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M Y Kida

Publications and source records attributed to M Y Kida.

17 recordsLinked to original sources

Length and width of the tendinous portion of the palmaris longus: a cadaver study of adult Japanese.

We examined 72 forearms of 36 cadavers to measure the length and width of the tendinous portion of the palmaris longus in adult Japanese. The palmaris longus muscles were absent in both arms in 1 cadaver and in a unilateral arm in 1 cadaver. Double palmaris longus muscles were found in 1 arm in another cadaver. Most cadavers had a typical palmaris longus muscle and tendon shape. The mean length and width of the tendons were 124.6 +/- 17.0 and 4.5 +/- 0.7 mm, respectively, in male specimens and 108.3 +/- 16.4 and 4.0 +/- 0.7 mm in female specimens, respectively. The mean lengths of the forearms were 240.0 +/- 12.6 mm in male specimens and 218.8 +/- 14.6 mm in female specimens. There was a statistically significant correlation between the lengths of the palmaris longus tendon and forearm. These results indicate that one can estimate the length of palmaris longus tendons before surgical intervention.

Adult↗

Genetic characteristics of double hypoglossal canal as a nonmetric trait.

The hypothesis that the hypoglossal canal bridging or double (HGCD), a nonmetric cranial trait, is a powerful discriminator between populations (Dodo, 1980, 1987) is still controversial. To examine this issue, the incidences of HGCD were investigated in six inbred mice strains (CBA, C57BL, BALB/c, Strong A, NZB, and DAB) and one group of wild mice, six matings of CBA and C57BL, and four experimental diet groups. The above hypothesis was supported by some results such as no effects of diet on the incidences of HGCD and significant differences among the incidences of HGCD in some inbred strains. However, significant differences were also detected in the incidences of HGCD among groups within an inbred strain. Therefore, we think that further conservative and experimental assessments should be performed to determine the usefulness of incidences of HGCD as a powerful discriminator in skeletal studies on populations and family history.

Animals↗

Morphological and biochemical re-evaluation of the process of cavitation in the rat knee joint: cellular and cell strata alterations in the interzone.

To assess the contribution of apoptosis to the mechanism of synovial joint cavitation, and to clarify morphological cellular changes during cavitation, we investigated the development of the rat knee joint by light and electron microscopy, TUNEL methods, and electrophoresis of DNA fragments. Although cavitation occurred within the interzone, which consists of 2 outer and a middle layer termed the intermediate zone, no morphological or biochemical signs of cell death, in particular apoptosis, were seen in the interzone at any embryonic stage. Microscopic and ultrastructural alterations affecting cell differentiation were clearly observed in the interzone, i.e. mesenchymal cells gradually showed elongation, cytoplasmic vacuolation and pyknosis in the intermediate zone where the elongated cells were arranged in parallel in some strata. Some of these cells were further flattened into spindle cells and the number of strata decreased to 2. The rest of the cells were incorporated secondarily into the outer layers, becoming chondroblasts. Collagen fibrils were arranged in a network structure in the outer layers, which obviously differed from the directional pattern parallel to the long axis of elongated cells in the intermediate zone. In addition, the density of collagen fibrils was higher in the outer layers than in the intermediate zone. During cavitation, the initial separation was detected between the elongated cells in the intermediate zone in paraffin sections at E16.5 and the spindle cells in epoxy sections at E18.5. The spindle cells lining the cavity, namely, the surfaces of the epiphysis and meniscus, finally became chondrocytes. The diminution of proteoglycans and collagen fibrils and the synthesis of hyaluronan in the extracellular matrix are now generally believed to be parts of the mechanism for cavitation based on the concept of 'loss of cohesion'. The microscopic and ultrastructural alterations in the interzone seemed to reflect differences in the arrangement and density of collagen fibrils and the developmental condition of the extracellular matrix between layers. Also it did not seem likely that these alterations inhibit the synthesis of hyaluronan at the presumptive joint line because this synthesis takes place at the plasma membrane. Separation between spindle cells should therefore represent the mechanism for developmentally programmed cavitation. Reorganization of the extracellular matrix is probably necessary for the cellular metamorphoses in the interzone involved in the process of cavitation.

Animals↗

Segmental distribution of the motoneurons innervating trunk muscles in the spinal cord of the cat and rat.

The current progress in developmental biology suggests a genetically stable peripheral pathway formation. However, this may be incompatible with the variations or anomalies observed in the segmental origins of motor nerves in the mammals including the human. For the consideration of the causes raising this inconsistency, we examined the distribution of motoneurons for the serratus dorsalis cranialis muscle of the cat using a retrograde labeling method because this muscle consists of segmentally-arranged parts which receive segmental dual innervation. Consequently, the distribution of the labeled motoneurons for one part spread throughout the full extent of two spinal cord segments, while the distributions for the intercostal muscles in the cat and rat were segmental and in accordance with each spinal cord segment. This may indicate the more precise correspondence between the spinal nerve segments and the distribution of motoneurons projecting axons through them. We think, therefore, that segments of the spinal nerves supplying a given target exactly indicate the segmental levels of supplying motoneurons and suggest the segments of somites from which primordial cells of the target migrate.

