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K Kanaya

Publications and source records attributed to K Kanaya.

At least 19 recordsLinked to original sources

[Equilibrium of small animals in "drop shaft" experimentation--preliminary study on the frog with vestibular neurectomy].

We have newly designed instruments for equilibrium experimentation, using a drop shaft, and studied the behavior and EMG Patterns of frogs with or without unilateral vestibular neurectomy, as a preliminary study at JAMIC (Japan Microgravity Center). The results are reported herein and the efficacy of the drop shaft in equilibrium experimentation is also documented. 1) In unilateral vestibular neurectomized frogs, posture--head tilt, leg flexion on the affected side, and leg extension on the opposite side--is maintained and persists under microgravity. Rolling to the affected side was also observed. 2) The latencies of the EMG responses from M. tibialis anticus and M. longissimus dorsi were prolonged on the affected side. 3) The frog is suitable for use in equilibrium experiments utilizing a drop shaft. 4) The JAMIC drop shaft can be used to obtain constant and stable microgravity, 10(-4) G for 10 sec, which is similar to that in space. Drop shafts are suitable for equilibrium experimentation.

Animals

[Therapeutic effectiveness of 131I-MIBG on malignant pheochromocytoma--results of long-term follow-up].

The therapeutic response of 131I-MIBG was evaluated in 4 patients with malignant pheochromocytoma who had been treated with 131I-MIBG and followed-up over 5 years. The patients were 2 men and 2 women with ages ranging from 41 to 69 years old (mean 53 years). The primary tumors in 3 of 4 patients had been resected four to eight years before 131I-MIBG treatment. One patient was diagnosed as adrenal pheochromocytoma, and two were retroperitoneal paraganglioma. And in one patient, the resection of primary mediastinal tumor was not performed due to the adhesion to pericardium but the diagnosis of paraganglioma was obtained by biopsy of bone lesion. All patients showed the clear accumulation of 131I-MIBG in tumor on scintigraphy. The number of doses of 131I-MIBG ranged from one to three times with 3.7 GBq per administration and a cumulative activity from 3.7 to 11.1 GBq. Treatment effect was obvious in one patient with lung, bone, and lymph node metastases whose cumulated absorbed dose with 11.1 GBq of 131I-MIBG exceeded over 150 Gy. At the present time, the duration of survival since the beginning of initial 131I-MIBG therapy is over 5 yrs. The other three patients, however, showed little effects, and died with the disease in 2.6 to 4.1 years after the initial 131I-MIBG therapy. 131I-MIBG will become a promising agent for therapy in patients with malignant pheochromocytoma with high degree of accumulation.

3-Iodobenzylguanidine

Accumulation enhancement of human monoclonal antibody HB4C5 to lung tumor xenografts by N-deglycosylation.

UNLABELLED: The fractional uptake of intact monoclonal antibodies by tumors is relatively low. Various methods to alter the molecular structure have been used to augment tumor uptake. These chemical manipulations, however, may alter the specificity of antibody binding. METHODS: Comparative studies of biodistribution, radioimmunoimaging and macroautoradiography in LC-6 xenografted mice were conducted with the 125I-labeled intact and N-terminal deglycosylated monoclonal antibodies to evaluate the effect on deglycosylation on antibody binding. RESULTS: The removal of N-glycosyl residues from this monoclonal antibody significantly enhanced specific localization of the radioactivity to the tumor, especially to its necrotic fraction. Nonspecific accumulation of radioactivity to the necrotic fraction of the tumor was excluded by biodistribution studies demonstrating selective accumulation of 125I-labeled monoclonal antibody after coadministration of 125I-monoclonal antibody (intact or N-deglycosylated) with 131I-labeled control IgM. CONCLUSION: The lung cancer-associated human monoclonal antibody HB4C5, which recognizes histone H2B as the antigen, accumulates specifically to the necrotic fraction of tumor. The uptake is enhanced by removal of N-terminal glycosyl residues from the antigen-binding site of the light chain.

Animals

Vestibular compensation in vestibular neuronitis: evaluation of positional nystagmus and caloric nystagmus.

