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[Functional anatomy of the superfical temporal blood vessels].

Functional study on superficial temporal vessels. These vessels appear to have a board territory on--the horizontal part of the scalp--the superior lateral face--the anterior and superior half of the external ear The terminal part of these vessels and the rich anastomotic system is particularly studied. This system passes the middle line; the anastomoses are in the fascia superficilialis. Secondly there is a sub-dermal plexual formation which is in a parallel direction to the vessels. Practical consequences can be found--in neuro-surgery--in plastic-surgery--and in the new surgery of cutaneous transfer with micro-anastomoses of the vessels.

Arteries↗

[Control ability to coordination pattern of masticatory muscle activities during maximal clenching in centric occlusal position].

The control ability which changes the coordination pattern of masticatory muscles in the Maximal voluntary clenching was investigated in the correlativity, using the electromyogram and the Dental-Prescale system on ten normal subjects. Even the insignificant correlative Activity index to the balancing point of occlusal force was shown, though the anteroposterior control index (CA/P) marked slightly correlative to the deviation of balancing point, when the coordination pattern of the masticatory muscles was controlled in conscious. Asymmetry index also marked insignificant correlation to the balancing point of occlusal force, but lateral control index (CLat) was significantly correlated under conscious deviation of balancing point. Conclusions were as follows: 1. The balancing point of occlusal force was located at maxillo first molar anteroposteriorly and near the median line laterally. 2. The coordination pattern consisted of nearly equal electromyographic activities during maximal clenching in the masseter and tempolaris anterior muscles in present subjects without the third molar. 3. The diagnosing in coordination pattern of masticatory muscles only using prescale system is difficult. But this system is reliable to estimate the control ability of the muscle coordination pattern. From these result, one of the suggestion in central mechanism of masticatory muscles were undertaken in program of the central nerve system.

Adult↗

Symmetric polymer blend confined into a film with antisymmetric surfaces: interplay between wetting behavior and the phase diagram

We study the phase behavior of a symmetric binary polymer blend that is confined in a thin film. The film surfaces interact with the monomers via short-range potentials. We calculate the phase behavior within the self-consistent field theory of Gaussian chains. Over a wide range of parameters we find strong first-order wetting transitions for the semi-infinite system, and the interplay between the wetting/prewetting behavior and the phase diagram in confined geometry is investigated. Antisymmetric boundaries, where one surface attracts the A component with the same strength as the opposite surface attracts the B component, are applied. The phase transition does not occur close to the bulk critical temperature but in the vicinity of the wetting transition. For very thin films or weak surface fields one finds a single critical point at straight phi(c)=1 / 2. For thicker films or stronger surface fields the phase diagram exhibits two critical points and two concomitant coexistence regions. Only below a triple point there is a single two-phase coexistence region. When we increase the film thickness the two coexistence regions become the prewetting lines of the semi-infinite system, while the triple temperature converges toward the wetting transition temperature from above. The behavior close to the tricritical point, which separates phase diagrams with one and two critical points, is studied in the framework of a Ginzburg-Landau ansatz. Two-dimensional profiles of the interface between the laterally coexisting phases are calculated, and the interfacial and line tensions analyzed. The effect of fluctuations and corrections to the self-consistent field theory are discussed.

Journal Article↗

Caspase-1 is activated in neural cells and tissue with amyotrophic lateral sclerosis-associated mutations in copper-zinc superoxide dismutase.

The mechanism by which mutations in the superoxide dismutase (SOD1) gene cause motor neuron degeneration in familial amyotrophic lateral sclerosis (ALS) is unknown. Recent reports that neuronal death in SOD1-familial ALS is apoptotic have not documented activation of cell death genes. We present evidence that the enzyme caspase-1 is activated in neurons expressing mutant SOD1 protein. Proteolytic processing characteristic of caspase-1 activation is seen both in spinal cords of transgenic ALS mice and neurally differentiated neuroblastoma (line N2a) cells with SOD1 mutations. This activation of caspase-1 is enhanced by oxidative challenge (xanthine/xanthine oxidase), which triggers cleavage and secretion of the interleukin 1beta converting enzyme substrate, pro-interleukin 1beta, and induces apoptosis. This N2a culture system should be an instructive in vitro model for further investigation of the proapoptotic properties of mutant SOD1.

