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Biomedical subjects

Teruki Sone

Publications and source records attributed to Teruki Sone.

At least 19 recordsLinked to original sources

[Diagnostic criteria of male osteoporosis].

With coming of aged society, male patients with osteoporosis are increasing, and it is important to prevent and treat them. In male osteoporosis, secondary osteoporosis is relatively common as an etiology, and therefore it is necessary to exclude secondary causes, when it will be diagnosed. In female a rapid decrease of bone mineral density (BMD) is observed after menopause, while in male such changes are not. Japanese Society of Bone and Mineral Research proposed diagnostic criteria of male osteoporosis, which 70% of young adult mean (YAM) of hip BMD was used as cut-off value for osteoporosis.

Adult↗

[DXA, QUS, and radiogram].

In this article, an outline of dual energy X-ray absorptiometry (DXA), quantitative ultrasound (QUS), and radiogram, and their characteristics, problems, and assessment of osteoporosis in the elderly were reviewed. It is well known that both DXA and QUS are available to risk assessment of fractures. However, because lumbar bone mineral density (BMD) is overestimated in the elderly complicated with fracture, deformity, and osteosclerotic change in the lumbar vertebra (e), some cases are unsuitable to measurement of BMD with lumbar DXA. To define vertebral fracture, visual semiquantitative and morphometric methods are used. In addition, differential diagnosis of osteoporotic vertebral fractures is necessary. Thus, to establish an exact diagnosis of osteoporosis in the elderly, it is important to understand some problems associated with the elderly.

Absorptiometry, Photon↗

Fractal analysis of bone architecture at distal radius.

Bone strength depends on bone quality (architecture, turnover, damage accumulation, and mineralization) as well as bone mass. In this study, human bone architecture was analyzed using fractal image analysis, and the clinical relevance of this method was evaluated. The subjects were 12 healthy female controls and 16 female patients suspected of having osteoporosis (age range, 22-70 years; mean age, 49.1 years). High-resolution CT images of the distal radius were acquired and analyzed using a peripheral quantitative computed tomography (pQCT) system. On the same day, bone mineral densities of the lumbar spine (L-BMD), proximal femur (F-BMD), and distal radius (R-BMD) were measured by dual-energy X-ray absorptiometry (DXA). We examined the correlation between the fractal dimension and six bone mass indices. Subjects diagnosed with osteopenia or osteoporosis were divided into two groups (with and without vertebral fracture), and we compared measured values between these two groups. The fractal dimension correlated most closely with L-BMD (r=0.744). The coefficient of correlation between the fractal dimension and L-BMD was very similar to the coefficient of correlation between L-BMD and F-BMD (r=0.783) and the coefficient of correlation between L-BMD and R-BMD (r=0.742). The fractal dimension was the only measured value that differed significantly between both the osteopenic and the osteoporotic subjects with and without vertebral fracture. The present results suggest that the fractal dimension of the distal radius can be reliably used as a bone strength index that reflects bone architecture as well as bone mass.

Absorptiometry, Photon↗

Side-to-side differences in cortical bone mineral density of tibiae in young male athletes.

The importance of physical activity in the development and maintenance of bone mineral density (BMD) is widely accepted. However, the effects on cortical BMD have not been clarified in detail. The present study examined bilateral asymmetries in cortical BMD of the tibia using peripheral quantitative computed tomography. Subjects comprised 37 young male athletes and 57 controls (age range, 18-28 years). BMD and geometrical indices were determined in bilateral tibiae. Cortical and trabecular BMD were calculated at the diaphysis and distal metaphysis, respectively. Cortical width, periosteal cross-sectional area, and cross-sectional moment of inertia were calculated using tomographic data of the tibial diaphysis. In athletes, the non-dominant leg showed greater cortical BMD than the dominant leg (mean difference, 5.42%; P < 0.0001). Cortical width and moment of inertia were also greater in the non-dominant leg. Periosteal area displayed no significant difference between legs. The control group exhibited similar results except for cortical BMD. No differences in trabecular BMD were noted between legs in either athletes or controls. These results implies the existence of mechanisms for the mechanical adaptation of cortical BMD. Dominant leg is used for mobility or manipulation whereas the non-dominant leg contributes to support the actions of the dominant leg. Loading differences in bilateral legs in young athletes might affect the remodeling rate leading to the side-to-side differences in cortical BMD.

