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Kiyoshi Nakamatsu

Publications and source records attributed to Kiyoshi Nakamatsu.

10 recordsLinked to original sources

Analysis of interfractional set-up errors and intrafractional organ motions during IMRT for head and neck tumors to define an appropriate planning target volume (PTV)- and planning organs at risk volume (PRV)-margins.

BACKGROUND AND PURPOSE: To analyze the interfractional set-up errors and intrafractional organ motions and to define appropriate planning target volume (PTV)- and planning organs at risk volume (PRV)-margins in intensity-modulated radiotherapy (IMRT) for head and neck tumors. PATIENTS AND METHODS: Twenty-two patients with head and neck or brain tumors who were treated with IMRT were enrolled. The set-up errors were defined as the displacements of the coordinates of bony landmarks on the beam films from those on the simulation films. The organ motions were determined as the displacements of the coordinates of the landmarks on the images recorded every 3 min for 15 min on the X-ray simulator from those on the initial image. RESULTS: The standard deviations (SDs) of the systematic set-up errors (Sigma-INTER) and organ motions (Sigma-intra) distributed with a range of 0.7-1.3 and 0.2-0.8 mm, respectively. The average of the SDs of the random set-up errors (sigma-INTER) and organ motions (sigma-intra) ranged from 0.7 to 1.6 mm and from 0.3 to 0.6 mm, respectively. Appropriate PTV-margins and PRV-margins for all the landmarks ranged from 2.0 to 3.6 mm and from 1.8 to 2.4 mm, respectively. CONCLUSIONS: We have adopted a PTV-margin of 5mm and a PRV-margin of 3mm for head and neck IMRT at our department.

Adult↗

Importance of the initial volume of parotid glands in xerostomia for patients with head and neck cancers treated with IMRT.

OBJECTIVE: Our aim was to evaluate predictors of xerostomia in patients with head and neck cancers treated with intensity-modulated radiation therapy (IMRT). METHODS: Thirty-three patients with pharyngeal cancer were evaluated for xerostomia after having been treated with IMRT. All patients were treated with whole-neck irradiation of 46-50 Gy by IMRT, followed by boost IMRT to the high-risk clinical target volume to a total dose of 56-70 Gy in 28-35 fractions (median, 68 Gy). For boost IMRT, a second computed tomography (CT-2) scan was done in the third to fourth week of IMRT. Xerostomia was scored 3-4 months after the start of IMRT. RESULTS: The mean doses to the contralateral and ipsilateral parotid glands were 24.0 +/- 6.2 and 30.3 +/- 6.6 Gy, respectively. Among the 33 patients, xerostomia of grades 0, 1, 2 and 3 was noted in one, 18, 12 and two patients, respectively. Although the mean dose to the parotid glands was not correlated with the grade of xerostomia, the initial volume of the parotid glands was correlated with the grade of xerostomia (P = 0.04). Of 17 patients with small parotid glands (< or =38.8 ml) on initial CT (CT-1), 11 (65%) showed grade 2 or grade 3 xerostomia, whereas only three (19%) of 16 patients with larger parotid glands showed grade 2 xerostomia (P < 0.05). The mean volume of the parotid glands on CT-1 was 43.1 +/- 15.2 ml, but decreased significantly to 32.0 +/- 11.4 ml (74%) on CT-2 (P < 0.0001). CONCLUSIONS: Initial volumes of the parotid glands are significantly correlated with the grade of xerostomia in patients treated with IMRT. The volume of the parotid glands decreased significantly during the course of IMRT.

Adult↗

Intra-arterial administration of sodium borocaptate (BSH)/lipiodol emulsion delivers B-10 to liver tumors highly selectively for boron neutron capture therapy: experimental studies in the rat liver model.