Amyotrophic Lateral Sclerosis↗

Postnatal development of the respiratory system of the opossum. II. Electron microscopy of the epithelium and pleura.

At birth, the opossum lung is remarkably primitive and consists of a system of branching airways that end in a number of terminal air chambers. From the newborn through the 10 cm stage of development the conducting portion of the lung predominates. The air chambers, which represent portions of the conducting system modified for respiration, are in a constant state of evolution since they are destined to become part of the expanding bronchial system. The airways are devoid of cilia and goblet cells at birth, and are lined by columnar epithelial cells which contain two types of cytoplasmic granules: an electron-dense form and a heterogeneous form. The latter exhibits an electron-dense core surrounded initially by a large halo of flocculent material. This type of granule is not seen beyond the 8 cm stage. The terminal air chambers of the newborn and later stages are lined type I and type II alveolocytes that appear identical to the alveolocytes lining alveoli in the adult. By the 2.5 cm stage, scattered cilia are present in the trachea and bronchi and bands of smooth muscle have differentiated in relation to bronchial epithelium and to proximal areas of the terminal chambers. Citiated cells are separated by ridges composed of light and dark cells which are without cilia and which contain scattered electron-dence granules. Throughout the postnatal period numerous alveolar macrophages and mast cells are noted in relation to the conducting system and pleura. Differentiation of the pleura also occurs during the postnatal period. In the newborn the pleura is simple squamous mesothelium. Later stages develop a thick connective tissue lamina between the pleural mesothelium and lung parenchyma. A large band of elastin is interposed between the mesothelium and underlying bundles of collagen.

Animals↗

The phylogenetic distribution of electroreception: evidence for convergent evolution of a primitive vertebrate sense modality.

Specializations for electroreception in sense organs and brain centers are found in a wide variety of fishes and amphibians, though probably in a small minority of teleost taxa. No other group of vertebrates or invertebrates is presently suspected to have adaptations for electroreception in the definition given here. The distribution among fishes is unlike any other sense modality in that it has apparently been invented, lost completely and reinvented several times independently, using distinct receptors and central nuclei in the medulla. There are so far no clearly borderline or transitional fishes, either physiologically or anatomically. We rather expect a few new electroreceptive taxa to be found. The evoked potential method and the newly validated central anatomical criteria provide two useful tools for searching. Although Myxiniformes probably lack electroreception, it is well developed in Petromyzoniformes and in all other non-teleost fishes except Holostei. Thus Elasmobranchia, Holocephala, Dipneusti, Crossopterygii, Polypteriformes and Chondrostei have the physiological and anatomical specializations in a common form consistent with a single origin in primitive vertebrates. Amphibian ancestors probably inherited the system from a stem similar to one of these and passed it on at least to the ambystomatoid and salamandroid urodeles, apparently after losing the kinocilium of the sense cell. The suggestion of electroreception in ichthyophid apodans from skin histology has not been confirmed physiologically, behaviorally or by brain anatomy. With respect to more advanced fishes the most parsimonious interpretation is that the entire system, peripheral and central was lost in ancestors of holostean and teleostean fishes and new systems reinvented in Siluriformes, in Gymnotiformes, in Xenomystinae and in Mormyriformes. These 4 taxa must represent at least two, and probably 3 or 4 independent inventions, presumably from mechanoreceptive lateral line organs and brain centers.

Afferent Pathways↗

Changes in gait kinematics and posture with the use of a front pack.

The objective of this study was to determine if posture during gait can be affected by position of the load. It was hypothesized that the front pack would result in postural changes in the gait cycle, compared to a similarly loaded backpack. Thirteen healthy adults, free of any injury, volunteered to participate in this study. Two dimensional video data were collected at 50 Hz using a MacReflex video system. A backpack and a front pack were compared using loads of 10 and 15% of body weight. Markers were placed on the ear, acromion, greater trochanter and lateral joint line of the knee, lateral malleolus and fifth metatarsophalangeal joint. Data were collected while the participants walked at 0.75 stride/s. The data were used to calculate joint angles and displacements during each gait cycle. There was a significant difference noted in angles of the hip flexion, with the backpack condition demonstrating a greater flexion in each stride than either the control or front pack. Both backpack and front pack conditions demonstrated a significant change in neck motion compared to the control condition. The results of the position analysis over time also revealed an increase in the forward head position when participants were wearing the backpack compared to either the control or the front pack condition. It was concluded that the use of a front pack results in a more upright posture in gait, when compared to a backpack carrying the same load.