We evaluated the vestibular functions, especially for positional nystagmus and caloric nystagmus, in 43 cases of vestibular neuronitis for long periods after its onset. It is shown that in the cases of vestibular neuronitis that were studied more than 10 years after the onset of the disease, the completed vestibular compensation changed or the vestibular compensation was still incomplete.

Caloric Tests

Vestibular neuronitis evaluated by the combined galvanic test.

Forty-two patients with unilateral vestibular neuronitis were examined by the combined galvanic test (CGT), consisting of the galvanic eye movement test (GEMT) and the galvanic body sway test (GBST). Results of the CGT were evaluated with respect to the time period from the onset of vestibular neuronitis. A favorable recovery was observed earlier with the GBST than the GEMT. We believe that this discrepancy may be due to the difference in compensation between the vestibulo-ocular reflex and the vestibulo-spinal reflex.

Adult

Interpretation of the combined galvanic test. Findings from cases with vestibular neuronitis.

The combined galvanic test (CGT) was developed in our department for simultaneous recording of galvanic eye movement test (GEMT) and galvanic body sway test (GBST). Twelve cases of vestibular neuronitis were studied first with the caloric test, and then with the CGT. The findings of the caloric test corresponded to those of the GEMT, but did not always correspond to those of the GBST. Thus we suggest that the GBST reflects an abnormality in a system different from that reflected by the caloric test and GEMT. It is likely that the caloric response mainly originates from the semicircular canal system. Thus the GEMT may reflect an abnormality in the semicircular canal system, while the GBST reflects an abnormality in the otolithic system. The CGT may thus be a feasible method of differentiating the disorders of the semicircular canal system from those of the otolithic system in the vestibular nervous system.

Adult

[131I-therapy of differentiated thyroid carcinoma with distant metastases--relation between absorbed dose by quantitative SPECT and outcome of the patients in thyroid carcinoma].

The correlation of absorbed doses of tumors in 18 patients of differentiated thyroid carcinoma with distant metastases, who were treated by 131I and followed over 5 years, with their outcome were analyzed and the clinical significance of determination of absorbed dose was discussed. Radioactivities of 131I in the tumors were measured by using SPECT at the time of therapy. Absorbed dose was calculated based on the MIRD equation. Outcome of 8 patients were evaluated as good and their absorbed dose was 10-630 Gy with 2-22 g of tumor volume, 1.2-3.5 days of effective half life (EHL) and follow-up term was 8.6 +/- 0.9 years. The absorbed dose of 10 patients whose outcome were evaluated as poor, was 5-81 Gy with 7-215 g of tumor volume, 1.3-5.3 days of EHL and follow-up term was 5.6 +/- 2.5 years. The initial treatment seemed to be important for 131I therapy, since the absorbed doses in the following therapy became reduced. When the absorbed dose of the tumor exceeded over 94 Gy at initial treatment, good clinical courses were obtained. These results indicate that the quantitative SPECT for 131I therapy is clinically valid and that the calculated absorbed doses correlate well with outcome of the patients.

Adenocarcinoma

GABA distribution in the central vestibular system after retroauricular galvanic stimulation. An immunohistochemical study.

The changes of the neurotransmitter (GABA) distribution in the brain stem of rats by retroauricular galvanic stimulation were investigated using the immunohistochemical method. In the lateral vestibular nucleus GABA-like immunoreactivity was more intensive on the side ipsilateral to the anodal stimulation than on the other side. It is concluded that retroauricular galvanic stimulation causes some changes in the inhibitory activity of the lateral vestibulo-spinal tract and of the spinal motor neuron.

Animals

Compensatory process of vestibular neuronitis. From findings of combined galvanic test and caloric test.

The compensatory process of vestibular neuronitis in 7 patients was followed up and evaluated using the Combined Galvanic Test (CGT) and other neuro-otological data. CGT is the simultaneous recording of both galvanic eye movement (GEM) and galvanic body sway (GBS), and has proved to be reliable in the diagnosis of retrolabyrinthine disorders. The results were as follows: The subjective symptoms remained in 3 cases from 1 month to 1 year. The recovery of the GBS response was seen earlier than that of both GEM and caloric responses. The recovery of GEM and caloric responses was observed at almost the same time. We observed the favorable recovery process of caloric response and GEM response in some cases which had recovery of GBS response within 4 weeks and suggest that the system of GBS response is different from that of GEM and caloric response. However, the systems of the latter two may be the same. We assume that the recovery of GBS response is earlier than that of GEM and caloric responses because the otolithic system recovers more easily than the semicircular canal system. The CGT and caloric test were reliable in examining the compensatory process of vestibular neuronitis.

