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T Musha

Publications and source records attributed to T Musha.

At least 37 records · Page 2Linked to original sources

[Dipole tracing method analysis for source of auditory brainstem response (wave V) in two normal hearing subjects].

The location and vector moment of the equivalent current dipoles of ABR (wave V) evoked by unilateral acoustic stimuli were estimated in normal adults with the Dipole Tracing (DT) Method. The ABR's were recorded through 21 electrodes arranged according to the international 10-20 standard. The DT method is based on a realistic head shape with uniform volume conductor and individual differences of the skull were corrected for afterwards. The 3-D dipole locations were plotted on the cross-sectional MRI data of the subject. As a result the dipole of the wave V of auditory brainstem responses was found near the contralateral midbrain.

Acoustic Stimulation

Immunoassay using the depolarized and forward scattered light intensity fluctuations from latex spheres.

A new optical method is presented here for detecting immunoreaction by means of the forward and depolarized light scattering by coated carrier particles. By this approach, a short-time measurement of antigen-antibody reactions was concisely achieved. The method covered in this article is based on using double-scattered light. While light that is single-scattered by microspheres is polarized parallel to the incident light polarization, double-scattered light contains depolarized components. The normalized fractional variance in the single-scattered field is inversely proportional to the particle concentration, whereas that in the double-scattered field is inversely proportional to the square of the particle concentration. Due to this difference, the decrease of the particle concentration during the agglutination reaction is more sensitively detected through the measurement of the fractional variance in the double-scattered field. In addition, undesirable light scattered from non-aggregated microspheres is reduced by using the method summarized here. This study is based on the assumption that the particle concentration of the double-scattered field is 4.5 x 10(11) particles/cm3. The latex spheres coated with antibody molecules aggregated after adding the antigen and, as a result, the fractional variance rapidly increased before leveling off after 5-10 min. The antigens measured were alpha-fetoprotein (AFP) and immunoglobulin E (IgE).

Antigen-Antibody Reactions

Fluctuations of biological rhythm.

A biological body is a soft system as compared with an ordinary mechanical system, and hence it is more reasonable that phenomena occurring in a biological body are not steady but fluctuating. A common rule can be found in various biological fluctuations.

Action Potentials

Generator mechanisms of epileptic potentials analyzed by dipole tracing method.

A new dipole tracing method, based on a realistic head model, was used to determine dipole locations and vector moments of interictal convexity sharp waves recorded (with conventional EEG technique) from the right fronto-temporal region in a patient with partial complex seizures. When the dipole locations in the head model were compared to MRI scans, the majority of the sharp wave dipoles were found to be located in the right hippocampal area. For individual sharp waves, the hippocampal dipoles moved along tracks corresponding to the vector moment directions, suggesting that the electrical sources of the convexity sharp waves were somato-dendritic currents which spread rapidly from one neuron group to the next in the hippocampal area. Previous long-term subdural recording had shown seizure onset in this area. After right-sided anterior temporal lobectomy including the hippocampus the patient has been seizure-free for three months.

Adult

Dipole-tracing of abnormal slow brain potentials after cerebral stroke--EEG, PET, MRI correlations.

A patient with major neurological deficits 5 years after a left cerebral infarction underwent correlative EEG, MRI and PET studies of cerebral blood flow and oxygen metabolism. The EEG showed abnormal slow electroencephalographic activity in the frontopolar region. The intracranial location of the slow electrical activity was estimated, as an equivalent current dipole, by using a newly developed dipole tracing (DT) method. The DT analysis showed that the dipole equivalent of the slow wave is approximately located at the frontal part of the left cingulate gyrus, away from the margins of the infarction and enlarged left lateral ventricle demonstrated by MRI, and in a region with intact oxygen consumption rate. The genesis of the slow wave is discussed.

Adult

Do optimal dipoles obtained by the dipole tracing method always suggest true source locations?

Scalp potentials generated by a concentrated electric source in the brain are very similar to potentials generated by an electric dipole at the source position. In this sense a concentrated source in the brain is modelled as an electric dipole. When the source is diffuse such a dipole which best approximates the scalp potential is called an optimal dipole. Its position is calculated by the Dipole Tracing Method based on a realistic head model with homogeneous electric conductivity. There are 2 major difficulties inherent in this method: (1) The low electric conductivity of the skull causes systematic shifts of the optimal dipole positions from the true positions of concentrated sources; (2) the optimal dipoles cannot specify diffuse source positions. The first difficulty is overcome by using the numerical correction obtained by comparing the known dipole positions generated within a human head with their optimal ones. The second difficulty is removed to a certain extent by comparing the optimal dipole positions obtained with the 1-dipole and 2-dipole models together with their dipolarity. We have obtained criteria for the validity of the dipole approximation and source concentration.

Brain

Computer simulation of supraventricular tachycardia with the Wolff-Parkinson-White syndrome using three-dimensional heart models.

