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Biomedical subjects

Naoki Miura

Publications and source records attributed to Naoki Miura.

14 recordsLinked to original sources

Multiple brain networks for visual self-recognition with different sensitivity for motion and body part.

Multiple brain networks may support visual self-recognition. It has been hypothesized that the left ventral occipito-temporal cortex processes one's own face as a symbol, and the right parieto-frontal network processes self-image in association with motion-action contingency. Using functional magnetic resonance imaging, we first tested these hypotheses based on the prediction that these networks preferentially respond to a static self-face and to moving one's whole body, respectively. Brain activation specifically related to self-image during familiarity judgment was compared across four stimulus conditions comprising a two factorial design: factor Motion contrasted picture (Picture) and movie (Movie), and factor Body part a face (Face) and whole body (Body). Second, we attempted to segregate self-specific networks using a principal component analysis (PCA), assuming an independent pattern of inter-subject variability in activation over the four stimulus conditions in each network. The bilateral ventral occipito-temporal and the right parietal and frontal cortices exhibited self-specific activation. The left ventral occipito-temporal cortex exhibited greater self-specific activation for Face than for Body, in Picture, consistent with the prediction for this region. The activation profiles of the right parietal and frontal cortices did not show preference for Movie Body predicted by the assumed roles of these regions. The PCA extracted two cortical networks, one with its peaks in the right posterior, and another in frontal cortices; their possible roles in visuo-spatial and conceptual self-representations, respectively, were suggested by previous findings. The results thus supported and provided evidence of multiple brain networks for visual self-recognition.

Adolescent↗

Brain activation during the course of sentence comprehension.

The purpose of this study is to determine, by functional magnetic resonance imaging, how the activated regions of the brain change as a Japanese sentence is presented in a grammatically correct order. In this study, we presented constituents of a sentence to Japanese participants one by one at regular intervals. The results showed that the left lingual gyrus was significantly activated at the beginning of the sentence, then the left inferior frontal gyrus and left supplementary motor area, in the middle of the sentence, and the left inferior temporal gyrus, at the end of the sentence. We suggest that these brain areas are involved in sentence comprehension in this temporal order.

Adolescent↗

Cortical activation during reading of ancient versus modern Japanese texts: fMRI study.

The purpose of this study was to investigate human brain activity during the reading of ancient Japanese texts using functional magnetic resonance imaging. Thirty right-handed normal Japanese subjects performed two reading tasks: covert reading of (1) ancient and (2) modern Japanese text. Common areas are activated during both tasks. Activity in the left inferior frontal cortices increased during the reading of ancient Japanese text compared with the reading of modern Japanese text, whereas occipital activity increased during the reading of modern Japanese text. Our results indicate that ancient Japanese language may be processed as a foreign language.

Adolescent↗

New preoperative evaluation system of the physical findings of aged patients with femoral neck fracture.

We devised our own method of evaluating a patient's general condition at admission, and estimated the usefulness of this method for evaluating patients with femoral neck fractures and its relationship to prognosis, in particular, factors influencing poor functional and vital prognoses. We examined 83 patients between January 1992 and March 1996 who had been treated for more than 30 days after injury and had no malignant tumor as an underlying disease. The new criteria for systemic status evaluation at admission were chosen by reference to the preoperative status classification system of the American Society of Anesthesiologists. Three evaluation grades were established for each of eight items (pulmonary function, heart disease, hypertension, glucose tolerance impairment, renal function, hepatic function, anemia, and hypoproteinemia). Pulmonary function and heart disease were evaluated on a 20-point scale, and the other six items on a 10-point scale; the maximum possible score was 100 points. Scores were statistically analyzed in relation to functional and vital prognoses. Poor prognosis factors were determined and ranked. We found that the factors associated with a poor functional prognosis were heart disease, glucose tolerance impairment, and pulmonary dysfunction, and those associated with a poor vital prognosis were renal dysfunction and glucose tolerance impairment.

Aged↗

The potential and limitations of cartilage-specific (V+C)(-) fibronectin and cartilage oligomeric matrix protein as osteoarthritis biomarkers in canine synovial fluid.

