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Masashi Kawasaki

Publications and source records attributed to Masashi Kawasaki.

18 recordsLinked to original sources

Stimulus selectivity is enhanced by voltage-dependent conductances in combination-sensitive neurons.

Central sensory neurons often respond selectively to particular combinations of stimulus attributes, but we know little about the underlying cellular mechanisms. The weakly electric fish Gymnarchus discriminates the sign of the frequency difference (Df) between a neighbor's electric organ discharge (EOD) and its own EOD by comparing temporal patterns of amplitude modulation (AM) and phase modulation (PM). Sign-selective neurons in the midbrain respond preferentially to either positive frequency differences (Df >0 selective) or negative frequency differences (Df <0 selective). To study the mechanisms of combination sensitivity, we made whole cell intracellular recordings from sign-selective midbrain neurons in vivo and recorded postsynaptic potential (PSP) responses to AM, PM, Df >0, and Df <0. Responses to AM and PM consisted of alternating excitatory and inhibitory PSPs. These alternating responses were in phase for the preferred sign of Df and offset for the nonpreferred sign of Df. Therefore a certain degree of sign selectivity was predicted by a linear sum of the responses to AM and PM. Responses to the nonpreferred sign of Df, but not the preferred sign of Df, were substantially weaker than linear predictions, causing a significant increase in the actual degree of sign selectivity. By using various levels of current clamp and comparing our results to simple models of synaptic integration, we demonstrate that this decreased response to the nonpreferred sign of Df is caused by a reduction in voltage-dependent excitatory conductances. This finding reveals that nonlinear decoders, in the form of voltage-dependent conductances, can enhance the selectivity of single neurons for particular combinations of stimulus attributes.

Algorithms↗

Ambiguous encoding of stimuli by primary sensory afferents causes a lack of independence in the perception of multiple stimulus attributes.

Accurate sensory perception often depends on the independent encoding and subsequent integration of multiple stimulus attributes. In the weakly electric fish Eigenmannia, P- and T-type primary afferent fibers are specialized for encoding the amplitude and phase, respectively, of electrosensory stimuli. We used a stimulus estimation technique to quantify the ability of P- and T-units to encode random modulations in amplitude and phase. As expected, P-units exhibited a clear preference for encoding amplitude modulations, whereas T-units exhibited a clear preference for encoding phase modulations. Surprisingly, both types of afferents also encoded their nonpreferred stimulus attribute when it was presented in isolation or when the preferred stimulus attribute was sufficiently weak. Because afferent activity can be affected by modulations in either amplitude or phase, it is not possible to unambiguously distinguish between these two stimulus attributes by observing the activity of a single afferent fiber. Simple model neurons with a preference for encoding either amplitude or phase also encoded their nonpreferred stimulus attribute when it was presented in isolation, suggesting that such ambiguity is unavoidable. Using the well known jamming avoidance response as a probe of electrosensory perception, we show that the ambiguity at the single-neuron level gives rise to a systematic misrepresentation of stimuli at the population level and a resulting misperception of the amplitude and phase of electrosensory stimuli.

Action Potentials↗

Interruption of pacemaker signals by a diencephalic nucleus in the African electric fish, Gymnarchus niloticus.

The African electric fish Gymnarchus niloticus rhythmically emits electric organ discharges (EODs) for communication and navigation. The EODs are generated by the electric organ in the tail in response to the command signals from the medullary pacemaker complex, which consists of a pacemaker nucleus (PN), two lateral relay nuclei (LRN) and a medial relay nucleus (MRN). The premotor structure and its modulatory influences on the pacemaker complex have been investigated in this paper. A bilateral prepacemaker nucleus (PPn) was found in the area of the dorsal posterior nucleus (DP) of the thalamus by retrograde labeling from the PN. No retrogradely labeled neurons outside the pacemaker complex were found after tracer injection into the LRN or MRN. Accordingly, anterogradely labeled terminal fibers from PPn neurons were found only in the PN. Iontophoresis of L-glutamate into the region of the PPn induced EOD interruptions. Despite the exclusive projection of the PPn neurons to the PN, extracellular and intracellular recordings showed that PN neurons continue their firing while MRN neurons ceased their firing during EOD interruption. This mode of EOD interruption differs from those found in any other weakly electric fishes in which EOD cessation mechanisms have been known.

Action Potentials↗

Neuronal sensitivity to microsecond time disparities in the electrosensory system of Gymnarchus niloticus.