Adolescent↗

[Fractal analysis of trabecular architecture: with special reference to slice thickness and pixel size of the image].

Many analyses of bone microarchitecture using three-dimensional images of micro CT (microCT) have been reported recently. However, as extirpated bone is the subject of measurement on microCT, various kinds of information are not available clinically. Our aim is to evaluate usefulness of fractal dimension as an index of bone strength different from bone mineral density in in-vivo, to which microCT could not be applied. In this fundamental study, the relation between pixel size and the slice thickness of images was examined when fractal analysis was applied to clinical images. We examined 40 lumbar spine specimens extirpated from 16 male cadavers (30-88 years; mean age, 60.8 years). Three-dimensional images of the trabeculae of 150 slices were obtained by a microCT system under the following conditions: matrix size, 512 x 512; slice thickness, 23.2 em; and pixel size, 18.6 em. Based on images of 150 slices, images of four different matrix sizes and nine different slice thicknesses were made using public domain software (NIH Image). The threshold value for image binarization, and the relation between pixel size and the slice thickness of an image used for two-dimensional and three-dimensional fractal analyses were studied. In addition, the box counting method was used for fractal analysis. One hundred forty-five in box counting was most suitable as the threshold value for image binarization on the 256 gray levels. The correlation coefficients between two-dimensional fractal dimensions of processed images and three-dimensional fractal dimensions of original images were more than 0.9 for pixel sizes < or =148.8 microm at a slice thickness of 1 mm, and < or =74.4 microm at one of 2 mm. In terms of the relation between the three-dimensional fractal dimension of processed images and three-dimensional fractal dimension of original images, when pixel size was less than 74.4 microm, a correlation coefficient of more than 0.9 was obtained even for the maximal slice thickness (1.74 mm) examined in this study.

Adult↗

Comparison of vertebral morphometry in the lumbar vertebrae by T1-weighted sagittal MRI and radiograph.

PURPOSE: In this study, we investigated the usefulness of T1-weighted sagittal MR images at the lumbar vertebrae in the vertebral morphometry, in comparison with lateral radiographs. SUBJECTS AND METHODS: The subjects were 42 men (mean age: 53.0 years) and 41 women (mean age: 57.9 years). Both MRI and radiography of the lumbar spine were performed within 1 month. The vertebral body heights and their ratios were measured by the semi-automatic measuring system. The frequency of a vertebral fracture and the absolute value of vertebral body height in both morphometry were compared. RESULTS: Based on the criteria for prevalent vertebral fracture using vertebral height ratios, the vertebrae were classified into four groups. Group 1 was defined as the vertebrae without fracture (n=347 vertebrae). Groups 2-4 were defined as the vertebrae with fracture; Group 2 by both MRI and X-ray morphometry (n=17), Group 3 by MRI morphometry alone (n=17), and Group 4 by X-ray morphometry alone (n=4). The rate of prevalent vertebral fracture diagnosed by MRI morphometry (8.8%) was higher than that by X-ray morphometry (5.5%). In Group 1, the values of anterior and posterior vertebral height obtained by MRI morphometry were greater than those obtained by X-ray morphometry. On the other hand, the values of central vertebral height obtained by MRI morphometry were smaller than those obtained by X-ray morphometry. CONCLUSION: Severe biconcave deformity of vertebra can be detected by both MRI and X-ray morphometry, although mild biconcave deformity can be detected only by MRI morphometry.

Adolescent↗

[Increase in bone mineral density and its effect on fracture risk].

