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At least 19 recordsLinked to original sources

[A possibility to predict the severity of individual damage following the exposure to supralethal radiation dosage. Prediction by early radiation response ].

The experiments on dogs and monkeys have shown that the severity of radiation sickness following the exposure to supralethal radiation doses can be predicted by early response of an individual. For such prediction, the most informative criteria include general severity of clinical manifestations during primary radiation response and evaluated within a few post-damage hours, the degree of tension in cardiac rhythm control, the cortisol level, the endocrine status index.

Animals↗

[Digital roentgen analysis as a tool for kinematic studies of the shoulder--a study of radiation dosage].

The radiation exposure during biomechanical investigation of the shoulder joint done with a digital radiography system (Polytron 1000 VR - Siemens) was measured experimentally. Total radiation dose and surface dose were determined by phantom measurements. The radiation exposure per image is about 1/6 to 1/7 of that of a conventional study. The digital radiography system used is thus suitable for kinesiologic studies of large joints in healthy volunteers.

Humans↗

Radiation dosage during AO locking femoral nailing.

Radiation dosages to both the patient and the surgeon were measured during 10 consecutive AO locking nail procedures. The total screening time for each procedure averaged 12 min 8 s; the average screening time for distal locking was 6 min 52 s. Radiation dosages to surgeons' hands, thyroid and gonads and to the patients were well within permitted safety levels.

Bone Nails↗

[Influence of reduction of radiation dosage on the incidence of radiation-induced pneumonitis, pulmonary fibrosis and pericarditis after mediastinal irradiation in the treatment of lymphogranulomatosis].

BACKGROUND: The amount of radiation dose applied in the treatment of Hodgkin's disease is associated with the incidence of complications including radiation-induced pneumonitis, lung fibrosis and pericarditis. Therefore, from the beginning of 1986, we have started to apply a radiation therapy approach with reduced doses in order to minimize complications while maintaining effective treatment. PATIENTS AND METHOD: From 1983 through 1992 141 patients suffering from Hodgkin's disease were included in the present study. All of them were treated by radiation of mediastinum. In 126 cases polychemotherapy was applied before radiation. From 1986 we used a reduced radiation dose in cases that were treated by radiation alone (affected nodal regions with 40 Gy instead of 45 Gy and unaffected nodal regions with 36 Gy instead of 40 Gy) as well as after application of chemotherapy (affected nodal regions 36 Gy instead of 40 Gy and unaffected nodal regions with 30 Gy instead of 36 Gy). Ninety-five patients were treated according to the new therapy protocol. Forty-six patients had been treated with the higher dosages and served as the historical control group. Radiation therapy included Co-60, 15-MV and 9-MV photons, and 15-MeV and 9-MeV electrons. Serial thoracic X-ray controls were performed. CT scans, echocardiographic and electrocardiographic investigations were added in selected cases. RESULTS: During the period from 1983 to 1992, we diagnosed radiation-induced pneumonitis in 31% of the patients who underwent radiation therapy of the mediastinum. In addition, 16% demonstrated lung fibrosis and 10% pericarditis. After implementation of the reduced radiation dosages, the incidence of pneumonitis decreased from 35% to 24% (nearly significant in the 5% range), lung fibrosis from 24% to 12% (p < 0.05) and pericarditis from 26% to 2% (p < 0.01). The efficacy of treatment remained unaffected by the new therapy approach as has been demonstrated for cumulative survival data and recurrence-free intervals. CONCLUSIONS: Reduction of radiation dose in patients with Hodgkin's disease who undergo mediastinal radiation leads to a decrease in the incidence of radiation-induced complications (pneumonitis, lung fibrosis, pericarditis) whereas treatment efficacy remains unchanged.

Evaluation Studies as Topic↗

Radiation dosage reduction in general dental practice using digital intraoral radiographic systems.