To perform the jamming avoidance response (JAR), the weakly electric fish Gymnarchus detects time disparities on the order of microseconds between electrosensory signals received by electroreceptors in different parts of the body surface. This paper describes time-disparity thresholds of output neurons of the electrosensory lateral line lobe (ELL), where the representation of timing information is converted from a time code to a firing-rate code. We recorded extracellular single-unit responses from pyramidal cells in the ELL to sinusoidally modulated time disparity with various depths (0-200 micros). Threshold sensitivity to time disparities measured in 123 units ranged from 0.5 to 100 micros and was < or =5 micros in 60% of the units. The units from pyramidal cells in the inner and outer cell layers of the ELL responded equally well to small time disparities. The neuronal thresholds to time disparities found in the ELL are comparable with those demonstrated in behavioral performance of the JAR. The sensitivity of ELL units to small time disparities was unaffected when the center of the cyclic time-disparity modulation was shifted over a wide range (up to 250 micros), indicating an adaptation mechanism for steady-state time disparities that preserves the sensitivity to small dynamic changes in time disparities. Phase-locked input neurons, which provide time information to the ELL by phase-locked firing of action potentials, did not adapt to steady-state time shifts of sensory signals. This suggests that the adaptation emerges within the ELL.

Action Potentials↗

Gender differences in platform measures of balance in rural community-dwelling elders.

The purpose of this study was to establish the age-related reference values of the platform measures of balance, which would serve as a baseline for comparing the postural insecurity of patients, and to clarify the characteristics of balance in community-dwelling elders. A total of 343 participants consisting of 107 males and 236 females, aged 55--83 years, were investigated in this study. The movement of the center of pressure (COP) was measured using a stable force platform to quantify postural stability. The examination was performed twice, each lasting for 30s, under open-eyes and closed-eyes conditions. In both genders, the movement of the COP showed a significant increase with age. Males showed a stronger positive correlation between age and platform measures and significantly higher levels of amplitude when compared with females. The movement of the COP increased under closed-eyes condition, particularly in males. The characteristics of balance differed between the genders. That is, males swayed more under both open-eyes and closed-eyes conditions, and were more influenced by visual deprivation than females.

Aged↗

Total hip arthroplasty after failed transtrochanteric rotational osteotomy for avascular necrosis of the femoral head.

We compared the clinical and radiographic outcome of 15 hips converted to total hip arthroplasty after failed transtrochanteric rotational osteotomy (THA after TRO) for avascular necrosis of the femoral head (ANFH) with that of a matched control group of 16 hips with primary THA for ANFH. The operating time in THA after TRO was significantly longer than that in primary THA. Perioperative blood loss in THA after TRO was significantly more than that in primary THA. Postoperative complications were observed in 4 hips of THA after TRO. The Harris Hip Score, the stability of implants, and survival rates did not significantly differ in both groups. We conclude that TRO did not influence the outcome of secondary THA at short- and middle-term follow-up.

Adult↗

Nonlinear response properties of combination-sensitive electrosensory neurons in the midbrain of Gymnarchus niloticus.

The jamming avoidance response of the weakly electric fish Gymnarchus niloticus relies on determining the sign of the frequency difference (Df) between the fish's own electric organ discharge (EOD) and that of a neighbor, which is achieved by comparing modulations in amplitude (AM) and phase (PM) that result from the summation of their EODs. These two stimulus features are processed in separate pathways that converge in the torus semicircularis on combination-sensitive neurons, many of which are selective for the sign of Df. We recorded extracellular single-unit responses to independent stimulation with AM and PM and combined AM-PM stimulation to determine how sign selectivity is established. Responses to AM and PM frequently summated nonlinearly, leading to sign-selective responses as a result of facilitation to the preferred sign of Df and/or suppression to the nonpreferred sign of Df. Facilitation typically occurred when responses to AM and PM were aligned, whereas suppression typically occurred when they were offset. By experimentally manipulating the degree of alignment between these two responses, we found that the summed response was dependent on their relative timing. In addition, we found a unique class of units that were sensitive to differences in amplitude between two body surfaces. This sensitivity rendered such units immune to the problem of orientation ambiguity, in which the sign selectivity of a single neuron reverses with changes in stimulus orientation. We discuss potential synaptic mechanisms for driving nonlinear responses in these and other combination-sensitive neurons.

Animal Communication↗

Engineered interface of magnetic oxides.

Interface-selective probing of magnetism is a key issue for the design and realization of spin-electronic junction devices. Here, magnetization-induced second-harmonic generation was used to probe the local magnetic properties at the interface of the perovskite ferromagnet La(0.6)Sr(0.4)MnO3 with nonmagnetic insulating layers, as used in spin-tunnel junctions. We show that by grading the doping profile on an atomic scale at the interface, robust ferromagnetism can be realized around room temperature. The results should lead to improvements in the performance of spin-tunnel junctions.

Journal Article↗

Unitary giant synapses embracing a single neuron at the convergent site of time-coding pathways of an electric fish, Gymnarchus niloticus.