OBJECTIVE: To determine if levels of the cartilage-specific (V+C)(-) fibronectin isoform in the synovial fluid is associated with cartilage change during osteoarthritis. DESIGN: Synovial fluid was collected from 26 healthy dogs presenting to the Orthopedic Surgery Clinic with unilateral cranial cruciate rupture, 22 control dogs, and 13 dogs from a colony maintained for the study of canine hip dysplasia. Total fibronectin, (V+C)(-) fibronectin, and cartilage oligomeric matrix protein (COMP) were quantitated by ELISA assays. Statistical analysis used Wilcoxon's signed-rank and rank-sum tests and Spearman's rank correlation. RESULTS: The concentration of total fibronectin was increased in affected (P<0.0001) and contralateral (P=0.0005) knees of the clinic population (compared to unaffected knees in colony controls). Both (V+C)(-) fibronectin and COMP concentrations were elevated in the contralateral knees in clinical patients relative to unaffected knees in the colony controls (P=0.03 and P=0.04, respectively), and relative to the affected knees (P=0.003); however, corrections for joint effusions suggest elevated totals in the affected knees. (V+C)(-) fibronectin and COMP concentrations were correlated (r(sp)=0.74; P<0.0001) in 30 unaffected knees of patients and colony controls. Total fibronectin was correlated negatively with months since the initial injury (r(sp)=-0.44; P=0.03) in the affected joints. The intraoperative lesion severity score did not correlate with total fibronectin or (V+C)(-) fibronectin (P>or=0.35). CONCLUSIONS: Concentration of total fibronectin in synovial fluid might be a useful biomarker for cross-sectional studies in osteoarthritis, but only (V+C)(-) fibronectin provides information specifically about cartilage damage. Elevated concentrations of (V+C)(-) fibronectin and COMP seen in the contralateral knees of patients with cranial cruciate rupture might indicate cartilage changes early in the disease process (pre-clinical). However, the wide range of values obtained limits the diagnostic value for any one individual. Joint effusions obscure the total amount of biomarkers in affected synovial joints.

Animals↗

The human parietal cortex is involved in spatial processing of tongue movement-an fMRI study.

The human tongue is so sensitive and dexterous that spatial representations of the inside of the oral cavity for the tongue movement are naturally expected to exist. In the present study, we examined the brain activity associated with spatial processing during tongue movements using a functional magnetic resonance imaging technique. Twenty-four normal subjects participated in the study, which consisted of a periodic series of three blocks; resting of the tongue, tongue movement (pressing the inside of a tooth with the tip of the tongue), and tongue retraction. The cerebral fields of activation during the tongue movement to the left and right side relative to those during rest were found in the primary sensorimotor area and supplementary motor area bilaterally, and in the left inferior parietal lobule (IPL). The activation areas during the tongue retraction relative to those during rest were almost the same, except that activation in the left IPL was not observed. The fields of activation during tongue movement to the left and right side relative to those during tongue retraction were found bilaterally in the dorsal premotor area, superior parietal lobule (SPL), and the IPL. The results indicate that the bilateral SPL and IPL were specifically involved in the processing for human tongue movement. Although no significant laterality was observed, the left parietal area tended to show greater activation in statistical values and area than the right parietal area, thus indicating the possibility that this processing for human tongue movement is related to that for language.

Adult↗

Synoviolin/Hrd1, an E3 ubiquitin ligase, as a novel pathogenic factor for arthropathy.

Rheumatoid arthritis (RA) is one of the most critical articular diseases with synovial hyperplasia followed by impairment of quality of life. However, the mechanism(s) that regulates synovial cell outgrowth is not fully understood. To clarify its mechanism(s), we carried out immunoscreening by using antirheumatoid synovial cell antibody and identified and cloned "Synoviolin/Hrd1", an E3 ubiquitin ligase. Synoviolin/Hrd1 was highly expressed in the rheumatoid synovium, and mice overexpressing this enzyme developed spontaneous arthropathy. Conversely, synoviolin/hrd1(+/-) mice were resistant to collagen-induced arthritis by enhanced apoptosis of synovial cells. We conclude that Synoviolin/Hrd1 is a novel causative factor for arthropathy by triggering synovial cell outgrowth through its antiapoptotic effects. Our findings provide a new pathogenetic model of RA and suggest that Synoviolin/Hrd1 could be targeted as a therapeutic strategy for RA.

Amino Acid Sequence↗

Cortical activation during reading aloud of long sentences: fMRI study.

The purpose of this study was to investigate human brain activity during the reading aloud of Japanese sentences using fMRI. Twenty-three right-handed normal Japanese subjects performed three reading tasks: covert reading of meaningful or meaningless sentences, and reading aloud of meaningful sentences. Areas in the bilateral frontal and temporal cortices were activated during the reading-aloud task compared with the covert reading task. In addition, activation of these brain areas showed significant positive correlation with the reading speed during the reading-aloud task. Our results indicate that bilateral frontal-temporal networks are involved in phonological processing during reading aloud.

Adolescent↗

Successful use of an acceleration rate response pacemaker with a transvenous steroid-eluting screw-in lead for third-degree atrioventricular block in a labrador retriever.

Permanent pacemakers are commonly used in veterinary practice and can have a dramatic effect on the treatment of heart block. A Labrador Retriever dog suffering from exercise intolerance secondary to third degree atrioventricular block was treated with a new pacemaker system. A steroid-eluting screw-in type lead that has the advantage of being more fixed to the myocardial wall without increasing the pacing threshold was used. The heart rate was regulated with an acceleration sensing pacemaker generator that included several automatic modulation systems. Nineteen months after implantation, the dog has a normal level of activity. The present case suggests that this pacemaker design may offer important advantages for canine patients.

Animals↗

Steroid injection therapy in a feline solitary bone cyst.