PURPOSE: Boron neutron capture therapy (BNCT) is particle radiotherapy with alpha ((4)He) particle and recoiled lithium nucleus ((7)Li) derived from a reaction of boron ((10)B) and thermal neutron. We investigated applying BNCT to malignant liver tumors. The purpose of the present study was to reveal the efficacy for administration of emulsion of a boron compound (sodium borocaptate; BSH) and lipiodol via a hepatic artery using a rat liver tumor model. METHODS AND MATERIALS: Rat liver tumors were developed by direct injection of Walker 256 cells into the liver parenchyma. BSH (75 mg/kg)/lipiodol (0.3 mL/kg) emulsion was administered via the hepatic artery. Boron concentrations in the tumors, liver, and blood were measured at 1, 6, and 12 h after administration. Neutron capture radiography (NCR) was taken to confirm the selective accumulation of (10)B in the liver tumors. RESULTS: Boron concentrations in the liver tumors and the tumor/liver (T/L) boron concentration ratio at 1, 6, and 12 h after administration of BSH/lipiodol emulsion (concentration: T/L ratio) were 479.2 ppm: 4.0, 197.3 ppm: 14.9, and 96.5 ppm: 6.6, respectively. Highly selective irradiation was clearly demonstrated by the NCR images. CONCLUSIONS: Intra-arterial administration of BSH/lipiodol emulsion is effective method for delivering high concentration of (10)B selectively to the liver tumors.

Animals↗

Erythropoietin/erythropoietin-receptor system as an angiogenic factor in chemically induced murine hepatic tumors.

BACKGROUND: To clarify the role of erythropoietin (Epo) in hepatic tumor angiogenesis, expression of Epo and its receptor (Epo-R) and content of Epo were investigated in murine chemically induced hepatic tumors. METHODS: To induce hepatic tumors and cirrhosis, diaminobenzidine was administered to Wistar rats for 5 months. In total, 30 hepatic tumors of greater than 3 mm in diameter were induced in 12 rats. The 30 hepatic tumors were resected with the surrounding hepatic tissues. The Epo content was measured by a radioimmunoassay (RIA) method. The number of tumor vessels in a definite area was counted in 100 areas of each tumor. To demonstrate the expression of Epo-R in tumors or surrounding liver tissues, immunohistochemical staining for Epo-R was performed. RESULTS: The Epo content of tumors ranged from 6.1 to 97.8 mU/ml, with a median of 21.8 mU/ml, which was significantly higher than that of the cirrhotic tissues adjacent to the tumors. Epo was not detectable in the normal or cirrhotic liver tissues without tumors. A significant correlation between Epo content and vascular density was noted in the 30 hepatic tumors (correlation coefficient, 0.480; P = 0.01). Immunoreactive Epo-R was detectable in the endothelium of intervening vessels of all hepatic tumors examined. CONCLUSION: The Epo/Epo-R system is related to the angiogenesis of murine hepatic tumors. To clarify the role of erythropoietin (Epo) in hepatic tumor angiogenesis, expression of Epo and its receptor (Epo-R) and content of Epo were investigated in murine chemically induced hepatic tumors.

Animals↗

Comparison of outcomes between overlapping structure-based and non-overlapping structure-based optimization for simultaneous integrated boost IMRT for malignant gliomas.

BACKGROUND: Intensity-modulated radiotherapy (IMRT) can deliver different doses to two target volumes with high conformity. The purpose of the present study was to compare outcomes provided by two different optimization methods, overlapping structure-based and non-overlapping structure-based methods, for simultaneous integrated boost (SIB)-IMRT for malignant gliomas. METHODS: Treatment plans for three glioblastomas and one anaplastic astrocytoma were analyzed in the present study. The planning protocol was to deliver 70 Gy/28 fractions (fr) to the gross tumor volume (GTV) and 56 Gy/28 fr to the surrounding edema. Two different optimization methods were tested for optimizing dose distribution to the GTVand the surrounding edema. One method was the "including method", an overlapping structure-based (GTV and the clinical target volume [CTV]) optimization method. The other method was the "annulus method", a non-overlapping structure-based (GTV and the subtracted volume) optimization method. Dosimetric indexes derived from dose-volume histograms (DVHs) were used for the analysis. RESULTS: There was no significant difference between the two methods in the mean doses of the target volumes and the doses delivered to the 5% or 95% target volumes (D05 or D95). The mean dose to the brain by the including method was significantly higher than that delivered by the annulus method (P = 0.0001). The D05 of the brain showed no significant difference between the two methods. CONCLUSION: The two optimization methods provided comparable dose distributions within the target volumes and normal brain.