Phase-locking neurons in the electrosensory lateral line lobe (ELL) of a weakly electric fish, Gymnarchus niloticus, fire an action potential in response to each cycle of the sinusoidal electrosensory signal (350-500 Hz) created by the fish's own electric organ. The exact firing times of the phase-locking neurons are altered (time-shifted) by capacitance of electrolocation objects or by electric organ discharges of other individuals. The magnitude of the time shifts depends on the location of the neurons' receptive field on the skin; thus, time disparities arise between the firing of phase-locking neurons. To compute these disparities, there should be a site where these phase-locking neurons converge. In this study we morphologically identified a novel cell type, which we named the "ovoidal cell", that receives the convergent projections of phase-locking neurons in the inner cell layer (ICL) of the ELL. We labeled these neurons with biocytin and examined them by light and electron microscopy. The giant cells and the S-type primary afferents, two types of phase-locking neurons, respectively terminate on the soma via chemical synapses and on the dendrite of the ovoidal cells via mixed synapses. Each terminal of the giant cells embraces the soma of an ovoidal cell, covering as much as 84% of the somatic membrane. The giant cell terminals and ovoidal cell somata were immunoreactive to SV2, a synaptic vesicle protein, but the S-afferent terminals were not, even though they contain numerous synaptic vesicles. The dendrite of the ovoidal cells also contacts the pyramidal cells of the ICL, which are known to be sensitive to time disparities. The anatomical connections of the phase-locking neurons to the ovoidal cells strongly suggest that they are involved in computing time disparity.

Animals↗

Anomalous Hall effect governed by electron doping in a room-temperature transparent ferromagnetic semiconductor.

Ferromagnetic semiconductors are believed to be suitable for future spintronics, because both charge and spin degrees of freedom can be manipulated by external stimuli. One of the most important characteristics of ferromagnetic semiconductors is the anomalous Hall effect. This is because the ferromagnetically spin-polarized carrier can be probed and controlled electrically, leading to direct application for electronics. Control of the Curie temperature and magnetization direction by electronic field, and photo-induced ferromagnetism have been performed successfully using the anomalous Hall effect for group III-V ferromagnetic semiconductors. In these cases, the operation temperature was much below room temperature because of the limited Curie temperature of less than 160 K (ref. 6). Here, we report on the anomalous Hall effect governed by electron doping in a room-temperature transparent ferromagnetic semiconductor, rutile Ti(1-x)Co(x)O(2-delta) (of oxygen deficiency delta). This result manifests the intrinsic nature of ferromagnetism in this compound, and represents the possible realization of transparent semiconductor spintronics devices operable at room temperature.

Journal Article↗

Effects of dietary sea squirt (Halocynthia roretzi) on lipid metabolism in rats.

The effect of dietary sea squirt ( Halocynthia roretzi) on lipid metabolism in rats was investigated. Rats were fed sea squirt muscle (Experiment 1); sea squirt muscle, defatted sea squirt muscle and its hexane extract (Experiment 2); and whole body sea squirt and its parts as muscle or viscera (Experiment 3). All of the diets contained the same levels of protein (20%) and lipid (7%). In experiment 1, serum total cholesterol (T-Ch), very-low-density lipoprotein plus low-density lipoprotein (VLDL+LDL)-Ch, triglyceride (TG), phospholipid (PL) and nonesterified fatty acid (NEFA) levels were reduced by 20% dietary sea squirt muscle ingestion; steroid excretions into feces were enhanced by the same diet. In experiment 2, serum T-Ch, (VLDL+LDL)-Ch, TG, PL and NEFA levels were significantly reduced and steroid excretions into feces were significantly enhanced by ingestion of the sea squirt muscle hexane extract. Ingestion of defatted sea squirt muscle also reduced these serum lipid levels, but not as much as did that of whole sea squirt muscle. In experiment 3, serum T-Ch and HDL-Ch levels were significantly elevated by the 10% sea squirt viscera ingestion.

Animal Feed↗

Comparison of the changes in lipid metabolism between hepatoma-bearing and lipopolysaccharide-treated rats.