Adult

[Decreased cerebral blood flow in remote areas in deep-seated cerebrovascular lesions].

Recent positron or single photon emission computed tomographic studies have demonstrated that the impairment of regional hemodynamics or metabolism in cerebrovascular disease is not limited to the focal lesion, but also involves more remote areas. The present study evaluated cerebral blood flow in areas remote from the primary lesion in patients with subcortical cerebrovascular disease, and assessed correlations with the clinical features. Twenty patients aged 61-89 (mean, 74.7 +/- 6.7 years) were divided into the L group (lacunar infarction in deep penetrating arterial territory, n = 7), the NL group (non-lacunar subcortical infarction caused by main trunk occlusion or severe stenosis, n = 6), and the H group (putaminal or thalamic hemorrhage, n = 7). Ipsilateral cortical and contralateral cerebellar blood flow were assessed using single photon emission computed tomography with 123I-IMP. Although only some patients of the L group showed a mild reduction of ipsilateral cortical blood flow, most of the patients in the NL and H groups showed a moderate or severe flow reduction. The cortical blood flow reduction was suggested to be caused by several mechanisms, including brain edema, a decreased perfusion pressure associated with disease of large arteries, partial cortical neuronal damage, and deactivation. The degree of the flow reduction was considered to depend on the relative contribution of each of these factors. Contralateral cerebellar blood flow reduction, i.e., crossed cerebellar diaschisis, was observed more frequently and prominently in the NL and H groups than in the L group.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

[Localized amyloidosis of larynx. A case report and immunohistochemical study].

A case of the localized laryngeal amyloidosis was reported. The patient was a 51-year-old female who complained of hoarseness for about a year. Pathological study on the biopsy specimen taken from both the subglottic area under laryngeal microsurgery showed the deposit of amyloid. Laryngeal microsurgery showed the deposit of amyloid at bilateral subglottic area. Electron microscopic study disclosed a typical amyloid fibrillar structure. Amyloid protein, in this case, was confirmed as protein A lambda appeared through the potassium permanganate treatment and immunoperoxidase technique (ABC method).

Amyloid

Transmission electron microscopic x-ray quantitative analysis of human dentin at 200 kV accelerating voltage.

Qualitative and quantitative x-ray energy dispersive spectroscopy is now used successfully to analyze many features and processes in inorganic samples. When applied to inorganic samples, however, the results are often less satisfactory due to problems of preparation of organic samples, difficulty of measuring x-rays from organic samples, damage of the sample by the electron beam, and other practical problems. In the present study we used a high voltage transmission electron microscope equipped with an energy dispersive x-ray spectrometer to examine accurate quantitative standardless analysis of thin sections of an organic sample, human dentin. Based on our experiments we found the important parameters for quantitative analysis were sample thickness and appropriate choice of model sample. Further, we show that the method of Cliff and Lorimer can be used with biological samples at 200 kV, and we show that quantitative analysis of human dentin can be carried out at 200 kV. Finally, we show that areas of human dentin can be differentiated by their morphological characteristics and x-ray analyses obtained in the transmission electron microscope.

Child

Serial section reconstruction using a computer graphics system: applications to intracellular structures in yeast cells and to the periodontal structure of dogs' teeth.

A computer graphics system for reconstruction from serial section micrographs was applied to intracellular details of a yeast target cell (Saccharomyces cerevisiae cell) induced by the alpha factor mating pheromone and was also applied to a periodontal structure of a dog tooth moved orthodontically. In the former, intracellular organelles and a distribution of vesicles could be clearly observed through the cell membrane using the transparent display method in which the smoothing of the reconstructed outer cell membrane surface by computer processing was applied to the transparent display. In the latter case, by cutting through a reconstructed dog tooth and its periodontal tissues, labiolingual and mesiodistal cut surfaces of the tooth and of adjacent alveolar bone could be observed with fine details (232 sections were used).