Adult↗

Genetically engineered tumor cell vaccine in a head and neck cancer model.

OBJECTIVES: Using a murine model, a novel tumor vaccine for head and neck squamous cell carcinoma expressing the granulocyte-macrophage colony stimulating factor (GM-CSF) gene was evaluated for its ability to protect against tumor challenge. STUDY DESIGN: Mice vaccinated in the floor of the mouth with the GM-CSF tumor cell vaccine were challenged with parental tumor cells, and subsequent tumor development was monitored. Specificity of the antitumor response was demonstrated by vaccinating the mice and then challenging them with an unrelated but syngeneic radiation-induced fibrosarcoma tumor cell line, RIF. Irradiated (only) tumor cells were used as a control to see whether an augmented antitumor response was attributable to possible increased immunogenicity that could theoretically be induced by the irradiation. METHODS: The GM-CSF gene was transduced into tumor cells via a retroviral vector. The tumor cells were irradiated to prevent replication in vivo. GM-CSF concentrations were determined using ELISA, and physiological activity was confirmed using a biological assay with a GM-CSF-dependent cell line. RESULTS: Vaccination with genetically engineered tumor cells significantly protected against subsequent tumor challenge (5% level) when compared to control groups. Mice were not protected when vaccinated and challenged with the unrelated tumor cell line, RIF. Mice vaccinated with irradiated (only) tumor cells were not protected, either. CONCLUSIONS: Vaccination with genetically engineered tumor cells offers significant protection from later tumor challenge. The response is systemic and tumor specific, not due to an inflammatory response. Irradiation of the tumor cells does not account for the augmented antitumor response. This work supports the continued investigation of the GM-CSF tumor vaccine for the treatment of head and neck squamous cell carcinoma.

Animals↗

Development of an on-line diagnosis system for rotor vibration via model-based intelligent inference

An on-line fault detection and isolation technique is proposed for the diagnosis of rotating machinery. The architecture of the system consists of a feature generation module and a fault inference module. Lateral vibration data are used for calculating the system features. Both continuous-time and discrete-time parameter estimation algorithms are employed for generating the features. A neural fuzzy network is exploited for intelligent inference of faults based on the extracted features. The proposed method is implemented on a digital signal processor. Experiments carried out for a rotor kit and a centrifugal fan indicate the potential of the proposed techniques in predictive maintenance.

Journal Article↗

Use of bilateral internal thoracic arteries in CABG through lateral thoracotomy with robotic assistance in 150 patients.

BACKGROUND: Internal thoracic arteries (ITA) have been shown to offer longer graft patency. Off-pump coronary artery bypass graft surgery (CABG) through small lateral thoracotomy has been reported. The present study deals with feasibility of using bilateral ITAs (BITA) in CABG through small lateral thoracotomy facilitated by the da Vinci robotic system. METHODS: Since July 2002, 150 patients underwent CABG through small lateral thoracotomy using robotic assistance for harvesting of BITA. After single lung ventilation, three 1- to 2-cm incisions were made in the third, fifth, and seventh intercostal spaces 2 to 3 cm medial to the anterior axillary line. After insertion of camera and instrument arms, both ITAs were harvested in a completely skeletonized fashion. A small anterolateral thoracotomy was done, enlarging the camera port incision. Distal anastomoses were performed on a beating heart using nitinol surgical clips. Intercostal cryoanalgesia and local anesthetic infusion were used for pain management. RESULTS: Planned arterial revascularization was completed in 148 patients. Mean number of arterial grafts per patient was 2.6 +/- 0.8. All coronary arteries could be reached with BITA as in situ or composite grafts. There was no mortality, stroke, myocardial infarction, or wound infection. Seven patients had new onset atrial fibrillation. Four patients required exploration of postoperative bleeding. Mean postoperative length of stay was 3.6 +/- 2.9 days. CONCLUSIONS: The da Vinci robotic system was found to be safe and feasible for BITA harvesting in multivessel CABG through small lateral thoracotomy. Further follow-up for graft patency is necessary. Postoperative pain may be reduced with aggressive management strategies. The approach offers fast recovery. This sternum-sparing approach may be an evolutionary step toward closed-chest coronary artery bypass graft surgery.

