Purpose: This research aimed to study the anatomic relationship between the internal jugular vein with the surrounding internal jugular lymph node chain and the underlying bony anatomical structures which are commonly used as landmarks for radiation therapy planning.Methods and Materials: Twelve patients with carcinoma of the head and neck region were studied prospectively, Using our three dimensional planning system, a beam's-eye view of the internal jugular vein was projected onto a lateral and anterior simulation film, Quantitative measurements were made in every case of the anatomic relationship between the internal jugular vein and the posterior border of the cervical vertebrae and sagittal midline.Results: The distance between the posterior border of the internal jugular vein and the posterior border of the cervical vertebrae ranged between 0 and 2.5 cm, The distances between the sagittal midline and the medial border of the internal jugular veins ranged between 2 and 4 cm.Conclusion: To ensure adequate irradiation of the internal jugular lymph nodes, the posterior border of the lateral radiation therapy upper-neck fields should be placed at least 1 cm posterior to the posterior aspect of the cervical vertebrae, The midline block used in the lower neck anterior field should not exceed 2 cm in width. (C) 1997 Elsevier Science Inc.
Background: Radiation therapy is commonly considered the treatment of choice for T-1 glottic cancer. While it is generally believed that the quality of voice following irradiation is quite satisfactory, few studies have reported the results of objective assessment of voice after radiation therapy.Purpose: To objectively evaluate the quality of voice following radiation therapy for T-1 glottic cancer.Materials and methods: The voices of 12 patients treated for T-1 glottic cancer with radiation therapy were evaluated by acoustic analysis and speech aerodynamic studies. Eleven patients received between 6300 and 6665 cGy at a daily fraction size of 180-225 cGy. One patient received 7000 cGy at a daily fraction size of 200 cGy. Evaluation of the quality of voice was done 3 months to 7 years following completion of radiation therapy.Results: The number of patients who scored abnormal values for the measurements of fundamental frequency, jitter, shimmer and harmonic to noise ratio was 2, 10, 4 and 3, respectively. The number of patients who scored abnormal values for transglottic airflow rare, subglottal pressure and glottal resistance was 12, 8 and 9, respectively. None of the studied patients scored normal values in all given tests.Conclusion: Although radiation therapy cures a high proportion of patients with T-1 glottic cancer, the quality of voice does not return to normal following treatment. (C) 1997 Elsevier Science Ireland Ltd.
PURPOSE:To determine the incidence of chronic toxicity and the probability of biochemical and histologic complete response among patients with nonmetastatic prostate cancer, treated with three dimensional (3D) conformal mixed neutron and photon irradiation. METHODS AND MATERIALS:Between November 1991 and December 1994, 151 patients with prostate cancer were entered in three prospective dose-finding studies of conformal mixed neutron and photon irradiation. Patients with low stage, low to intermediate grade prostate cancer (T1-2NXM0, Gleason Score < or = 7) received 38 Photon Gy (PhGy) plus 9 (51 patients) or 10 (53 patients) Neutron Gy (NGy) to the prostate and seminal vesicles. Forty-seven patients with locally advanced prostate cancer (T3-4 N0-1 M0 and/or Gleason Score > or = 8) received 15 NGy + 18 PhGy to the prostate and seminal vesicles and 9 NGy + 18 PhGy to the pelvic lymph nodes. RESULTS:The median follow-up was 16 months (range: 3-30 months). There was no Grade 3-5 GI or GU toxicity recorded. At 20 months, the actuarial rates of Grade 2 GI morbidity were 6 and 29% for the 9-10 and 15 NGy protocols, respectively (p = 0.07). At 20 months, the incidences of Grade 2 GU morbidity were 4 and 16%, respectively (p = 0.08). Stiffness in flexing or abducting the hips was seen in 20 and 42% of patients receiving 9-10 and 15 NGy, respectively (p = 0.01). Potency was maintained in 65% of all patients. Among patients with an initial PSA < or = 10, 100% had a 12-month PSA < 2 and 78% < 1 ng/ml. Negative postradiation biopsies were seen in 30% of patients 6 months, 79% at 12 months, and 84% of patients at 18 months. CONCLUSION:The use of conformal mixed neutron and photon irradiation has been well tolerated with no severe bladder or rectal complications observed. However, because of the enhanced toxicity seen with 15 NGy, the current maximum dose levels of neutron irradiation have been limited to 11 NGy.