Brain Neoplasms↗

Feasibility study of the simultaneous integrated boost (SIB) method for malignant gliomas using intensity-modulated radiotherapy (IMRT).

BACKGROUND: Intensity-modulated radiotherapy (IMRT) using the simultaneous integrated boost (SIB) method was designed for treating malignant gliomas. The purpose of this study was to investigate feasibility of this treatment. METHODS: Between December 2000 and November 2002, six patients with malignant gliomas were enrolled in this study. IMRT delivered 70 Gy/28 fractions (fr)/daily 2.5 Gy to the gross tumor volume (GTV) and 56 Gy/28 fr/daily 2.0 Gy to the surrounding edema defined as the clinical target volume annulus (CTV-a). The feasibility of the treatment was assessed from both physical and clinical points of view. RESULTS: No delay due to acute radiation toxicity was observed in any of the patients. The tumor recurred locoregionally in five of the six patients. The glioblastoma (GBM) recurred in two patients during the radiotherapy and in three patients at 5.4, 4.0 and 7.0 months after the start of radiotherapy. The sites of recurrence or progression were local in the GTV in four patients and in one patient subependymal dissemination was observed. Three patients, two with GBMs and one with anaplastic astrocytoma, died of the disease at 4, 16 and 7 months after the start of radiotherapy, respectively. CONCLUSIONS: The treatment of 70 Gy/28 fr/daily 2.5 Gy to the GTV and 56 Gy/28 fr/daily 2.0 Gy to the CTV-a was feasible both physically and clinically.

Aged↗

Phase I study of weekly docetaxel infusion and concurrent radiation therapy for head and neck cancer.

OBJECTIVE: This study was designed to determine the maximum tolerated dose (MTD) and dose-limiting toxicity (DLT) of weekly docetaxel in combination with concurrent radiotherapy for treating head and neck cancer. METHODS: Twelve patients with unresectable or postoperative head and neck cancers were enrolled in a dose-escalating phase I study. Eleven of the 12 patients were postoperative patients with intermediate or high pathological risk features. Radiotherapy was delivered as a standard fractionation regimen (2 Gy/day, 5 fractions/week) to a total dose of 60-70 Gy. The starting dose of docetaxel was 10 mg/m(2) (once per week) with a subsequent dose escalation of 5 mg/m(2) in cohorts of three patients. In 2001 and 2002, 12 patients completing three dose levels were included in the study. RESULTS: The MTD of docetaxel was 20 mg/m(2). With the third dose level (20 mg/m(2)), DLT was observed in two of three patients. One experienced grade IV mucositis and another suffered from prolonged grade III mucositis-enforced treatment delay for 13 days. Hematological toxicity was minimal. Mucositis was the DLT of concurrent chemoradiotherapy using weekly docetaxel administration for head and neck cancer. CONCLUSIONS: We identified the recommended phase II dose of docetaxel as 15 mg/m(2) administered weekly with concurrent radiotherapy for head and neck cancers.

Adult↗

Concurrent chemoradiotherapy with protracted infusion of 5-FU and cisplatin for postoperative recurrent or residual esophageal cancer.

BACKGROUND: We carried out the present study to investigate the feasibility and effectiveness of concurrent chemoradiotherapy (CT-RT) for postoperative recurrent esophageal cancer, which are, at present, unclear. METHODS: Between 1998 and 2002, 16 patients with postoperative loco-regional recurrence of esophageal cancer, and two patients with incompletely resected esophageal cancer were treated with concurrent CT-RT. Patients received protracted infusion of 5-FU 250-300 mg/m(2) on days 1 to 14, 1 hour infusion of cisplatin 10 mg/body on days 1 to 5 and 8 to 12, and a concurrent radiotherapy (RT) dose of 30 Gy in 15 fractions over 3 weeks. This treatment schedule was repeated twice with a gap of 1 week, for a total RT dose of 60 Gy administered over 7 weeks. RESULTS: Of the 18 patients, 13 (72%) completed the CT-RT protocol. A total RT dose of 60 Gy was administered for all except two patients, and doses of chemotherapy were reduced for five patients. Although grade 3 hematological toxicities were frequently noted, non-hematological toxicities of grades 3 and 4 were few. Of the 18 tumors, five (28%) showed complete response (CR). For patients without prior chemotherapy, the CR rate was 40% (4/10). The 2-year survival rate of 13 patients without distant metastases was 19%, with a median survival time of 9.5 months. CONCLUSION: The concurrent CT-RT protocol appears feasible and effective for patients with postoperative recurrent or residual esophageal cancer.