Animals↗

Morphology of the tracheobronchial tree and the route of the pulmonary artery in the fetal minke whale (Balaenoptera acutorostrata).

Molecular and statistical studies support the close phylogenetic relation between Cetacea and Artiodactyla. The presence of the tracheal bronchus has been pointed out as one of the common traits between only these groups. Nakakuki (1980) has investigated the mammalian tracheobronchial trees in 50 species based on his new nomenclature, and his study has consequently demonstrated the above-mentioned indication. Therefore, comparative anatomy of the tracheobronchial tree based on the nomenclature seems to be useful for investigations of the cetacean phylogeny. Three pairs of fetal lungs of the minke whale (Balaenoptera acutorostrata) were supplied from the Institute of Cetacean Research, Tokyo (1991) to observe their tracheobronchial trees and the ramification of the pulmonary artery. The fetal tracheobronchial tree consisted of one tracheal, four lateral, four dorsal and one medial secondary bronchi in the right lung, and five or six lateral and four or five dorsal secondary bronchi in the left, using the new nomenclature. The right pulmonary artery crossed the right axial bronchus from the ventral side to the dorsal over the third lateral bronchus. The tracheal bronchus in the fetal minke whale seems to belong to the type II of Nakakuki's nomenclature, and this type is seen in one species of the river dolphins. The other conspicuous traits of the fetal lungs are the defect of the second lateral broncus and the route of the pulmonary artery in the right side. This route is very different from that of many other mammals.

Animals↗

Ramification patterns of the nerves innervating the forearm extensors in mammals and reptiles.

This paper discusses muscle phylogeny based on muscle innervation and defends a new concept of nerve-muscle specificity. Some researchers argued strongly against this concept in the first half of this century. However, we think their arguments were partially based on insufficiently examined findings of the ramification manner of the radial nerve. We have dissected 140 limbs of 25 species in mammals and reptiles to examine the manners of ramification of nerves supplying the forearm extensors. The pattern of the radial nerve has been revealed to consist of consistent and inconsistent elements. The branches to the forearm extensors except for the supinator follow quite consistent patterns, while the branch(es) to the muscle is much less consistent. Comparing the ramification patterns of the nerves between mammals and lizards, it can be concluded that the radial nerve in mammals is formed by the phylogenetic path alteration of its partial nerve fibers from the pathway along the flexor side in lizards to the route in the extensor side.

Aged↗

Relationship between the arrangement of motoneuron pools in the ventral horn and ramification pattern of the spinal nerve innervating trunk muscles in the cat (Felis domestica).

To establish the relationships among the ramification pattern of the spinal nerves, motoneuron pools, and the muscle groups innervated, some trunk muscles were examined in the adult cat using both macroscopic and microscopic techniques. Both sides of 2 animals were macroscopically studied to investigate the ramification pattern of the thoracic and lumbar spinal nerves and the location of each muscle on the trunk wall. The topographic localization of the motoneurons innervating those muscles in the ventral horn were microscopically examined in 20 animals by application of a retrograde labeling method. Cholera toxin subunit B bound to latex beads was used as a neuron tracer. Although both the cranial and caudal dorsal serratus muscles had similar positions along the vertebral column, the two muscles were supplied by different branches of the intercostal nerve and the motoneuron pools for the muscles occupied different locations in the ventral horn. The positions of motoneuron pools supplying the cranial and caudal muscles were the same as those for the external and internal intercostal muscles, respectively. They occupied the ventromedial and ventrolateral cell columns, respectively. The motoneuron pools of the external and internal abdominal oblique muscles mostly overlapped each other. The location of these motor pools completely differed from the positions of motoneuron pools for the intercostal muscles. From these results, the ramification pattern of the intercostal nerve appears to correspond with the arrangement of motoneuron pools in the ventral horn of the thoracic and lumbar spinal cord.

Abdominal Muscles↗

[The human superior posterior serratus muscle supplied by both the intercostal and dorsal scapular nerves].

