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Biomedical subjects

B Ham

Publications and source records attributed to B Ham.

6 recordsLinked to original sources

[Superparamagnetic iron particles. The clinical results in the MR diagnosis of liver metastases].

The diagnostic value of superparamagnetic iron particles as a tissue-specific MR contrast medium of the reticulo-endothelial system was studied in 30 patients. All patients had liver metastases (maximally 5 known metastases on MR). The patients were examined on a 1.5 Tesla scanner before and after a slow intravenous injection of iron particles (AMI-25) at a dose of 15 mumol/kg. Contrast injection led to a significant reduction of signal strength in the liver parenchyma (p < or = 0.001) but not in the metastases. Contrast enhanced spin echo sequences (SE 2300/45) provided the most marked liver/tumour contrast, greater than the contrast values of T1- and T2-weighted images (p < or = 0.01). After the intravenous injection of iron particles, small metastases in particular are more easily demonstrated. A new, rapid T2-weighted pulse sequence (PSIF 10/15/15 degrees) results in the elimination of vascular signals and leads to better differentiation between lesions and intrahepatic vessels. The use of superparamagnetic iron particles as an MR contrast medium improves the demonstration of liver metastases.

Contrast Media

Thermoradiotherapy of recurrent malignant brain tumors.

In an attempt to improve local control and survival over those achieved with brain implant alone, a Phase I/II study of interstitial thermoradiotherapy was undertaken for recurrent malignant gliomas and recurrent solitary brain metastases. Between June 1987 and September 1990, 49 tumors in 48 patients were treated with thermoradiotherapy, including 26 glioblastoma multiforme (GM), 16 anaplastic astrocytomas (AA), 4 adenocarcinomas, and 3 melanomas. Patient age ranged from 18 to 71 years and Karnofsky Performance Status from 40 to 90. Stereotactically implanted catheters were used for both hyperthermia and brachytherapy. Hyperthermia was administered immediately before and after brachytherapy, heating as much of the tumor as possible to 42.5 degrees C for 30 min using helical coil microwave antennas. High-activity iodine-125 sources delivered tumor doses of 32.6 to 63.3 Gy. Complications included reversible neurologic changes in 13 patients, 9 seizures, 4 infections, 1 deep venous thrombosis with pulmonary embolus, and 1 scalp burn. Eighteen patients underwent reoperation for tumor and/or necrosis. Follow-up ranged from 9 to 166+ weeks. The median follow-up for living patients with GM and AA was 37 weeks and 92 weeks, respectively. Actuarial median survival was 47 weeks for patients with GM. For patients with AA, actuarial survival was 65% at 18 months and median survival has not yet been reached. Multivariate analysis showed a strong correlation between freedom from local tumor progression and "T90" temperature or minimum tumor temperature. Interstitial brain thermoradiotherapy is now being evaluated in a randomized Phase II trial for previously untreated GM.

Adenocarcinoma

Interstitial brachytherapy for newly diagnosed patients with malignant gliomas: the UCSF experience.

Although interstitial brachytherapy appears to be effective in treating recurrent malignant gliomas, it has been studied less extensively in patients with newly diagnosed tumors. To examine the effect of this treatment when used at the time of primary diagnosis, we retrospectively reviewed the records of 88 patients who received temporary interstitial implants of 125I for newly diagnosed malignant gliomas. This brachytherapy was preceded by a course of external radiation therapy and followed, in some cases, by chemotherapy. The median duration of survival after the beginning of external radiation therapy was 87 weeks in patients with glioblastoma multiforme and 160 weeks in those with anaplastic gliomas. In 46% of patients with glioblastoma multiforme and 56% of those with anaplastic gliomas, a second operation was necessary to remove symptomatic radiation necrosis, recurrent tumor, or both. Our results support the conclusion that interstitial brachytherapy used at the primary diagnosis lengthens survival in selected patients with glioblastoma multiforme. However, the toxicity is significant in terms of the need for surgical resection of symptomatic necrosis. In patients with anaplastic gliomas, the toxicity associated with the treatment probably outweighs its advantages.

Adolescent

Interstitial irradiation and hyperthermia for the treatment of recurrent malignant brain tumors.

