Search PubMed⌕ Search

Biomedical subjects

Paul Chuba

Publications and source records attributed to Paul Chuba.

5 recordsLinked to original sources

Second malignant neoplasms after primary central nervous system malignancies of childhood and adolescence.

The standardized incidence ratios (SIR) and cumulative incidence rates were determined for developing second malignant neoplasms (SMNs) after primary central nervous system (CNS) malignancies occurring during childhood using registry data. A total of 4553 cases of primary CNS malignancies were identified. Forty-six cases developed SMNs, 19 occurring in a previously radiated field. The SIRs of developing second malignant neoplasms were 6.3 and 3.1 for those cases receiving and not receiving radiation therapy, respectively. The 20-year cumulative incidences for developing SMNs were 3.3 and 1.2% for cases receiving and not receiving radiation therapy, respectively. Children surviving CNS malignancies have an increased susceptibility for SMNs.

Adolescent↗

Osteosarcoma as a second malignant neoplasm.

PURPOSE: The aim of this study is to compare primary and secondary osteosarcomas using data from the National Cancer Institute's Surveillance, Epidemiology and End Results (SEER) program. METHODS: Osteosarcoma cases were identified in the SEER Cancer Incidence Public-Use Database, 1973-96 (1,511 primary and 133 secondary osteosarcomas). Secondary osteosarcomas were further classified as occurring within or outside the previously irradiated field. Comparisons among groups were performed by nominal logistic regression. Survival analyses were performed using Kaplan-Meir and proportional hazards regression. RESULTS: Secondary osteosarcomas were more likely to have a non-extremity primary site and an older age at diagnosis (>40 years) (<0.0001 for both). Secondary osteosarcoma cases continued to be more likely to have a non-extremity site when excluding those occurring within the radiation field. Five-year overall survival was 50% lower for secondary osteosarcomas for both extremity and non-extremity sites. Primary malignancies associated with secondary osteosarcomas included 14 lymphomas/leukemias, six sarcomas, 54 carcinomas, and seven other cancers. Secondary osteosarcomas occurring within a field of radiation were more likely to occur at a younger age, have a malignancy with a primary morphology other than carcinoma, a non-limb site, and a longer duration between their primary malignant neoplasms and the development of osteosarcoma. No difference in the overall survival was noted between secondary osteosarcomas occurring within an irradiated field and those that did not. CONCLUSIONS: Secondary osteosarcomas are associated with carcinomas especially in the elderly. Although a 50% decreased 5-year survival was observed for secondary osteosarcomas in this study, this might not reflect the current outcomes with more aggressive therapy.

Adolescent↗

Locally advanced adenocarcinoma of the prostate: how do different radiotherapy techniques compare?

Many men with prostate cancer will have locally advanced disease, either at presentation or later in their clinical course. Alternative treatment options for this stage of disease include locoregional radiation therapy, or systemic treatment. This article will present a discussion of the use of radiation therapy for locally advanced disease focusing on three methods of improving effectiveness of treatment: increasing the relative integral dose; decreasing the volume of tumor present by neoadjuvant hormonal therapy and radiobiologic optimization.

Journal Article↗

Cutaneous melanoma in childhood and adolescence.

Using population-based data from the Surveillance Epidemiology and End Results Program of the National Cancer Institute, melanoma occurring during childhood was evaluated. Compared to adult cases of melanoma, childhood cases had a higher proportion of females (61%) and non-Caucasians (6.5%). The incidence of melanoma increased 85% among 15- to 19-year-olds from 1973 to 1996. Incidence for 15- to 19-year-olds was higher in southern (23.9/million) than northern registries (14.5/million). Non-Caucasians had 3-30% of the cases expected compared to Caucasians. Overall survival of children/adolescents with melanoma was 89% and 79% at 5 and 20 years postdiagnosis, respectively. The majority of deaths were directly attributed to melanoma (72%).

Adolescent↗

Pathological distribution of positive lymph nodes in patients with clinically and radiologically N0 oropharyngeal carcinoma: implications for IMRT treatment planning.

BACKGROUND: We identified involved lymph node groups in patients with oropharyngeal carcinoma and radiologically N0 disease, aiming to define the clinical target volume, and to assess the negative predictive value of CT neck and correlate it to the tumor site, stage, and grade. METHODS AND MATERIALS: Between 1988 and 2000, we evaluated 53 patients who satisfied all of the following criteria: 1) oropharyngeal carcinoma diagnosis; 2) NO stage based on CT; 3) no prior treatment; and 4) primary surgical resection including ipsi-lateral neck dissection. The pathology reports were reviewed to identify the exact site of lymph node involvement. RESULTS: Twenty patients (37.7%) were found to have pathologically positive lymph nodes, yielding a negative predictive value of 62.3% for CT neck. Node levels II, III, and IV were the most commonly involved (26%, 17%, and 11% of all patients, respectively). Fifty percent of patients with T3 and T4 tumors had positive lymph nodes versus 20% of patients with T1 and T2 (P = 0.036). Tumor grade and site were insignificant (P > 0.05). DISCUSSION: Ipsilateral neck levels II-IV should be included during elective nodal irradiation in patients with N0-stage oropharyngeal carcinoma, regardless of the primary tumor site, stage, and grade.

False Negative Reactions↗