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Biomedical subjects

F A Calvo

Publications and source records attributed to F A Calvo.

60 records · Page 4Linked to original sources

[Multidisciplinary protocol for the treatment of epidermoid carcinoma of the esophagus: experience from 1985 to 1989].

A phase II study activated in 1985 for the multidisciplinary treatment of squamous cell carcinoma of the esophagus is described. The treatment program included simultaneous neoadjuvant continuous infusion chemotherapy with cisplatinum and 5-fluorouracil, preoperative radiotherapy (46 Gy in 5 weeks) and delayed programmed surgery (or radical irradiation in selected cases). Twenty-one patients with tumor stages I (6), II (10), III (5) entered in the study and 20 patients completed the treatment program. Severe toxicity observed was: esophagitis 100%, bone marrow aplasia 30%, severe weight loss 52%. One patient developed a tracheo-esophageal fistula at the end of radiotherapy. Clinical objective tumor response rate was 85%. Pathologic complete tumor response rate was 47%. Median follow-up of the entire group is 11 months (range 2 + to 49 + months). Ten patients have been alive for more than 12 months; six are still alive without any evidence of disease (from 12 + to 49 + months). It is concluded that the protocol described is feasible, with treatment related severe but reversible toxicities, and able to induce a high rate of tumor response and long term survivors in patients with initial locally advanced tumor stages.

Adult↗

[Treatment of cancer of the esophagus. New strategy with the multidisciplinary treatment].

This study is an update of the clinico-anatomical characteristics of esophageal cancer, as well as the different current therapeutic modalities, their indications and results. The therapeutic protocol for the study and treatment of epidermoid cancer of the esophages followed in the University Clinic of Navarra is likewise espounded.

Clinical Protocols↗

[Intraoperative radiotherapy in locally advanced carcinoma of the kidney: initial experience].

Intraoperative radiotherapy (IORT) is a rather interesting therapeutic modality in multidisciplinary oncology. Its greatest advantages reside in the approach of deeply seeded abdomino-pelvic tumors. Its inclusion in the therapeutic approach of renal carcinoma with a high local relapse rate has been analyzed in this study in relation to its technical aspects and preliminary clinical results. 11 stage III or IV patients or with local relapse in lumbar fossa were treated with nephrectomy or exeresis surgery and OIRT (10-20 Gy). Surgical exposure of the lumbar fossa and nodal drainage areas was appropriate in dal cases. No toxic signs or sequellae relating to OIRT were observed. Local tumor controls at 8 months of follow-up on the average (range from 2 to 33 months), was 82%. The data obtained in this series suggest the viability of the combined approach nephrectomy or rescue surgery and IORT. The initial clinical results suggest HIGH local tumor control without an increase in the toxicity rate or complications.

Adenocarcinoma↗

Preoperative chemoradiation and adjuvant surgery in locally advanced or recurrent cervical carcinoma.

From February 1988 to May 1994, 31 patients (pts) with the established diagnosis of locally advanced (IB-IIA bulky,IIB,III,IVA) or recurrent cervical carcinoma were treated with simultaneous chemotherapy (CT) and external beam radiotherapy (RT) followed by radical surgery (RS) with or without intraoperative radiation therapy boost (IORT) to the high risk areas for recurrence. CT consisted of cisplatin 20 mg/m2 and 5-Flourouracil 1000 mg/m2 (maximum dose 1500 mg) in a 24-hour continuous IV infusion for 3-5 days during the first and fifth weeks of the scheduled course of RT. RT was delivered with standard fractionation up to a 40-46 Gy total dose. RS was performed 4-6 weeks later. Pathologic findings revealed complete and quasi-complete response (pCR+qpCR) in 74% of the surgical specimens and partial response (pPR) in 26%. With a median follow-up of 27+ months (3-71+), actuarial disease-free survival is 80% (91.3% for pCR+qpCR, 40% for pPR). Loco-regional control rate is 93.4%. The concurrent administration of RT and CT has moderate toxicity and can promote a high rate of pCR+qpCR as well as local control in high risk cervical carcinoma. The presence of a pCR or qpCR specimen seems to be correlated with good patient outcome.

Cisplatin↗

Intraoperative radiotherapy. Literature updating with an overview of results presented at the 6th International Symposium of Intraoperative Radiation Therapy.

Intraoperative radiotherapy is a technique that can be integrated into multidisciplinary treatment strategies in oncology. A radiation boost delivered with high energy electron beams can intensify locoregional antitumor therapy in patients undergoing cancer surgery. Intraoperative radiotherapy can increase the therapeutic index of the conventional combination of surgery and radiotherapy by improving the precision of radiation dose location, while decreasing the normal tissue damage in mobile structures and enhancing the biological effect of radiation when combined with surgical debulking. Intraoperative radiotherapy has been extensively investigated in clinical oncology in the last 15 years. Commercially available linear accelerators require minimal changes to be suitable for intraoperative radiotherapy. Its successful implementation in clinical protocols depends on the support given by the single institutions and on a clinical research-oriented mentality. Tumors where intraoperative radiotherapy as a treatment component has shown promising rates of local control include locally advanced rectal, gastric and gynecologic cancer, bone and soft tissue sarcoma. Intraoperative radiotherapy can be applied to brain tumors, head and neck cancer, NSCLC and pancreatic carcinoma.

Combined Modality Therapy↗

Stereotactic radiosurgery with linear accelerator.

Stereotactic radiosurgery is a method that applies a radiation dose to a limited and well-defined volume while the irradiation of adjacent healthy tissues is minimized. It is most commonly used in the treatment of intracranial lesions because the skull hardness assures the stable location of its contents. Treatment of the rest of the body has recently been proposed and carried out, using original immobilization systems. Stereotactic radiosurgery was first described in 1951 by the Swedish neurosurgeon Lars Leksell who originally used X-rays and then high-energy protons as a source of radiation. In the '80s photons from linear accelerators were used as radiation source, with various stereotactic systems and computerized treatment planning. The method used with all radiosurgical systems, regardless of the source of irradiation, is similar. The lesion is detected with common diagnostic imaging and adequate location frames. At present, to prevent errors in location, MRI and CT data are matched using an Image Fusion computer program. The objective of stereotactic radiosurgery is to destroy tumor cells or to induce changes in tissues that, as in brain arteriovenous malformations lead to the occlusion of their abnormal vessels. Stereotactic radiosurgery is increasingly used today in the treatment of a variety of intracranial lesions to the patients' benefit.

Brain Neoplasms↗