Common risk factors for breast cancer such as nulliparity (relative risk (RR) = 2.5) and high relative weight (RR = 2.6) were also identified in this population of TB patients. However no risk was evident with exposure to any type of fluoroscopy (RR = 0.6; 95% CI = 0.2-1.4), or to fluoroscopies performed to monitor lung collapse therapy (RR = 0.8; 95% CI = 0.5-1.4). Although based on only 7 breast cancers, there was a suggestion of an increased risk among women who received greater than 1 Gy to their breasts (RR = 1.6; 95% CI = 0.4-6.3). Because of the infrequent use of fluoroscopy in our study, the breast doses were too low, 0.27 Gy on average, to expect to detect a significant elevation in breast cancer risk overall. The findings do suggest, however, that current estimates of breast cancer risk following radiation are not greater than presently accepted, and that a relative excess of 40 per cent can be excluded with reasonable confidence following breast doses on the order of 0.3 Gy.

Breast Neoplasms↗

Navigated percutaneous pelvic sacroiliac screw fixation: experimental comparison of accuracy between fluoroscopy and Iso-C3D navigation.

Percutaneous sacroiliac screw fixation is technically demanding and can result in complications mainly related to imaging problems. Furthermore, the conventional technique performed using fluoroscopic control is associated with a long radiation exposure. The purpose of this study was to evaluate the accuracy of two navigation technologies used in traumatology; fluoroscopy and Iso-C3D navigation. A total of 40 screws were placed (20 with Iso-C3D, 20 with 2D fluoroscopy) at levels S1 and S2. With both technologies, all S1 screws could be placed correctly, but four (10%) incorrect placements were seen at S2 with fluoroscopy navigation. With all Iso-C3D navigated drillings, no perforation was seen. Iso-C3D navigation therefore proved superior to 2D fluoroscopy navigation for sacroiliac screw fixation in an experimental set-up designed to assess accuracy.

Bone Screws↗

Endoscopic dilation of esophageal stricture without fluoroscopy is safe and effective.

AIM: Endoscopic dilation of esophageal strictures is a commonly performed procedure in the management of dysphagia. The procedure is usually done with fluoroscopic guidance. The aim of this study was to assess the use of Tracer guide wire in conjunction with Savary-Gilliard dilators in the dilation of tight esophageal strictures without fluoroscopy. METHODS: Fifty-five patients with significant dysphagia from strictures due to a variety of causes were dilated endoscopically. The procedure consisted of two parts. First, a guidewire was passed using endoscopic guidance, and then, dilation was performed without fluoroscopy. A modified Tracer wire was employed and was particularly effective in negotiating very tight esophageal strictures, in which the lumen is less than 6 mm. In general, the "Rule of Three" and "2-3 sessions in 10 days, maximum dilation up to 42 French" rules were followed. 401 dilations in a total of 55 patients(malignant strictures 30, benign 25) in 177 sessions were carried out. RESULTS: The guide wire placement and Savary-Gilliard dilation were successfully performed without fluoroscopy, and improvement of dysphagia was achieved in all patients. Esophageal plastic stent (out diameter 40 French) was placed in five patients with malignant stricture-three of them with tracheo-esophageal fistula. CONCLUSION: Dilation using Tracer guide wire without fluoroscopy is safe and effective in treatment of even very tight esophageal strictures.

Adolescent↗

Can portable bedside fluoroscopy replace standard, postreduction radiographs in the management of pediatric fractures?

OBJECTIVE: To determine the accuracy of portable bedside fluoroscopy in documenting postreduction fracture alignment in the pediatric emergency department (ED). DESIGN/SETTING: Prospective trial in an urban pediatric ED. PARTICIPANTS: Convenience sample of 80 pediatric patients requiring ED reduction of isolated long bone fractures. METHODS: Patients who underwent closed fracture reduction using portable fluoroscopic guidance (FluoroScan) in the ED were enrolled in the study. Postreduction images were obtained using both bedside fluoroscopy and conventional radiographs. A pediatric orthopedic subspecialist, blinded to clinical outcome, reviewed the fluoroscopic and radiographic images for adequacy of alignment and rated the utility of conventional radiography for fracture management. RESULTS: The patients were 2.5 to 16 years of age (mean 8.3). Distal radial and radioulnar fractures comprised 96% (76/80) of cases. Sixty-three percent of the fractures were displaced, and the mean angulation of the primary fracture site was 24 degrees . Fluoroscopy was found to be 100% sensitive (75/75 cases) and 100% specific (5/5 cases) in predicting postreduction fracture position when compared to conventional radiographs. Intra-rater observer agreement on the necessity of conventional postreduction radiographs was 0.92 (95% CI 0.82-1.00) using the kappa coefficient. In no case did postreduction radiographs alter acute fracture management. CONCLUSIONS: Bedside fluoroscopy with printed fluoroscopic images are highly reliable in evaluating fracture reduction and can replace conventional radiography in documenting adequate distal forearm fracture reduction when there is no intraarticular involvement.

Adolescent↗

Percutaneous ethanol injection under CT fluoroscopy for hypervascular hepatocellular carcinoma following transcatheter arterial embolization.

