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Mamoru Iimuro

Publications and source records attributed to Mamoru Iimuro.

2 recordsLinked to original sources

99mTc-MIBI scintigraphy for early detection of locally recurrent non-small cell lung cancer treated with definitive radiation therapy.

After radiation therapy of lung cancer, a dense fibrotic shadow develops in the irradiated lung. Owing to this fibrosis, early detection of local recurrence after treatment is sometimes difficult even when using computed tomography (CT) and magnetic resonance imaging. We investigated the diagnostic accuracy of technetium-99m hexakis 2-methoxyisobutylisonitrile ((99m)Tc-MIBI) scintigraphy for the detection of recurrent lung cancer following definitive radiation therapy. Eighteen patients with primary non-small cell lung cancer treated with radiation therapy 1 year previously were studied with (99m)Tc-MIBI scintigraphy. They showed no evidence of local recurrence on serial chest radiographs. All single-photon emission tomography (SPET) images acquired 2 h after intravenous administration of the radiopharmaceutical were visually interpreted with knowledge of the pretreatment chest radiograph, CT and the details of radiation therapy (radiation portals and administered doses). A region of interest (ROI) analysis was also performed. In addition to the ROI ratio of tumour uptake to accumulation in contralateral normal lung (tumour/lung ratio), another semiquantitative analysis, the ratio of tumour uptake to accumulation in radiation fibrosis (tumour/fibrosis ratio), was performed to differentiate between accumulation in radiation fibrosis and the tumour uptake. The scintigraphic diagnoses were correlated with clinical outcome. The sensitivity, specificity and negative predictive value of (99m)Tc-MIBI scintigraphy for the detection of recurrent lung cancer were all 88.9% (8/9). The tumour/lung ratios (mean+/-SEM) of the nine patients with local recurrence and the other eight without local failure were 2.00+/-0.11 and 1.40+/-0.09, respectively ( P<0.01). The tumour/fibrosis ratios of the patients with and those without recurrence were 1.47+/-0.08 and 0.93+/-0.05, respectively ( P<0.01). These results suggest that (99m)Tc-MIBI scintigraphy might be of value for the detection of recurrent lung cancer, and especially of small foci in areas of radiation fibrosis that are hardly noticeable on serial chest radiographs.

Aged↗

Virtual endoscopy: current perspectives.

Virtual endoscopy is a new method for evaluating the gastrointestinal tract using either thin-section computed tomography (CT) or magnetic resonance imaging (MRI). The acquired data are then subjected to computer manipulation to render images simulating the conventional endoscopic view. CT and MR imaging data can provide information that is not accessible endoscopically. These important features include information on tissue extending through and beyond organ walls and the anatomic context of the entire gastrointestinal tract, which permits correct anatomic localization of the lesion. Many clinical studies have shown that it is a safe, noninvasive, well-tolerated alternative to conventional endoscopy. Virtual endoscopy may have potential as a method of screening for colorectal cancer. This review describes the technique, reviews reported results, and discusses the present and future applications of this technique, focusing on CT colography (CTC).

Colonic Neoplasms↗