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Biomedical subjects

M C Schell

Publications and source records attributed to M C Schell.

At least 37 records · Page 2Linked to original sources

Input/output characteristics of a matrix ion-chamber electronic portal imaging device.

The input/output characteristics of a matrix liquid ion-chamber electronic portal imaging device (EPID) are investigated to elucidate the imaging properties of EPIDs. The radiation input to the detector, represented by dose rate, and the pixel value output from the device are related by a characteristic curve. Various incident radiation intensities are obtained by changing the source-to-detector distance (SDD). For each incident radiation intensity, an electronic portal image is obtained using a field size of 5 x 5 cm2. The output pixel value of the EPID is represented by the average pixel value of a region of interest of 9 x 9 pixels centered at a selected point. The effects of various accelerator settings, such as the repetition-rate setting and photon energy, gantry angle, field size, SDD, and acquisition mode of the EPID on characteristic curves are investigated at the central axis. The off-axis response of the detector is also examined. The derivative of the pixel value with respect to the input dose rate is used to analyze the detector contrast. Results indicate that the output pixel value is not a linear function of the incident radiation intensity. The detector contrast is comparable between photon energies of 10 and 6 MV and increases at low dose rates. The response of the imaging device varies substantially with acquisition mode, but is less sensitive to the SDD used for calibration. Characteristic curves are consistent for different gantry angles at the central axis and with the off-axis locations when the gantry angle is used for imaging and calibration, but vary with off-axis locations when the gantry angle is not at the calibration direction. Characteristic curves are also found to vary with different field sizes, but are similar in shape.

Humans↗

A technique of automating compensator design for lung inhomogeneity correction using an electron portal imaging device.

A technique of automating compensator design for lung inhomogeneity correction using an electron portal imaging device (EPID) has been investigated. This technique utilizes exit-radiation information as detected by an EPID to determine the thickness of the compensator desired. In this particular study, the compensator thickness is determined to provide a uniform gray-level distribution (related to uniform exit-dose distribution) in the region of the portal image to be compensated. Initially, a compensation characteristic curve, which relates the compensator thickness to the pixel value of the electronic portal image, is measured for both the Lead and Lipowitz compensator materials and a 6-MV photon beam. Then, a chest-treatment field is simulated using an anthropomorphic phantom. Based on the analysis of the profile (gray-level distribution) across the lung and mediastinum regions in the electronic portal image, the average of pixel values within the mediastinum region is selected as the matching level and the regions to be compensated are determined. With the aid of the predetermined compensation characteristic curve and proper distance scaling, the compensator thickness at each pixel location is automatically calculated at the block tray level to correct lung inhomogeneity. In a simple test using a single anterioposterior (AP) chest field, the compensated profile in the electronic portal image presents a uniform gray-level distribution (related to uniform exit dose) compared to the uncompensated profile.(ABSTRACT TRUNCATED AT 250 WORDS)

Biophysical Phenomena↗

Evaluation of radiosurgery techniques with cumulative dose volume histograms in linac-based stereotactic external beam irradiation.

Radiosurgery at UCSF is performed with a 6-MV linear accelerator with tertiary collimation for improved small field definition. The dose delivery to the target relative to normal tissue is influenced by the number of arcs, the arc geometry, field size, and beam energy. The impact of arc number, arc geometry, and field size on the dose distribution from 6-MV X rays in a 16 cm spherical phantom has been evaluated through the use of cumulative dose volume histograms. Dose volume histograms were calculated for a) 1-5 and 10 arcs, and b) collimator sizes of 1.25, 2.0, and 3.0 cm. Differences between techniques were found at the 5-10% level for field sizes from 1.25 to 2.0 cm. It was shown that the finite dimension of the sphere and, by extension, head diminishes the differences between techniques for the larger field sizes. The effect of treating with two isocenters is also analyzed and an approach for improving the dose distribution is presented.

Brain Diseases↗

Intraoperative radiotherapy with localized radioprotection: diminished duodenal toxicity with intraluminal WR2721.