BACKGROUND/AIMS: The present study was conducted to accurately monitor the pattern of ethanol distribution during percutaneous ethanol injection by computed tomography fluoroscopy and to examine the relationship between the distribution pattern and therapeutic effect. METHODOLOGY: Twenty-five hypervascular hepatocellular carcinomas were studied. Each was treated with transcatheter arterial embolization. However, as residual parts were detected, percutaneous ethanol injection under real-time computed tomography fluoroscopy was performed. For analysis, ethanol distribution and local recurrence rate were compared. RESULTS: Ethanol distribution in a tumor was classifiable into 3 patterns. In pattern 1, ethanol solution was distributed spherically. In pattern 2, ethanol solution spread forming linear boundaries indicating interruption of distribution by septa. In pattern 3, ethanol spread circumferentially only along the periphery sparing the central part of a tumor. The 6-month recurrence rate of the tumors in which ethanol solution was distributed to the whole viable part was 25% (pattern 1), 100% (pattern 2) and 0% (pattern 3), respectively. CONCLUSIONS: In the tumors showing distribution pattern 3 by computed tomography fluoroscopy, a combination therapy of transcatheter arterial embolization and percutaneous ethanol injection was more effective than in other patterns. Computed tomography fluoroscopy was useful for accurate monitoring and predicting the therapeutic effect of percutaneous ethanol injection.

Aged↗

Intraoperative evaluation of implants in anterior cervical spine surgery by three-dimensional fluoroscopy.

OBJECTIVE: Accurate radiographic documentation of the proper placement of cages, plates, and screws following cervical spine surgery significantly impacts clinical outcome. Postoperative computed tomography scans clearly show that the position of implants is sometimes far from ideal. The morbidity of anterior cervical disc surgery is well documented, but the incidence and influence of the misplacement of interbody spacers, plates, and screws are underestimated. We used isocentered fluoroscopy with three-dimensional image reconstruction intraoperatively to evaluate the extent of bony decompression and position of implants before wound closure. METHODS: From October 2003 through April 2004, 27 patients had anterior cervical procedures: 22 one-level and 5 two-level operations. Herniated cervical discs were diagnosed in 21 individuals, whereas 6 exhibited spondylosis. A radiolucent operating table made of carbon fibers was used in all patients. Before wound closure, intraoperative three-dimensional fluoroscopy was performed to evaluate the location of cervical implants and anterior bone resection. RESULTS: The entire scanning procedure required 5 minutes; the actual scanning time was only 120 seconds. In all patients, we were able to adequately evaluate the placement of cage, plates, and screws. Utilization of intraoperative three-dimensional fluoroscopy revealed that two cages were malpositioned and required revision before wound closure. CONCLUSIONS: Intraoperative three-dimensional fluoroscopy is a valuable tool for the intraoperative imaging of bony decompression and implants in anterior cervical spine surgery. The technique is safe and reliable and should help us to avoid incomplete decompression or misplacement of implants and therefore improve long-term functional outcomes in the future.

Adult↗

Radiation exposure from fluoroscopy during orthopedic surgical procedures.

The use of fluoroscopy has enabled orthopedic surgeons to become technically more proficient. In addition, these surgical procedures tend to have less associated patient morbidity by decreasing operative time and minimizing the area of the operative field. The trade-off, however, may be an increased risk of radiation exposure to the surgeon on an annual or lifetime basis. The current study was designed to determine the amount of radiation received by the primary surgeon and the first assistant during selected surgical procedures involving the use of fluoroscopy. Five body sites exposed to radiation were monitored for dosage. The results of this study indicate that with appropriate usage, (1) radiation exposure from fluoroscopy is relatively low; (2) the surgeon's dominant hand receives the most exposure per case; and (3) proper maintenance and calibration of fluoroscopic machines are important factors in reducing exposure risks. Therefore, with proper precautions, the use of fluoroscopy in orthopedic procedures can remain a safe practice.

Fluoroscopy↗

Computerized fluoroscopy: new technique for the noninvasive evaluation of the aorta, coronary artery bypass grafts, and left ventricular function.

A computerized fluoroscopy system has been developed on the basis of real-time digital processing of x-ray transmission data from traditional image-intensified fluoroscopy equipment. High-quality visualization of any part of the arterial system is obtained following intravenous injection of 0.5 to 0.75 ml/kg of iodinated contrast materials. This report describes the use of this technique to evaluate the aortic arch, left ventricular function, and coronary artery bypass graft patency. Fifty intravenous studies were performed in 25 patients. Among 20 patients with coronary artery bypass grafts, computerized fluoroscopy correctly identified 11 of 15 patent grafts and 11 of 11 occluded grafts as confirmed by standard coronary arteriography in 11 of these patients. Unlike computerized tomography, our technique gives a longitudinal view of the bypass graft much like direct coronary angiography. Aortic arch studies included demonstration of a right aortic arch with a small left subclavian artery, a coarctation, and a normal aortic arch in a trauma patient with a wide mediastinum. Segmental wall motion abnormalities were clearly identified by a modification of the technique which produces a negative outline on the ventriculogram in dyskinetic segments. Ejection fractions may be calculated by determining the amount of iodine in the ventricle in systole and diastole. This technique may also be used to evaluate carotid disease and peripheral vascular disease in patients undergoing coronary artery bypass procedures. Computerized fluoroscopy, therefore, allows evaluation of the entire cardiovascular system by the relatively noninvasive technique of intravenous angiography.

Angiography↗

A renewed role for fluoroscopy in the evaluation of cardiac disease.

The advent of surgical therapy for ischemic heart disease and the prospects for modification of risk factors for coronary artery disease have made the detection of coronary artery disease in asymptomatic patients more important. Cardiac fluoroscopy is an inexpensive and relatively efficacious screening method for coronary artery disease. The combination of fluoroscopy and exercise stress testing is particularly promising. Cardiac fluoroscopy also retains a place in the diagnosis of valvular heart disease. For all of the reasons listed above, we strongly recommend that cardiac fluoroscopy be performed as part of the initial evaluation of any patient suspected of having heart disease. Furthermore, when coronary calcification is discovered incidentally by the radiologist, the patient and his physician should be alerted to its presence as it represents a significant risk factor for the subsequent development of symptomatic coronary artery disease.

Aortic Valve↗