Anastomosis, Surgical↗

Sole haemorrhages and heel horn erosion in dairy cows: the influence of housing system on their prevalence and severity.

Altogether 94% of the primiparous and 66% of the multiparous cows had haemorrhages of the sole at trimming 2-4 months after calving. Within cows, and independent of age and stall system, the lateral hind claws had higher scores of haemorrhages than the other claws. The primiparous cows had higher scores than the multiparous cows both in the tie-stalls and in the cubicles. The palmar/plantar region of the claw capsule was divided into zones ("white line zones" and "sole zones"). For the multiparous cows the haemorrhage scores of the "white line zones" were higher among the cows housed in the cubicles than among those housed in the tie stalls. There was no difference between stall systems for haemorrhages of the "sole zones". Heel horn erosion was absent or rare in the fore hooves of both the primiparous and multiparous cows in the tie-stalls. The cows in the cubicles had higher heel horn erosion scores in their fore hooves than the cows in the tie-stalls. The scores of the hind hooves were generally higher than those of the fore hooves in both systems. Heel horn erosions were reduced in association with the introduction of a footbath. A higher incidence of lameness was observed in the cubicle system.

Animal Husbandry↗

[Apoptosis and neurotrophic factors].

Neurotrophic factors are endogenous soluble proteins regulating development, differentiation, and survival of neurons. They are secreted from target cells or surrounding glial cells and act on the neurons via their receptors on the cell membranes. Several factors are reported to promote survival of motor neurons in vitro and to rescue developing motor neurons from naturally occurring cell death. Administration of the factors has also been shown to rescue motor neurons from degeneration after axotomy in adult as well as neonatal rodents. On the basis of these lines of evidence, neurotrophic factors have been considered to be potential candidates for drugs alleviating human motor neuron diseases such as amyotrophic lateral sclerosis (ALS). Although some factors such as ciliary neurotrophic factor and brain-derived neurotrophic factor slowed down the disease progression in animal models of motor neuron disease, phase III clinical trials showed no therapeutic effects for ALS patients treated with these factors. There may be some reasons for this lack of success in humans. Several important issues remain to be resolved such as the drug delivery systems for neurotrophic factors and combination of neurotrophic factors with complementary effects.

Amyotrophic Lateral Sclerosis↗

Expression of NAC1 up-stream regulatory region and its relationship to the lateral root initiation induced by gibberellins and auxins.

A 1050 bp up-stream regulatory fragment of the transcription factor gene NAC1 in Arabidopsis thaliana was isolated using polymerase chain reaction (PCR) based techniques. The fragment was used to substitute the 35S promoter of the pBI121 plasmid to construct a beta-glucuronidase gene (GUS) expression system. The construct was introduced into tobacco (Nicotiana tabaccum) plants by the Agrobacterium-mediated transferring method. GUS expression pattern was studied by using the transgenic lines. The results showed that the GUS driven by the NAC1 up-stream regulatory region was specifically expressed in the root meristem region, basal areas of the lateral root primordium and the lateral roots. The GUS expression was induced by 3-indolebutyric acid (IBA) and gibberellins (GA3 and GA4+7). The results indicated that the up-stream regulatory fragment of NAC1 responded to plant hormones. The fragment might be involved in both auxins and gibberellins signaling in promoting the development of lateral roots.

Arabidopsis↗

[Comparison of sperm motion parameters in pre-freeze and post-thaw semen samples using computer-assisted sperm analysis].

OBJECTIVE: To observe sperm motion parameters in pre-freeze and post-thaw semen samples using computer-assisted sperm analysis (CASA) system. METHODS: Semen analyses of 238 samples before freezing and after thawing were separately performed by Hamilton-Thorne Sperm Analyzer. RESULTS: Sperm motility in post-thaw samples was significantly decreased. There was significant correlation and difference between pre-freeze and post-thaw samples in sperm motion parameters, including average path velocity (VAP), straight line velocity (VSL), curvilinear velocity (VCL), amplitude of lateral head displacement (ALH), straightness (STR) and linearity (LIN), except heat cross frequency (BCF). The percentage of sperm movement velocity parameters (VAP, VSL and VCL) and moving pattern parameters (ALH) significantly decreased, while that of LIN and STR significantly increased in post-thaw samples. CONCLUSION: CASA system is of clinically applied value and is a useful tool for evaluating sperm motion parameters in pre-freeze and post-thaw semen samples.