The radiosensitive duodenum must be treated during IORT of human pancreatic head tumors, leading to an approximately 25% incidence of late bleeding. This study aimed to decrease the toxicity by administering WR2721 directly into the duodenal lumen. Duodenal toxicity in the canine was evaluated after intraoperative radiotherapy (IORT) with and without the intraluminal radioprotector WR2721. Eight adult dogs were divided into two groups. All underwent IORT using a 5.7 cm cone that covered the duodenum and pancreas. 30.0 Gy IORT was given with 6 MeV electrons. Cholecystojejunostomy and gastrojejunostomy were performed. Four dogs served as IORT only controls; one was unevaluable. Four dogs received WR2721, intraluminally at 720 mg/m2, in 16-18 ml Ringer's. Atraumatic clamps were placed on proximal and distal duodenum, without vascular compromise. WR2721 was injected into the duodenal lumen 30 minutes prior to IORT. Immediate postoperative recovery of the dogs receiving WR2721 was faster than controls. Necropsies were performed at 6 months. Grossly increased adhesions were noted in controls. Histopathologically, mucosal atrophy was greater in control dogs. Duodenal ulceration was noted in all controls, but in only one of four WR2721 dogs. Masson's trichrome and Verhoff Van Gieson stains demonstrated increased perivascular fibrosis, intimal proliferation, and fibrinoid medial necrosis of vessels in all controls, and one WR2721 dog. The other three WR2721 dogs had only mild perivascular fibrosis. Radioprotection, evaluated by the presence or absence of pancreatic atrophy, appeared to stop just beyond the bowel wall. In summary, WR2721 provided duodenal radioprotection in most dogs. The intraluminal administration of WR2721 allows decreased systemic side effects, and may eliminate tumor absorption. The study indicates that the intraluminal use of radioprotectors has broad potential application.

Amifostine↗

Clinical implications of I-125 dosimetry of bone and bone-soft tissue interfaces.

The dose to bone from I-125 photon interactions is expected to be approximately five times greater than the dose to soft tissue for the same photon fluence because of the dominance of the photoelectric effect. However, adverse clinical effects are not observed for I-125 implants near bone. Both the strong absorption of I-125 photons in bone and the narrowness (about 10 mu) of the high dose transition zone at a bone-soft tissue interface act to limit the volume of radiation sensitive tissue in the high dose region. Examples of calculated implant dose distributions in bone and in soft tissue cavities in bone are presented. Radiobiological measurements are consistent with the theoretical interface calculations. Calculation of the macroscopic dose distribution uses a recently measured radial dose function, while at the bone-soft tissue interface an analytic theory of the transition zone that is applicable to regular shaped cavities is used. Radiobiological experiments comparing cell survival for cells irradiated with 70 kvP X rays at Al-water and polystyrene-water interfaces are consistent with the transition zone calculations.

Bone and Bones↗

Estimation of complications for linear accelerator radiosurgery with the integrated logistic formula.

Radiosurgery techniques permit high doses of single fraction irradiation to be administered to small volumes of tumor with relative sparing of surrounding brain tissue. The tolerance of surrounding normal brain tissue to dose distributions from linear accelerator radiosurgery with different collimator sizes is an important factor that must be estimated by anyone using these treatment techniques. The exponential and linear quadratic versions of the integrated logistic formula were used to estimate the probability of brain necrosis at different doses for radiosurgical dose distributions administered by a 6 MV linear accelerator with a 5 arc technique for collimator sizes from 12.5 to 30 mm in diameter. Dose-volume isoeffect curves for a 3% risk of brain necrosis from linear accelerator radiosurgery were then calculated. These curves approximate those calculated for gamma knife radiosurgery and a published 1% dose-volume isoeffect line predicted for proton beam irradiation. Similar dose-volume isoeffect curves were calculated for single fraction radiosurgery boosts administered after 30 Gy of whole brain irradiation in 12 fractions. The integrated logistic formula appears to be a useful tool for estimating tolerance and providing guidelines for prescribing radiation doses for linear accelerator radiosurgery.

Brain Diseases↗

Dose distributions of model 6702 I-125 seeds in water.

Dose distributions in water of Model 6702 I-125 seeds have been measured to a distance of 9 cm from the seed center as a function of angle about the seed axis. A silicon diode and electrometer were used in the measurement. Two empirical models have been fitted to the data. The data have also been compared with Monte Carlo calculations.

Energy Transfer↗

CT-assisted assessment of bladder and rectum dose in gynecological implants.

Eight patients who received gynecological implants with Fletcher-Suit type applicators were involved in this study. An orthogonal pair of films and computed tomographic scans were obtained for each patient. In the CT study, judicious use of contrast materials and selective window and level settings permitted clear delineation of the bladder and the rectum boundaries relative to the implanted applicators. In comparison to reference organ doses derived from the orthogonal film pair method, the maximum organ doses estimated from the CT-assisted evaluation were considerably higher, by approximately twofold on the average. The differences between the values estimated from the two methods vary from patient to patient, being highly dependent on the individual anatomy and the geometry of the implanted sources. These preliminary results point to the inaccuracy of the conventional method of estimating organ doses. CT-assisted evaluation may be necessary to accurately calculate organ doses in gynecological applications.

Brachytherapy↗

Irradiation of bilateral orbital lymphoma: a non-coplanar technique with case reports.