A nine months old Japanese domestic cat with a solitary bone cyst, which is a benign tumor-like lesion and is particularly uncommon in feline practice was referred. Radiographic examination revealed an expansive radiolucency in the distal metaphysis of the right ulna and pathologic fracture. The histological examination demonstrated immature osteogenesis consisting of osteoblasts surrounded by connective tissue. We applied drainage and instillation of steroid solution into the cystic cavity. Clinical signs, including lameness and pain, disappeared three weeks after the therapy started. Fourteen months after the therapy, the cystic lesion of bone was remodeling successfully without re-developing. We conclude that our procedure was useful treatment in this case.

Alkaline Phosphatase↗

The hemodynamic effects of acute myocardial ischemia and reperfusion in Clawn miniature pigs.

Acute myocardial ischemia was induced by occluding the LAD in Clawn miniature pigs. Eight pigs (group 1) were subjected to 6 h ischemia and nine pigs (group 2) were subjected to 20 min ischemia, followed by reperfusion for 340 min. Three animals of the group 1 died due to ventricular fibrillation after occlusion and in group 2, four animals died due to the arrhythmia after reperfusion. Though the ischemic area of group 2 (15.6% of the ventricle) was narrower than that of group 1 (21.7%), the survival rate was lower. We supposed that ischemia-reperfusion injuries were strongly connected with the hemodynamics of group 2. Clawn miniature pigs are useful experimental animals for myocardial ischemic researches.

Animals↗

Effects of milrinone on hemodynamics and regional blood flow in the hypoxic dog.

Milrinone, a therapeutic agent for acute congestive heart failure, has both inotropic and vasodilatory effects, but investigations of these effects of milrinone were almost all conducted under normoxia, and few reports have investigated how milrinone affects the hemodynamics and redistribution of regional blood flow under severe hypoxia. By using colored microspheres, we investigated how milrinone affects hemodynamics and the redistribution of regional blood flow under severe hypoxia. Twelve healthy mongrel dogs were divided into 2 groups. The milrinone group was infused with milrinone cumulatively at 25, 75 and 250 microg/kg for 5 min each. The intact group was infused with saline instead of milrinone. We measured the hemodynamics and cerebrum, cerebellum and kidney blood flow in both groups. Both groups were inspired with 10% oxygen. Milrinone induced significant decrease in mean pulmonary artery and pulmonary vascular resistance, compared with the intact group. In both groups slight decreases in mean arterial pressure, systemic vascular resistance and double-product were seen. In regional blood flow, milrinone-induced increases in blood flow were seen in the cerebrum, cerebellum, and especially in the kidneys. Milrinone's vasodilatory effects were sufficient even under hypoxia. And milrinone increased regional blood flow slightly in the cerebrum and cerebellum, and significantly in the kidneys. These results suggested that milrinone protects against hypoxia-induced organ damage especially in the kidneys. In addition, milrinone is very potent in improving severe congested hemodynamics which complicates hypoxic pulmonary vasoconstriction.

Animals↗

Possible role of transcriptional coactivator P/CAF and nuclear acetylation in calcium-induced keratinocyte differentiation.

Several nuclear factors, called coactivators, such as CREB (cAMP response element binding protein)-binding protein (CBP) and p300/CBP associated factor (P/CAF), have intrinsic histone acetyltransferase (HAT) activity. Recent studies have shown that, in addition to histones, transcriptional regulatory molecules are also targets of HATs, and nuclear acetylation is thought to be involved in several biological events. We observed that a high concentration of calcium induced HAT activity in the keratinocyte cell line, HaCaT. The steady-state level of specific acetylated nuclear proteins changed in a dynamic fashion in HaCaT cells induced with 1.2 mm calcium. One (approximately 97-kDa acetylated protein designated as ap97) was transiently induced, one (ap78) was induced and then continuously expressed, and one (ap70) disappeared with time. Although the up-regulation of ap70 and ap78 was not influenced by GF109203X, a specific inhibitor of protein kinase C (PKC), the calcium-induced accumulation of ap97 and the induction of P/CAF HAT activity were similarly attenuated by GF109203X. Notably, mutant P/CAF lacking HAT activity repressed the expression of ap97 and involucrin, a keratinocyte differentiation marker. Our results suggest that P/CAF HAT activity and induction of ap97 are involved in calcium-dependent keratinocyte differentiation.

Acetyltransferases↗

Automatic brain tissue extraction method using erosion-dilation treatment (BREED) from three-dimensional magnetic resonance imaging T1-weighted data.

To improve the efficiency of brain image analysis, we propose a full-automatic method for extracting brain tissue from three-dimensional magnetic resonance imaging of T1-weighted data on the human head (brain tissue extraction method using erosion-dilation treatment [BREED]). The extraction processing is realized by combining signal intensity thresholding by means of the discriminant analysis method and an erosion-dilation treatment of the image. The accuracy of BREED is evaluated using both simulated and subject data. BREED can extract brain tissues with high accuracy (approximately 97%) for either simulated or subject data.

Automation↗