Animals

Application of ion-beam etching techniques to the fine structure of biological specimens as examined with a field emission SEM at low voltage.

The term "etching," in electron microscopy, refers to the removal of specimen surface layers and includes chemical, electrolytic, and ion-beam methods. The ion-beam etching process is used to remove layers of a target material by bombarding it with ionized gas molecules. Recently, the method has been applied to the field of biological specimens; however, the practical procedures for such organic materials have not been developed. In the present study, we used an apparatus in which a beam of argon ions is collimated and focused by electrostatic lenses onto an appropriate target. We demonstrated the optimum conditions to observe biological specimens that were treated with osmium tetroxide and tannic acid. The specimens were examined uncoated at low accelerating voltage using a field emission scanning electron microscope. According to our experiments, when a biological specimen was observed under high-resolution conditions at over 50,000x magnification, the optimum condition of ion-beam etching consisted of an accelerating volage of E = 1 keV and an ion-beam dose of It = 360-400 microA.min, depending on parts of the specimens. In order to decrease overetching, we had to choose factors such as E = 1-2 keV and It = 500 microA.min.

Animals

Three-dimensional analysis of morphogenesis induced by mating pheromone alpha factor in Saccharomyces cerevisiae.

Ultrastructural analyses of cytoplasmic changes in Saccharomyces cerevisiae X2180-1A (MATa) that had been treated with alpha factor were performed by using the freeze-substitution fixation method. After alpha factor treatment, cells exhibited a pointed projection, which is a unique pattern of oriented cell surface growth. The relationship between projection formation and intracellular organelles was examined using serial thin sections and computer-aided three-dimensional reconstructions. Using these analyses membrane vesicles and other organelles were detected, and studies on their dynamic structural reorganization became feasible. Production of membrane vesicles (average 65 nm in diameter) was induced upon exposure of the cells to alpha factor before projection emergence. The total number of membrane vesicles increased at the early stage and decreased at the late stage of projection formation. Three-dimensional analysis indicated that the vesicles were at first dispersed throughout the cell, then accumulated at the site where the projection formed. Morphological changes and multiplication of the Golgi body were seen during the process of projection formation. Other intracellular organelles (nucleus, vacuole, rough endoplasmic reticulum and mitochondria) were also rearranged, showing a polar organization of the cytoplasm during projection formation.

Mating Factor

Digital image processing of crystalline specimens examined by electron microscopy.

Crystalline specimens imaged in the electron microscope are analysed using digital processing. Some principles of structural analysis using the method of Fourier decomposition are discussed. Complementary techniques, such as enhancement by gradient and Laplacian operators, have been found useful in analysing electron micrographs. The application of these techniques to some problems in Materials Science and Biology are reviewed. By selecting and phase-correcting spots in the computed diffraction pattern, it was possible to localize atoms, molecules, and their defective arrangement in evaporated gold, sputter-deposited tungsten films, and single crystals of cadmium selenide. Digital processing based on the theory of helical diffraction was used to explore the three-dimensional arrangement of molecules in cellular components of alveolar soft part sarcoma, Hirano bodies, and neurofibrillar tangles in the human brain.

Actins

Ultrastructural analysis of neurofibrillary tangles of Alzheimer's disease using computerized digital processing.

The ultrastructure of neurofibrillary tangles of Alzheimer's disease was analyzed by computerized digital processing of electron micrographs. Processing of the electron micrographs consists of four steps: digitizing the electron micrograph, Fourier transformation, noise filtering and inverse Fourier transformation and Laplacian operation. In the present study, we have confirmed that neurofibrillary tangles are composed of a pair of helical filaments (PHF), which appear characteristically as an unbranched rigid structure. The periodicity of PHF is 78 nm on the diffractogram. The dimensions of PHF obtained by our analysis, although basically similar to those described earlier by other investigators using conventional techniques, more precisely defines its structural conformation. We have also demonstrated that the spatial relationship of two filaments appears symmetrical after two-way tilting of the specimen about the axis of rotation. Our observations emphasize the importance of digital image processing as an effective tool for structural analytical research in biology and medicine.

Actin Cytoskeleton