Cryopreservation↗

Expression of a MADS box gene, MEF2D, in neurons of the mouse central nervous system: implication of its binary function in myogenic and neurogenic cell lineages.

MEF2D, a member of myocyte-specific enhancer binding factor 2 (MEF2) gene family, was shown by Northern blot hybridization to be strongly expressed in the head portion of mouse embryos at later stages of ontogenesis, in the cerebellum and the cerebrum of adult mice, in cultured cell lines of neuronal origin, and in skeletal and cardiac muscles. During ontogenesis, MEF2D transcripts were detected by in situ hybridization in the olfactory bulb, entorhinal cortex, pyriform cortex, and hippocampus, in Purkinje and granule cells, and in large neurons in both the ventral and dorsal horns of spinal cord. Adult mice continued to express MEF2D in these limited areas of the central nervous system. Thus, MEF2D seems to be involved in either the differentiation process or the function of these neurons.

Age Factors↗

Dynamics of obscurin localization during differentiation and remodeling of cardiac myocytes: obscurin as an integrator of myofibrillar structure.

Obscurin is a newly identified giant muscle protein whose functions remain to be elucidated. In this study we used high-resolution confocal microscopy to examine the dynamics of obscurin localization in cultures of rat cardiac myocytes during the assembly and disassembly of myofibrils. Double immunolabeling of neonatal and adult rat cells for obscurin and sarcomeric alpha-actinin, the major protein of Z-lines, demonstrated that, during myofibrillogenesis, obscurin is intensely incorporated into M-band areas of A-bands and, to a lesser extent, in Z-lines of newly formed sarcomeres. Presarcomeric structural precursors of myofibrils were intensely immunopositive for alpha-actinin and, unlike mature myofibrils, weakly immunopositive or immunonegative for obscurin. This indicates that most of the obscurin assembles in developing myofibrils after abundant incorporation of alpha-actinin and that massive integration of obscurin occurs at more advanced stages of sarcomere assembly. Immunoreactivity for obscurin in the middle of A-bands and in Z-lines of sarcomeres bridged the gaps between individual bundles of newly formed myofibrils, suggesting that this protein appears to be directly involved in their primary lateral connection and registered alignment into larger clusters. Close sarcomeric localization of obscurin and titin suggests that they may interact during myofibril assembly. Interestingly, the laterally aligned striated pattern of obscurin formed at a stage when desmin, traditionally considered as a molecular linker responsible for the lateral binding and stabilization of myofibrils at the Z-bands, was still diffusely localized. During the disassembly of the contractile system in adult myocytes, disappearance of the cross-striated pattern of obscurin preceded the disorganization of registered alignment and intense breakdown of myofibrils. The cross-striated pattern of desmin typical of terminally differentiated myocytes disappeared before or simultaneously with obscurin. During redifferentiation, as in neonatal myocytes, sarcomeric incorporation of obscurin closely followed that of alpha-actinin and occurred earlier than the striated arrangement of desmin intermediate filaments. The presence of obscurin in the Z-lines and its later assembly into the A/M-bands indicate that it may serve to stabilize and align sarcomeric structure when myosin filaments are incorporated. Our data suggest that obscurin, interacting with other muscle proteins and possibly with the sarcoplasmic reticulum, may have a role as a flexible structural integrator of myofibrils during assembly and adaptive remodeling of the contractile apparatus.

Actins↗

[Vascularization of the anal canal].

The arterial blood supply of the anal canal derives from the superior, middle and inferior rectal arteries, whose branches reach the anal submucosa. Three main arterial trunks in the right anterior, right posterior and left lateral positions can be isolated below the pectinate line. They come, for the most important part, from the superior rectal artery. On the course of the anal submucosal venous plexus are fusiform, saccular or serpiginous dilatations confined to the lower half of the anal canal. This plexus is mainly tributary of the superior rectal vein to the portal system and secondly, of the middle and inferior rectal veins and the lateral sacral veins to the inferior vena cava. Arterio-venous direct communications have been demonstrated by serial section and by radiography of cadaveric specimens and by selective inferior mesenteric arteriography in patients. The erectile property of the anal submucosa as suggested by large vascular spaces, arterio-venous shunts and glomic systems may function in the erectile mechanism.

Anal Canal↗