Between June 1987 and June 1989, 29 recurrent malignant gliomas or recurrent solitary brain metastases in 28 patients were treated in a Phase I study of interstitial irradiation and hyperthermia. Patient age ranged from 18 to 65 years, and the Karnofsky Performance Status scores ranged from 40 to 90%. There were 13 glioblastomas, 10 anaplastic astrocytomas, 3 melanomas, and 3 adenocarcinomas. Catheters were implanted stereotactically after computed tomography-based preplanning. Hyperthermia was administered before and after brachytherapy, using one to six 2450- or 915-MHz helical coil microwave antennas and one to three multisensor fiberoptic thermometry probes. The goal was to heat as much of the tumor as possible to 42.5 degrees C for 30 minutes. Within 30 minutes after the first hyperthermia treatment, implant catheters were afterloaded with high-activity iodine-125 seeds delivering tumor doses of 32.6 to 61.0 Gy. Most patients had no sensation of heating. Complications included seizures in 5 patients, reversible neurological changes in 9 patients, a scalp burn in 1, and infections in 3. Of 28 evaluable 2-month follow-up scans, 11 showed definite improvement in the radiological appearance of the tumor, 4 were slightly improved, 7 were stable, and 6 showed tumor progression. Ten patients underwent reoperation for persistent tumor and/or necrosis. Eleven of 28 patients are alive 40 to 97 weeks after treatment. Thirteen patients died of a brain tumor, 2 died of extracranial melanoma metastases, 1 died of new brain melanoma metastases, and 1 died of a pulmonary embolus. The median survival was 55 weeks overall. Median survival has not yet been reached for the anaplastic astrocytoma subgroup. We conclude that interstitial brain hyperthermia using helical coil microwave antennas is technically feasible. The level of toxicity is acceptable, and the computed tomographic response rate is encouraging.

Adenocarcinoma

Radiosurgery: a nursing perspective.

The term radiosurgery, originally applied to three-dimensional stereotactic irradiation of small intracranial targets with low-energy x-rays, has more recently been applied to widely differing techniques and radiation sources. These include gamma units using cobalt-60; beams of protons, helium ions and neutrons; and modified cobalt-60 or linear accelerator units. These techniques allow delivery of a high dose of radiation in a single fraction to a small and well-defined intracranial volume, without delivering significant radiation to adjacent normal tissue. The most usual targets for radiosurgery are arteriovenous malformations. It is occasionally used for acoustic neuromas and primary or metastatic brain malignancies as well. Although radiosurgery is not a new procedure, its use is becoming more widespread. Nurses, as critical members of radiosurgery teams, must be informed about all aspects of the procedures and associated nursing care skills.

Brain Neoplasms

Survival and quality of life after interstitial implantation of removable high-activity iodine-125 sources for the treatment of patients with recurrent malignant gliomas.

Between January 1980 and January 1988, 95 evaluable patients with recurrent, unifocal, supratentorial malignant gliomas were reirradiated with high-activity iodine-125 sources implanted directly into tumor in afterloaded, removable catheters using computerized tomography-directed stereotaxy. A tumor dose of 5270-15,000 cGy was delivered at a maximum distance of 0.5 cm from the rim of the contrast-enhancing mass seen on CT scans. The median survival for the 50 patients with anaplastic astrocytoma was 81 weeks and for 45 patients with glioblastoma multiforme it was 54 weeks. The 18- and 36-month survival rates for patients with anaplastic astrocytoma were 46% and 28%, respectively; the 18- and 36-month survival rates for patients with glioblastoma multiforme were 22% and 8%, respectively. Because of clinical deterioration, increasing steroid dependency, and increasing mass effect at the implantation site seen on CT scans, necrotic tissue was excised from 47 patients (49%) at craniotomy; in some patients, tumor was mixed with necrotic tissue. The survival of reoperated patients was significantly longer compared with patients who did not undergo this procedure. Serial determination of the Karnofsky Performance Score (KPS) showed that there was no significant deterioration for the group as a whole during the 6 months immediately after implantation. At 18 months, 33 of the patients were alive; KPS ranged between 50 to 90 (mean 79) and 67% were steroid dependent. At 36 months, 18 patients were alive; 17 patients were evaluable with KPS that ranged between 40 to 90 (mean 76) and 53% were steroid dependent. Eleven of the 17 evaluable long-term survivors had a KPS of 80 or higher with a mean of 87. Interstitial brachytherapy may provide long-term survival in selected patients with recurrent malignant gliomas who have been irradiated previously with conventional teletherapy. The quality of life in the majority of long-term survivors appears to be quite satisfactory. Further attempts to control tumor growth using this modality appear to be warranted.

Adolescent