Adult↗

Additive effects of radiation and docetaxel on murine SCCVII tumors in vivo: special reference to changes in the cell cycle.

The purpose of the present study was to investigate the effects of a combination of docetaxel and irradiation in vivo with special reference to docetaxel-arrested G(2)/M-phase cells. At 24 and 48 h after intraperitoneal administration of docetaxel (90 mg/kg), tumor-bearing mice were irradiated with (60)Co gamma rays. Cell cycle distribution was analyzed by a DNA-Ki-67 double staining method using flow cytometry. An accumulation of cells in the G(2)/M phase of up to approximately 40% was observed 24 h after administration of docetaxel. Between 24 and 72 h, the percentage of cells arrested in G(2)/M phase that expressed Ki-67 decreased from 37.2% to 13.8%, in accordance with the increase in the Ki-67-negative G(2)/M-phase fraction. More than half of the cells arrested in G(2)/M phase lost their expression of Ki-67 protein between 24 and 72 h. The G(1)-phase fraction decreased from 28.4% to 8.6% at 24 h after docetaxel treatment; this remained unchanged at 72 h. These flow cytometry data suggested that docetaxel-arrested G(2)/M-phase cells did not enter the next cell cycle and were killed by docetaxel alone. Our data showed that arrest of cells in G(2)/M phase does not contribute to the synergism that has been reported for combinations of docetaxel and radiation in in vivo tumor models.

Animals↗

Prospective trial of concurrent chemoradiotherapy with protracted infusion of 5-fluorouracil and cisplatin for T4 esophageal cancer with or without fistula.

PURPOSE: A prospective trial of concurrent chemoradiotherapy (CT-RT) with a protracted infusion of 5-fluorouracil and cisplatin was performed to evaluate the safety and efficacy of this protocol for T4 esophageal cancer (UICC 1997). METHODS AND MATERIALS: Between 1998 and 2000, 28 patients with T4 esophageal squamous cell carcinomas were treated with concurrent CT-RT. Of the 28 patients, 15 had Stage III, 5 Stage IVA, and 8 Stage IV disease. Five of the T4 tumors had evidence of fistula before treatment. Patients received a protracted infusion of 5-fluorouracil 300 mg/m(2)/24 h on Days 1-14, a 1-h infusion of cisplatin 10 mg/body on Days 1-5 and 8-12, and concurrent radiation at a dose of 30 Gy in 15 fractions during 3 weeks. This schedule was repeated twice, with a 1-week split, for a total RT dose of 60 Gy during 7 weeks for 25 patients. For the remaining 3 patients, 30 Gy of preoperative CT-RT was administered. RESULTS: Of the 25 patients who were treated with the full dose of CT-RT, 14 (56%) completed the two courses of the CT-RT protocol, and 8 patients (32%) received the full dose of RT but a reduced dose of chemotherapy. Eight (32%) of the 25 tumors showed complete regression. Although Grade 3 hematologic toxicities were frequently noted, Grade 4 or more hematologic toxicities were few. Of the 5 T4 fistulous tumors, 2 demonstrated the disappearance of the fistula after CT-RT. However, the worsening or development of an esophageal fistula was noted in 5 patients. The 2-year survival rate for patients with Stage III was 27%, and the median survival time for those with Stage III and Stage IVA+IV was 12 and 5 months, respectively. CONCLUSION: Despite its significant toxicity for esophageal fistula, this concurrent CT-RT protocol of protracted 5-fluorouracil infusion and cisplatin appears feasible and effective for T4 esophageal cancer with or without fistulas.

Aged↗