This report describes the radiation dosage reduction possible in the general dental practice with two CCD (charge-coupled device)-based intraoral radiographic systems: the RVG-S (Trophy Radiologie, Vincennes, France) and the Sens-A-Ray (Regam Medical Systems, Sundsvall, Sweden). Radiation dosages (air-kerma; Gy) necessary for obtaining clinically acceptable images were measured at the cone tip using an ionization chamber type 660-1 (Nuclear Associates, Victoreen, Inc., Carle Place, New York, USA). When the RVG-S was used with an Oramatic 70 (Trophy Radiologie) X-ray generator, dosages at the cone tip ranged from 322 to 612 microGy. These corresponded to 40-60% of the dosages necessary when using Ektaspeed dental X-ray film (Eastman Kodak, Rochester, New York, USA) with a Heliodent 70 (Siemens, Erlangen, Germany) X-ray generator. At 60 kVp, the Sens-A-Ray reduced the dosage in the order of 30% compared with Ektaspeed dental X-ray film. Reduction in radiation dosage is one of the benefits of digital intraoral radiographic systems in general dental clinics. The RVG-S provides greater dose savings than does the Sens-A-Ray.

Evaluation Studies as Topic↗

Quantifying the radiation dosage to individual skeletal lesions treated with samarium-153-EDTMP.

UNLABELLED: Samarium-153ethylenediaminetetramethylenephosphonate (EDTMP) is used in the treatment of painful skeletal lesions. This study attempted to quantify the radiation dosage to individual lesions on both the macroscopic and microscopic level. METHODS: A gamma camera-based quantification technique was adapted and refined for 153Sm. The accuracy of the technique was determined by using a realistic phantom. The activity and volume of lesions as well as normal bone were determined and used to estimate the radiation dosages to these regions. Two patients died of unrelated causes shortly after receiving 153Sm-EDTMP. This made it possible to compare the gamma camera results with direct measurements. It also allowed for autoradiographic examination of the lesions. Finally, the microscopic radiation dosages were estimated. RESULTS: The phantom study indicated that the quantification technique was off, on average, by 4.1% (s.d. = 8.1%). The absolute activity concentration of trabecular bone was found to be approximately 0.22 MBq/g, and that of cortical bone was found to be approximately 0.1 MBq/g, regardless of the dosage administered. The corresponding concentrations for lesions were between 3 and 7 times higher than that of normal bone, with no apparent ceiling. From these results, the macroscopic radiation dosage could be estimated. The dosage to normal bone varied between 0.9 and 3.9 cGy x kg/MBq, and that of the lesions varied between 5.2 and 27.1 cGy x kg/MBq. The autopsy results confirmed that the gamma camera technique was accurate. The autoradiography showed clearly that the activity was associated with the surface of the bone. From these findings, the microscopic radiation dosage distribution was estimated for cortical and trabecular bone as well as osteoblastic lesions. The variation in the microscopic dosage compared to the macroscopic dosage was quite large. Microscopic dosages, when compared to the macroscopic dosages, were as high as 965% and as low as 14.9%. CONCLUSION: The techniques used have been proven to be accurate. The activity in normal bone may be at a ceiling value for all the administered doses, which could explain the small variation. This is not true for the lesions. The large variation in dosages on a microscopic scale, combined with the ceiling in normal bone, may explain the lower than expected toxicity and relatively quick relapse of the patients.

Autoradiography↗

World-wide radiation dosage calculations for air crew members.

A greatly improved version of the computer program to calculate radiation dosage to air crew members is now available. Designated CARI-6, this program incorporates an updated geomagnetic cutoff rigidity model and a revision of the primary cosmic ray spectrum based on recent work by Gaisser and Stanev (1998). We believe CARI-6 provides the most accurate available method for calculating the radiation dosage to air crew members. The program is now utilized by airline companies around the world and provides unification for subsequent world-wide studies on the effects of natural radiation on aircrew members.

Aerospace Medicine↗

Radiation dosage from use of the image intensifier in orthopaedic surgery.

The image intensifier is now commonly used in orthopaedic surgery for intraoperative assessment of fracture reduction and implant placement, especially with the increasing trend toward use of closed nailing devices. We conducted a study using lithium fluoride chips to measure the radiation dosage to the surgeon and the operating theatre personnel. Over a 6-month period we measured the cumulative radiation dosage over the eyes (0.83mSv), thyroid (with shield 0.51mSv, without 0.79mSv), waist (with apron 0.48mSv, without 0.86mSv), hands (right 0.7mSv, left 0.14mSv) and feet (0.62 mSv). These values were well within the ICRP safety guidelines. The use of protective lead shielding was effective in reducing radiation dosage to operators. A survey of the operating theatre area using a radiation counter showed that radiation scatter to OT personnel was low. This study hopes to allay the fears that use of the image intensifier is hazardous to OT personnel.

Fluorides↗