Supraventricular tachycardias with the Wolff-Parkinson-White (WPW) syndrome have been successfully simulated using a newly developed simulation system. The heart model, including atria and ventricles, was constructed of about 50,000 discrete elements (model cells) in three dimensions with 1.5-mm spatial resolution. The model cells covered all of the types of cells in the actual heart, including the normal myocardium, special conduction system and abnormal cells, such as the bundle of Kent (accessory pathway) and ectopic pacemaker (premature beat). Different model cells were specified by their electrophysiologic parameters, such as action potential, refractory period, and conduction velocity. The WPW syndrome was simulated by setting an accessory pathway between the right atrium and ventricle. Based on this model a premature atrial beat was introduced, which initialized the tachycardia. By adjusting the parameters, three types of reciprocal supraventricular tachycardia were simulated with the reentry circuits (1) formed anterogradely by the A-V node and retrogradely by the accessory pathway, (2) formed anterogradely by the accessory pathway and retrogradely by the A-V node, and (3) confined within the A-V node. Time relations for initializing and maintaining the tachycardias were evaluated. The simulated ECGs were in good agreement with the clinical findings.

Computer Simulation

Reduction of the number of electrodes in the measurement of body surface potential distribution.

The number of electrodes required to reproduce a body surface potential map (BSPM) can be reduced by making use of the correlations among potentials measured at different sites on the body surface, as pointed out by Lux et al. in 1978. In the present paper, we have introduced two distinct methods which can be used to improve the accuracy of the potential estimation. In the first method, the BSPMs are divided into several classes according to the direction of the vectorcardiogram, while the temporal as well as the spatial correlations are taken into account in the second method. They are called the 'partition method' and the 'spatiotemporal correlation method', respectively. By means of the partition method using 40 electrodes, the estimation error becomes 75% of that estimated with the Lux method, which is equivalent to the Lux method with 47 electrodes. In other words, the partition method saves seven electrodes. When the electrodes are restricted on the chest, our methods are more effective. In particular, the partition method saves no less than 20 electrodes.

Electrocardiography

An interpretation of 1/f fluctuations in neuronal spike trains during dream sleep.

The mesencephalic reticular formation (MRF) neurons are regarded as contributing to the activation of the cerebral cortex. We have investigated the statistical characteristics of the single neuronal activity in the MRF of cat during two activated states: paradoxical sleep (PS) and state in which the animal is watching birds (BW). 1/f-like spectra are observed for both PS and BW states, being more pronounced for PS state. For the interpretation of these findings, we have applied the clustering Poisson process, which not only gives rise to a 1/f spectrum but also suggests a generation mechanism. The MRF neuronal activities in PS and BW are closely fitted by the clustering Poisson process, both in terms of power spectral density and counting statistics. These results strongly suggest that the activities of MRF neurons in PS and BW can be interpreted as the superpositions of randomly occurring clusters which consist of various number of impulses.

Animals

Effects of cavities on EEG dipole localization and their relations with surface electrode positions.

Effects of cavities in the human head on EEG dipole localization have been investigated by computer simulation. The human head is represented by a homogeneous spherical conductor including an eccentric spherical cavity which approximates effects of actual cavities inside the head. The homogeneous sphere model is used for assessing the effects caused by neglecting the cavity in the volume conductor model in the inverse dipole fitting procedure. Four electrode configurations have been examined to investigate their relation to the EEG inverse dipole solution. After examination of 2520 dipoles in the brain, the effects of cavities in the human head are found to be negligible when the dipole is located in the cortex or in the subcortex. When the dipole is located in the brain stem, the EEG inverse dipole solution is strongly affected by the cavity and is sensitive to the electrode configuration on the scalp. The EEG inverse dipole solution in the deep brain is sensitive to inhomogeneity in the lower part of the head when a single positive or negative potential pole is observed by the electrodes on the scalp, and at the same time is sensitive to the extent of the scalp covered by the electrodes. In conclusion, the electrodes should cover as much of the upper scalp as possible for deep source localization.

Algorithms

Clinical application of electrocardiographic computer model.

A three-dimensional computer model was developed to stimulate the ventricular depolarization and repolarization in a clinical setting. The ventricle is composed of approximately 50,000 units arranged in a cubic close-packed structure and the specialized conduction system is distributed so as to obtain the excitation sequence resembling normal ventricular depolarization. The normal distribution of action potential waveforms with the longest duration on the endocardium and the shortest on the epicardium is used in the model. The heart model is mounted in a homogeneous torso model, and the body surface potential distribution generated by the electric dipoles is calculated using the boundary element method. The QRST waveforms corresponding to the normal and some abnormal heart conditions, such as bundle branch block, myocardial infarction, apical hypertrophic cardiomyopathy, and Wolff-Parkinson-White syndrome, is obtained by assuming the abnormal area with altered electrical properties. Thus the three-dimensional computer model may provide further insight into the genesis of the clinical electrocardiogram.

Bundle-Branch Block

Effects of opioid agonists on sympathetic and parasympathetic transmission to the dog heart.