A case of the superior posterior serratus muscle on the left side supplied by both the intercostal and dorsal scapular nerves was observed in a 67-year-old Japanese male cadaver at Sapporo Medical College, 1991. The innervation and intramuscular nerve distribution of this case was investigated using a binocular microscope. The belly of this muscle consisted of three parts, which were inserted into the second, third and fourth ribs, respectively (Fig. 1). The second part inserted into the third rib consisted of two offshoots, namely a medial and a lateral offshoot. The latter almost totally covered the first part inserted into the second rib. This muscle was innervated by twigs from the dorsal scapular nerve (C5) and the superficial intercostal nerves (Th1 & Th2) of Kodama (Kodama, 1986). The superficial intercostal nerve of the first thoracic segment gave off two twigs to the muscle, the superior (medial) and inferior (lateral) (Fig. 1). The intramuscular nerve distribution of this case demonstrated that, except for the lateral offshoot, the innervation of the muscle belly showed roughly segmental tendency though all of the twigs communicated with each other (Fig. 2). The lateral offshoot was chiefly innervated by the twig from the dorsal scapular nerve. It is apparent that the muscle primordium with the twig from C5, which ordinarily is situated at the cranialmost portion of the belly, instead came to rest between the first part and the medial offshoot of the second part. As a result, this muscle belly was innervated partially in a non-segmental manner.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

The ramification of the superficial branch of the superior gluteal artery. Anatomical basis of a new gluteus maximus myocutaneous flap.

In order to design a new gluteus maximus myocutaneous flap, the ramification of the superficial branch of the superior gluteal artery was investigated in 56 sides of 33 Japanese cadavers. The superficial branch constantly divides into two main branches, which are called the ascending and transverse branches in this study. Of the ascending and transverse branches, one or both usually give off at least one well developed division running on the undersurface of the gluteus maximus muscle (98.2%). This division, which is called the intermediate branch in this study, generally reaches the superior edge of the muscle giving off only a couple of muscular branches and pierces the muscle and its deep fascia to supply skin (83.6%). Perforators of the intermediate branch constantly emerge from the fascia near the middle or lower one-third point on a line extending from the middle of the iliac crest to the tip of the greater trochanter.

Aged↗

Skeletal variations of the seventh cervical vertebrae in the mouse with special reference to the foramina transversaria and the accessory foramina.

The formation of foramina transversaria in the seventh cervical vertebra of CBA and C57BL mice and their offspring is found to behave as if it is determined by a single semi-dominant gene. The accessory foramina of Weber (1950) are investigated in the same material. These foramina are classified into two types and their heredity is evaluated.

Animals↗

The inheritance of vertebral shape in the mouse. I. A study using Fourier analysis to examine patterns of inheritance in the morphology of cervical and upper thoracic vertebrae.

The shapes of cervical and upper thoracic vertebrae from large samples of 2 inbred strains of mice and their F1 offspring were examined using Fourier analysis to investigate in detail the distributions and magnitudes of differences in vertebral shape between different strains of mice, the relationships between parents and offspring and any differences in the inheritance of vertebral shape between successive vertebral levels. Consistent with the findings of an earlier study there was evidence for considerable differences between vertebral levels in the degree to which offspring resemble one or other parent. The results demonstrate that the inheritance of vertebral morphology conforms to a model in which F1s between inbred strains form a triangular relationship with their parents. Furthermore, this relationship varies between vertebral levels. The significance of these findings is considered in relation to the understanding of the mechanisms of character inheritance and evolution and some new directions for research into vertebral column morphogenesis are proposed.

Animals↗

Innervation of the sternalis muscle accompanied by congenital partial absence of the pectoralis major muscle.

In one case accompanied by congenital partial absence of the pectoralis major muscle the sternalis muscle was examined to confirm its innervation by means of analysis of intramuscular nerve distribution. It was proved that the sternalis muscle was supplied only by the pectoral nerves even in the case of sternalis in direct contact with the proper thoracic wall. These findings as well as the results of Ura (1937) and Morita (1944) favor the interpretation presented by Eisler (1901), in which the sternalis muscle was described as being supplied only by the pectoral nerves. However, the problem of double innervation of the sternalis requires continued discussion because the relationships between the pectoral nerves and the branches of the intercostal nerves or extramural nerves (Yamada & Mannen, 1985; Kodama et al., 1986) have not yet been resolved. The precise genesis of the sternalis muscle should be also examined though it has already been proved to be derived from the pectoralis muscle group including the subcutaneous trunci muscle.

Female↗

Morphology of the tracheobronchial tree of the Ganges river dolphin (Platanista gangetica).

To contribute to the phylogenetic evaluation of the river dolphin, the morphology of the tracheobronchial tree of the Ganges river dolphin was analyzed according to Nakakuki's fundamental bronchial tree model of mammals. In the right lung, the bronchial tree consists of the tracheal bronchus, five lateral series bronchi, three dorsal series bronchi and one ventral series bronchus. In the left lung, it consists of five lateral series bronchi, four dorsal series bronchi and one ventral series bronchus. In the Ganges river dolphin, the tracheal bronchus corresponds to type III of Nakakuki's nomenclature. This characteristic is of especial interest in light of the fact that the Ganges river dolphin has a forestomach as do Artiodactyla.

Animals↗