To elucidate the mechanism for hyperlipidemia in the hepatoma-bearing state, changes in some parameters related to the lipid metabolism and serum tumor necrosis factor-alpha (TNF-alpha) level were examined in Donryu rats that had been subcutaneously implanted with an ascites hepatoma cell line of AH109A. These parameters were also examined in rats that had been given a single injection of lipopolysaccharide (LPS), a model for acute infection with TNF-alpha secretion into the blood circulation. The serum triglyceride and total cholesterol (Ch) levels were significantly higher in both the hepatoma-implanted and LPS-injected rats than in normal rats. The level of adipose tissue lipoprotein lipase was decreased by hepatoma implantation and LPS injection, while the hormone-sensitive lipase activity was increased by the same treatments. Fatty acid (FA) oxidation and Ch synthesis were also stimulated by both treatments. The serum TNF-alpha level was noticably elevated by hepatoma implantation and greatly by the LPS injection. This LPS injection increased hepatic FA synthesis. The serum high-density lipoprotein Ch level and hepatic Ch 7alpha-hydroxylase activity were not changed by the LPS injection. Hepatoma implantation led to hyperlipidemia and elevated the serum TNF-alpha level, as did the LPS injection.

Animals↗

Serum lipid levels correlate with solid tumor weight in hepatoma-bearing rats fed dietary fish oil.

The effects of dietary fish oil (FO) on serum lipid levels and tumor proliferation were studied in Donryu rats subcutaneously implanted with the ascites hepatoma cell line AH109A. Solid tumor weight was significantly less and serum total cholesterol (T-Ch) level significantly lower in the groups fed the FO diet both before and after AH109A implantation than in the groups fed the corn oil diet. There were no significant effects in the serum lipid levels and tumor proliferation in the groups fed the FO diet only before or after the hepatoma implantation. The serum triacylglyceride, phospholipid, nonesterified fatty acid, T-Ch, and very-low-density lipoprotein+low-density lipoprotein-Ch levels showed significant positive correlations with the solid tumor weight. These results suggest that dietary FO ingestion after hepatoma implantation suppresses tumor proliferation and reduces serum lipid levels along with suppressing tumor proliferation.

Animals↗

The anomalous Hall effect and magnetic monopoles in momentum space.

Efforts to find the magnetic monopole in real space have been made in cosmic rays and in particle accelerators, but there has not yet been any firm evidence for its existence because of its very heavy mass, approximately 10(16) giga-electron volts. We show that the magnetic monopole can appear in the crystal momentum space of solids in the accessible low-energy region (approximately 0.1 to 1 electron volts) in the context of the anomalous Hall effect. We report experimental results together with first-principles calculations on the ferromagnetic crystal SrRuO3 that provide evidence for the magnetic monopole in the crystal momentum space.

Journal Article↗

Quality of life after several treatments for osteoarthritis of the hip.

The purpose of this study was to examine quality of life (QOL) after a rotational acetabular osteotomy (RAO), primary total hip arthroplasty (THA), or conservative treatment (Conservative). A series of 147 patients with osteoarthritis of the hip were grouped according to treatment into the RAO group ( n = 62), THA group ( n = 40), and Conservative group ( n = 45) (treated with medication and rehabilitation alone). The mean age of the RAO group was 40 years, the THA group 54 years, and the Conservative group 50 years. The mean follow-up periods were 3.6, 3.9, and 3.3 years, respectively. All patients were female. As a control group 609 volunteers participating in a town mass screening program were recruited. QOL was determined using the Nottingham Health Profile (NHP). Each area of QOL was evaluated separately in all of the treatment groups at less than 1 year after therapy, at more than 1 year but less than 5 years, and at more than 5 years. With regard to QOL at less than 1 year after therapy, the Conservative group had significantly higher scores for energy, pain, and emotional reaction than the Control group. With regard to physical mobility, all of the treatment groups showed significantly higher scores than the Control group. With regard to QOL at more than 1 year but less than 5 years, the RAO and THA groups showed significantly higher scores than the Control group regarding physical mobility. Regarding pain, the RAO and Conservative groups showed significantly higher scores than the Control group. With regard to QOL at more than 5 years, for physical mobility all of the treatment groups showed significantly higher scores than the Control group. For pain the RAO group showed significantly higher scores than the Control group. NHP is a useful means for evaluating QOL in patients treated for osteoarthritis of the hip.

Acetabulum↗

Emergence of temporal-pattern sensitive neurons in the midbrain of weakly electric fish Gymnarchus niloticus.

Sensitivity of neurons in the torus semicircularis of a weakly electric fish, Gymnarchus niloticus, to two stimulus parameters that are critical for its behavior the jamming avoidance response was examined. The first parameter is the sign of frequency difference between discharge frequencies of fish's own electric organ and that of a neighbor's. The second parameter is the spatial orientation of neighbor's electric field. Whereas neuronal ambiguity of frequency coding for different orientations of neighbor's electric field is predicted, unambiguous JAR occurs at the behavioral level. Most neurons in the torus semicircularis showed sensitivity to the sign of frequency difference. Although a small number of neurons showed preference to a consistent sign of the frequency difference, the coding of the sign of frequency differences was found to be ambiguous with a highly variable pattern of responses for different orientations in most of neurons.

Action Potentials↗