Effects of leu- and met-enkephalin, pentazocine and morphine on negative or positive chronotropic response to vagal nerve stimulation or cardiac sympathetic nerve stimulation were examined in anesthetized dogs in order to determine whether opioid receptors modulate vagal and sympathetic transmission. Leu- and met-enkephalin (10-100 micrograms/kg i.v.) and pentazocine (100-1000 micrograms/kg i.v.) inhibited bradycardic response to vagal nerve stimulation (1-4 Hz) in a dose-dependent manner. Morphine (300 and 1000 micrograms/kg i.v.) did not affect vagal bradycardia. The inhibitory effect of leu-enkephalin (30 micrograms/kg) and pentazocine (300 micrograms/kg) was effectively antagonized by naloxone (1000 micrograms/kg i.v.). Bradycardic response to intracoronary injection of methacholine (0.1, 0.3 and 1 microgram) into the right coronary artery was unaffected by leu-enkephalin (30 micrograms/kg). On the other hand, leu-enkephalin and pentazocine did not modify tachycardic response to sympathetic nerve stimulation (1-8 Hz). Morphine attenuated sympathetic tachycardia only slightly. These results suggest that presynaptic opioid receptors, probably delta type, are present in the vagus nerves, and that the activation of opioid receptors inhibit vagal transmission to the dog heart. In contrast, the presence of opioid receptors in the cardiac sympathetic nerves is not evident.

Animals

Inhibition of vagal transmission by cardiac sympathetic nerve stimulation in the dog: possible involvement of opioid receptor.

The inhibitory effect of cardiac sympathetic nerve stimulation (SNS) on bradycardic response to vagal nerve stimulation was examined in anesthetized dogs pretreated with atenolol or propranolol to prevent tachycardia caused by SNS or norepinephrine infusion. The amplitudes of vagal bradycardia (0.5, 1, 2, and 4 Hz) during 10 and 30 Hz of SNS were significantly smaller than those during the resting state. The inhibitory effect of 10 Hz of SNS was neither affected by prazosin (10, 30 and 100 micrograms/kg i.v.) nor by yohimbine (10, 30 and 100 micrograms/kg i.v.). The SNS-induced inhibition of vagal bradycardia was inhibited by naloxone (0.3 and 1 mg/kg i.v.) or by naltrexone (0.3 and 1 mg/kg i.v.). Vagal bradycardia was unaffected by intracoronary infusion of norepinephrine (3 micrograms/min) into the right coronary artery, whereas it was effectively inhibited by leu-enkephalin (10, 30 and 100 micrograms/kg i.v.). Bradycardia induced by intracoronary injection of methacholine (0.3, 1 and 3 micrograms) was unaffected by SNS. These results suggest that a presynaptic alpha adrenoceptor mechanism is not involved in the SNS-induced inhibition of vagal bradycardia in the dog, and suggest further that an opioid receptor mechanism may be responsible for the inhibition.

Blood Pressure

[Relationship between coagulation-fibrinolysis kinetics and the severity and predictability of toxemia of pregnancy].

Various attempts have been made in recent years to identify the cause and pathophysiology of toxemia of pregnancy from the standpoint of changes in blood coagulation and fibrinolysis. It is believed that in toxemia of pregnancy, the fibrinolytic process changes as coagulation is augmented. However, definite conclusions about this sequence of events have not yet been reached. This study was designed to analyze the severity of toxemia of pregnancy and to examine the possibility of anticipating its onset from the standpoint of coagulation-fibrinolysis kinetics. The patient population comprised 116 women divided into 4 groups: I) A control group of 10 normal, nonpregnant women; II) Fifty-four normal pregnant women who were followed up from early pregnancy until delivery; III) Twenty-four women who were followed up from early pregnancy until delivery and developed toxemia of pregnancy; and IV) Twenty-eight women with severe toxemia of pregnancy of the pure type who were referred to our institution at the onset of the disease and were treated as inpatients. Intergroup comparison yielded the following results. 1. In group II (normal pregnancy), a significant increase was observed, first in fibrinopeptide B beta and then in fibrinopeptide A, as the pregnancy progressed. This suggested the acceleration of coagulation and fibrinolysis due to pregnancy. 2. In group III (6 of 24 cases developed severe toxemia of pregnancy), AT-III increased, while protein C and hematocrit levels increased relative to those on the normal pregnancy group during the 2nd trimester. Thus, changes in coagulation functions occurred before the onset of toxemia of pregnancy.(ABSTRACT TRUNCATED AT 250 WORDS)

Antithrombin III

Dipole-tracing of 'awareness' attenuating the cortical components of somatosensory evoked potentials.

Using the dipole-tracing method, the source generators of N18, P22 and P40 of the somatosensory evoked potential (SEP) were estimated as the equivalent dipole. After voluntary action of the thumb flexion, no changes were observed in N18 or P40, but the amplitude of P22 was suppressed. The after-effects of intention accompanied by a voluntary action or the subject's awareness that electrical stimulation will be given after the voluntary action were treated as 'awareness'. By subtracting the pure SEP from SEP during 'awareness', it was found that the equivalent dipole of 'awareness' of P22 was located at the same region of pure P22, but the vector was of opposite orientation. 'Awareness' attenuated the perceptive potential of SEP like P22 generated in the cortex.

Awareness