Background: High-dose-rate (HDR) brachytherapy has been the preferred treatment for cervical cancer at Wayne State University since 1987. The outcome of the first 105 patients treated is analyzed. Purpose: To determine clinical efficacy of the HDR modality. Methods: We reviewed 105 patients and evaluated the 88 patients treated for cervical carcinoma with HDR and external beam radiotherapy (EBRT) from August 1987 to December 1992. Patients received initial external radiation to the pelvis (total dose of 19.8 to 39.6 Gy in 11 to 22 fractions), followed by outpatient HDR brachytherapy (3 fractions/week, 386 cGy/fraction to Point A, total of 8 to 12 fractions) and concurrent daily EBRT (1.8 to 2.0 Gy) to lateral parametria. During the HDR period of treatment, step wedge transmission blocks were used to shield central pelvic tissue while treating peripheral pelvic tissues with EBRT. Patient distributions were as follows: 25, IB/IIA; 35, IIB/IIIA; and 28, IIIB/IVA. There were 56 African American and 32 Caucasian patients with mean age of 55 (range 19–89). The median follow-up was 33 months (range 20 to 76 months). Kaplan–Meier analysis was performed. Results: Three-year survival rates were 88%, IB/IIA; 69%, IIB/IIIA; 56%, IIIB/IVA; and 72% overall. Local control was achieved in 71/88 (80%) of patients. Failure site was cervix or within the pelvis in 12 patients, distant metastasis only 17 patients, and combined local and distant in 5 patients. Of the failures, 82% (28/34) died within 2 years. There were 3 grade III/IV complications (3.4%). Conclusion: Results compare favorably with previous LDR experience.
The substantial local failure rate for patients with locally advanced carcinoma of the prostate (LACaP) following photon irradiation, the association of local failure with a poor prognosis, and the promising results of mixed neutron/photon (40%/60%) radiotherapy supplied the rationale for this study. The purpose of this study was to evaluate the combined advantages of mixed neutron/photon (75%/25%) irradiation, 3D treatment planning, as well as fully conformal beam shaping capabilities in reducing the morbidity associated with neutron irradiation. The first 35 patients treated with this technique are the basis for this analysis. After CT stimulation and treatment planning, the normal tissue and target structures were entered into the 3D planning system. The neutron dose was delivered in 15 fractions at 1.0 Gy/fraction (NGy) to the prostate and seminal vesicles (PSV) and 0.6 NGy/fraction to the pelvic lymph nodes (LN). The photon dose was given in 10 fractions of 1.8 Gy each to both the PSV and LN volumes. Neutron and photon dose-volume histograms (DVHs) were generated in each patient for the prostate, seminal vesicles, lymph nodes, bladder, and rectum. The adequacy of the neutron and photon components of the treatment were compared with respect to target volume and normal tissue irradiation. Based on the DVH analysis, the prostate and seminal vesicles received the prescribed dose with both neutrons (99% +/- 2%) and photons (99% +/- 2%). There was no significant difference in the dose to the bladder and rectum for both the neutrons and photons. The acute treatment related reactions have been mild, with only one grade III bladder reaction. The 3D conformal technology utilized in this study has been shown to allow for the delivery of neutron irradiation with no increase in dose to the adjacent normal tissues compared with that achieved with conformal photon treatment. Further follow-up will reveal whether the dosimetric advantage demonstrated by this technique translates into an improved therapeutic ratio.