Over the past 10 years a number of clinical trials have evaluated several agents for treatment and prevention of osteoporosis, and demonstrated that these agents can increase bone mineral density (BMD) and reduce the incidence of fracture. Although the relationship between antifracture efficacy and changes in BMD varies greatly among reports, all of them suggest the presence of antifracture effect that is mediated by factors other than BMD. Fracture risk is associated with bone strength and nonskeletal risk factors such as the propensity to fall. Bone strength is primarily determined by BMD, but bone quality such as bone remodeling, structural and material properties is also an important determinant of bone strength. Some of the agents for osteoporosis treatment might provide the atifracture effect mainly through the improvement of bone quality. The mechanism how the reduction in fracture risk is achieved deserves further studies.

Alendronate↗

[Bone structure and bone quality].

Bone strength is determined by bone mineral density, geometry of bone, microarchitecture of bone and quality of bone material. Recent data have shown that the prediction of bone strength can be greatly improved by including parameters of bone structure in the analysis. However, the relative importance of bone density and architecture in the etiology of bone fractures, an issue referred to as bone quality, is poorly understood. The challenge for the future will be to evaluate bone quality in vivo with the same or better accuracy than the invasive methods in use today.

Animals↗

Three-dimensional trabecular bone architecture of the lumbar spine in bone metastasis from prostate cancer: comparison with degenerative sclerosis.

OBJECTIVE: Prostate cancer frequently metastasizes to bone, inducing osteosclerotic lesions. The objective of this study was to clarify the three-dimensional (3D) trabecular bone microstructure in bone metastasis from prostate cancer by comparison with normal and degenerative sclerotic bone lesions, using microcomputed tomography (micro-CT). DESIGN AND MATERIALS: A total of 32 cancellous bone samples were excised from the lumbar spine of six autopsy patients: 15 metastatic samples (one patient), eight degenerative sclerotic samples (four patients) and the rest from normal sites (three patients). The samples were serially scanned cross-sectionally by micro-CT with a pixel size of 23.20 microm, slice thickness of 18.56 microm, and image matrix of 512 x 512. Each image data set consisted of 250 consecutive slices. The volumes of interest (96 x 96 x 120 voxels) were defined in the original image sets and 3D indices of the trabecular microstructure were determined. RESULTS: The trabecular thickness (Tb.Th) in degenerative sclerotic lesions was significantly higher than that in normal sites, whereas no significant difference was observed in trabecular number (Tb.N). By contrast, in metastatic lesions, the Tb.N was significantly higher with increased bone volume fraction (BV/TV) than in normal sites, and no significant difference was found in Tb.Th. The characteristics of the trabecular surface in the metastatic samples showed concave structural elements with an increase in BV/TV, indicating osteolysis of the trabecular bone. In 3D reconstructed images, increased trabecular bone with an irregular surface was observed in samples from metastatic sites, which were uniformly sclerotic on soft X-ray radiographs. CONCLUSION: These results support, through 3D morphological features, the strong bone resorption effect in bone metastasis from prostate cancer.

Adult↗

Nuclear medicine practice in Japan: a report of the 5th nationwide survey in 2002.