Bilateral synchronous involvement of the orbits by lymphoma is an uncommon event. Therefore, the irradiation techniques for this disease are not well refined. Depending on the technique used, one has to decide between underdosing the anterior segment of the orbit and the frequently involved lacrimal glands or to tolerate shield related in homogeneities in the range of 40 to 50% as well as higher doses to the midline structures, e.g. the optic chiasma. To avoid the above shortcomings we developed a technique by which half the prescribed dose is delivered by pairs of beams angulated in the transverse plane and the other half by pairs of beams angulated in the sagittal plane. Film dosimetry in a phantom confirms that the entire orbit, including its anterior portion, is well covered, the lens is protected, and the dose to the mid-sagittal structures is not increased. The dose inhomogeneity is in the range of 20% which represents a substantial improvement over alternative methods. Two irradiated patients with bilateral orbital lymphoma are presented with local control and no ophthalmic or other side effects as of last follow-up.

Adult↗

The effect of hypoxic cell sensitizers at different irradiation dose rates.

The effect of 0.1-5 mM misonidazole and SR 2508 on hypoxic V79 cellular survival at acute (498 cGy/min) and low (890 and 933 cGy/h) irradiation dose rates was measured and compared. The experiments were designed to delineate the oxygen mimetic phenomenon and the preincubation effect of these chemicals at these dose rates. Linear regression analysis of the survival data in terms of the linear quadratic model yielded values of alpha and beta. In the absence of drug, the linear coefficient was independent of dose rate, whereas the quadratic term was greatly reduced at low dose rate. At all dose rates, the preincubation effect affected primarily the alpha term, with little influence on beta. In contrast, the oxygen mimetic phenomenon predominantly affected the beta term. Overall, the radiosensitizing ability of these drugs was higher at low dose rate than at acute dose rate.

Animals↗

Orbital tumor irradiation using non-coplanar beams.

Irradiation of the orbit is often associated with substantial dose inhomogeneity resulting from the insertion of lens blocks. We postulated that such dose inhomogeneity, which often exceeds 40%, could be halved by the use of two pairs of wedged beams, one angled in the sagittal plane and the other in the commonly employed transverse plane. The sagittal plane is obtained by turning the treatment couch 90 degrees. All beams carried a central-axis lens block and were angled 30 degrees relative to the vertical. Verification of dose distribution was obtained by film dosimetry in a head phantom for central- and off-axis planes. These measurements indicate that significant improvement in dose homogeneity over alternate methods can be achieved with this technique.

Film Dosimetry↗

Characterization of the dose perturbation by stents as a function of X-ray beam energy.

PURPOSE: External beam irradiation of coronary arteries has been shown to be detrimental in an animal model for the prevention of neointimal hyperplasia in the presence of stents when orthovoltage x-ray beams are used. The present study investigated the effect of beam energy on the dose distribution in the wall of the artery in the presence of stents. MATERIALS AND METHODS: We used 250-kVp x-rays and 6-MV x-rays to irradiate a stent placed in a homogeneous phantom. Radiochromic film densitometry and Monte Carlo calculations were used to measure and to simulate the dose distribution in the proximity of the stent. RESULT: External beam irradiation not only failed to prevent neointimal hyperplasia, but actually accentuated the neointimal response to a prompt mechanical injury in the artery. The photoelectric effect, which dominates low-energy x-ray interactions, produces recoil electrons in the stent, which enhance the dose surrounding the intima. The photoelectrons generated in nickel and iron have an extremely short range in normal tissue, approximately 0.1 mm. Initial estimates of orthovoltage x-ray interactions with the stent indicate a dose enhancement in the orthovoltage range by a factor of 2-6 due to the rise in the photoelectric cross section in this energy range depending on the elemental composition of the stent. Film densitometry verifies this dose enhancement. The Monte Carlo calculation yields a dose enhancement and the dose fall-off with distance from the stent when irradiated with orthovoltage x-rays. Conversely when the tissue and stent are irradiated with megavoltage x-rays, the dose enhancement in this region is a factor of 1.15 in close proximity to the stent and 1.0 at distances greater than 0.1 mm. The 6-MV photon interactions in tissue and Ni/Ti are predominantly through Compton scattering. The Compton effect is dependent on the electron density in the medium, in contrast to the atomic number, which is more relevant for photoelectric absorption. The dose estimates for megavoltage x-rays adjacent to the stent are complicated by the lack of charged particle equilibrium. CONCLUSIONS: There is a limited but definite increase in the dose delivery to the arterial wall when stents are irradiated with orthovoltage x-ray energies. This increase may explain the negative response in other studies. The presence of the stent does perturb the character and magnitude of the dose in the normal arterial wall as a function of beam quality.

Alloys↗

Empirical equation for tissue-maximum ratios/scatter-maximum ratios for indirectly ionizing radiotherapy beams.

A six-parameter equation has been fitted to the tissue-maximum ratio/scatter maximum ration (TMR/SMR) tables for 60Co, 4-, 6-, and 10-MV photon beams as well as the 35 MeV d leads to Be neutron beam. The empirical equation has been shown to fit the 60Co tissue-air ratio/scatter-air ratio (TAR/SAR) data equally well. The TMR/SMR model was developed from a three-parameter equation designed to eliminate the graphical extrapolation of zero-field size TARs.

Cobalt Radioisotopes↗