UNLABELLED: The Subcommittee on Survey of Nuclear Medicine Practice in Japan has performed a nationwide survey of nuclear medicine practice every five years since 1982 to provide detailed information on its current status. METHODS: Questionnaires were sent to every institution known to the Japan Radioisotope Association to provide nuclear medicine examinations. The questionnaires address the number and kind of nuclear medicine examinations performed as well as the kind and dose of the radiopharmaceuticals used during the month of June 2002. The annual number of total or specific examinations was then estimated. RESULTS: Of the institutions sent questionnaires, 1,204 were for in vivo study, 124 were for in vitro study, and 36 were for positron emission tomography (PET) study. Out of these, 95.8% answered them. A total of 1,697 gamma cameras were installed in 1,160 facilities, of which 50% were dual-head cameras. The estimated total annual number of examinations expressed by the number of administered radiopharmaceuticals was 1.60 million, similar to that of the previous survey (1997). The frequency of study with single photon emission computed tomography (SPECT) increased to 40%, from 30% in the previous survey. The scintigraphy most frequently performed was bone (35%), followed by myocardium (24%) and brain perfusion (12%). All showed a continuous increase over the past 20 years. Tumor imaging, however, fell from third to fourth place. The most commonly used radiopharmaceutical for each scintigraphy was 99mTc-HMDP for bone, 201Tl-chloride for myocardium, 67Ga-citrate for tumor, and 123I-IMP for brain. A total of 29,376 PET studies were performed yearly. Among them, 18F-FDG rapidly increased 3.7-fold. 131I therapy for thyroid cancer and hyperthyroidism was conducted yearly in 1,647 and 3,347 patients, respectively. A total of 31.35 million in vitro radioassays were carried out yearly, the number of which has been decreasing continuously since 1992. CONCLUSIONS: It was proved that the content of nuclear medicine practice in Japan has changed in the past five years. This report might be useful for understanding the current trends of nuclear medicine practice in Japan.

Health Care Surveys↗

Analysis of three-dimensional microarchitecture and degree of mineralization in bone metastases from prostate cancer using synchrotron microcomputed tomography.

Bone architecture and mineralization are generally considered to be important components of bone quality, and determine bone strength in conjunction with bone mineral density. Although the features of bone quality have recently been studied under conditions in which bone density decreases, such as osteoporosis, little is known in osteosclerotic diseases. In this study, we compared the trabecular bone microarchitecture and degree of mineralization between osteoblastic bone metastasis and degenerative osteosclerosis using synchrotron radiation microcomputed tomography (SR-microCT). Small cubes of lumbar vertebrae were excised postmortem from the sites of osteoblastic metastasis, degenerative osteosclerosis, and comparative sites of normal subjects without skeletal lesions. The samples were imaged at high spatial resolution (voxel size = 6 microm) using the SR-microCT system developed at the synchrotron facility (SPring-8), Hyogo, Japan. The three-dimensional (3D) image data were then analyzed for the morphological parameters and the degree of mineralization of bone (DMB). Trabecular bone in metastatic lesions showed a highly connected and isotropic network pattern compared with the normal samples. Although the trabecular surface was markedly irregular in osteoblastic metastases, no significant difference was found in the mean trabecular thickness (Tb.Th) between osteoblastic metastases and normal tissue. The DMB of trabeculae in metastatic lesions had a broader range and lower mean than that of the normal tissue. In contrast, trabecular bone in degenerative osteosclerotic lesions showed a similar degree of anisotropy (DA) and connectivity to the normal tissue, whereas the trabecular thickness was greater in the degenerative osteosclerotic lesions. No significant difference in DBM between degenerative osteosclerosis and normal tissue was detected. These results characterize the difference in bone quality between osteoblastic bone metastasis and degenerative osteosclerosis. Further study on the relationship between bone quality and bone strength in these osteosclerotic lesions would improve our understanding of the pathogenesis of bone fragility.

Adult↗

[Methods for assessing bone quality].

Bony quality, such as trabecular architecture and bone turnover, has conventionally been estimated by histomorphometric analysis of bone biopsy specimen. In recent years, these information can be obtained noninvasively by using CT, MRI, and biochemical markers. In the examination of bone specimen, several physical methods are newly utilized to assess the bone quality, providing detailed information on bone mineral and matrix protein.

Biomarkers↗

[Diagnosis and medical checkup of osteoporosis].

In this article, the diagnosis and medical checkup of osteoporosis are reviewed. Osteoporosis is defined by bone histomorphometry, radiography, morphometry of vertebral body, and semiquantitative assessment of vertebral deformity. Diagnostic criteria of osteoporosis in Japanese Society for Bone and Mineral Research is composed of fragility fracture and low bone mass. The aim of osteoporosis checkup is to detect subjects with low bone mass using measurement of bone mineral density.

Bone Density↗