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Measurement of Interfacial Tension by Drop Retraction Analysis.

The retraction of a deformed drop back to the spherical, equilibrium shape at rest has been the subject of several studies in the literature with the aim of measuring the interfacial tension between the drop and the continuous phase. In this work, the retraction of a drop deformed under the action of a shear flow was analyzed by using the theoretical approach proposed by Rallison in the limit of small deformations. A single exponential decay was then obtained for the time evolution of the deformation parameter in the course of retraction. By fitting such expression to the experimental data the interfacial tension can be determined. Experiments of drop retraction were performed by using a parallel plate apparatus. The experimental trend of the deformation parameter during retraction was well represented by a single exponential decay and the calculated interfacial tension was in good agreement with values reported in the literature for the system investigated. A detailed comparison of the proposed analysis of drop retraction with other methods available in the literature is also presented. Copyright 1999 Academic Press.

Journal Article↗

Response of the axon and barrier endothelium to experimental allergic neuritis induced by autoreactive T cell lines.

Experimental allergic neuritis was induced in Lewis rats by inoculation with autoreactive T cell lines sensitized to residue 57-81 of P2 myelin protein. Control rats received cells derived from immunization to complete Freund's adjuvant alone. Endoneurial fluid pressure (EFP) was measured in both sciatic nerves at 0, 3, 5, 7, 9, and 11 days post-inoculation (PI). The temporal evolution of inflammatory disease was studied by correlating EFP with a morphometric analysis of the nerve microenvironment and with electron microscopic observations. Both edema, as evidenced by increased endoneurial extracellular space, and inflammation paralleled the time course of the EFP increase, reaching peak values at 7 days PI and declining to near-normal values after 11 days. Wallerian degeneration was detectable at 7 days and increased 9 days after inoculation. Axonal damage appeared at the height of the inflammatory process, when edema and increased EFP were maximal. Evidence of demyelination was apparent by 7 days and persisted through 11 days. The onset of edema was associated with changes in venular endothelial cells which tended to lose their normal scaphoid appearance and assumed rhomboid configurations reminiscent of high endothelial venules. At that point, the barrier endothelium was visibly disrupted with the loss of tight junctions and separation of adjacent cells. Specific cell-cell interactions took place between endothelial cells and infiltrating leukocytes as they immigrated into the endoneurial compartment. There was evidence of altered perineurial permeability with fibrin deposition and leukocyte infiltration between the layers of the perineurial sheath.

Animals↗

Simultaneous molecular and morphological analysis of braconid relationships (Insecta: Hymenoptera: Braconidae) indicates independent mt-tRNA gene inversions within a single wasp family.

We investigated the phylogeny of the Braconidae (Insecta: Hymenoptera) with a much expanded data set compared with that of previous attempts, employing 16S and 28S rDNA gene fragments, together with a suite of morphological characters, from 74 ingroup taxa. Most notably, parsimony analyses under a range of models recovered the Aphidiinae as sister group to the cyclostomes and the Ichneutinae as sister group to the microgastroids. The cyclostomes were recovered as a natural group only if certain, putatively misplaced genera (Mesostoa, Aspilodemon) were excluded from them. Further, mapping of rearrangement characters onto this phylogeny of the Braconidae indicated parallel inversions of the mt-tRNAD gene, with the two instances of inversion distinguishable by the presence or absence of an additional tRNA gene (tRNAH). This is the first report of a parallel inversion of a mt-tRNA gene and makes the Braconidae the first metazoan family to display both parallel inversions and translocations.

Animals↗

Evolutionary discontinuity of the Carabine ground beetles.

The Carabine ground beetles are mostly hind wing-less and cannot fly, so that there is more chance of diversification by geographic isolation compared with winged insects. The relationships between morphological diversification and phylogeny of the ground beetles of the world have been inferred mainly by comparisons of mitochondrial ND5 gene sequences. Based on dating by a mitochondrial DNA "clock," it has been deduced that an explosive radiation of the major carabine groups took place 50-40 MYA. This was followed by occasional radiations on various scales, sometimes accompanied by parallel morphological changes. There are also a good number of examples showing that the fundamental morphology has remained unchanged for a long time among geographically isolated populations within the same species. Thus, carabid evolution would have proceeded discontinuously, with phases of rapid morphological change alternating with silent phases.

Animals↗

Multiset splicing systems.

We consider splicing systems reflecting two important aspects of the behaviour of DNA molecules in nature or in laboratory experiments which so far have not been studied in the literature. We examine the effect of splicing rules applied to finite multisets of words using sequential and different types of parallel derivation strategies and compare the sets of words or sets of multisets which can be obtained.

DNA↗

An hypothesis about redundancy and reliability in the brains of higher species: analogies with genes, internal organs, and engineering systems.

The phenomena of behavioral resistance to massive brain damage and behavioral recovery from brain damage suggest there is redundancy in neural tissue. This paper uses basic concepts from probability theory and reliability engineering, as a first step toward more rigorously establishing the plausibility of the redundancy hypothesis. Exponential effects in the relevant formulas lead to results that are intuitively surprising. Thus, within a broad range of parametric assumptions related to lifespan and number of neurons or neural subsystems, it appears that the human brain may be at least twice as large as it would have to be for short-term survival. Simple reliability models suggest that redundancies are in parallel connections of smallest subsystems, such as individual neurons. Other implications of the basic formulas concern the relation between backed-up subsystem reliability and lifetime usage frequency for each subsystem, and the evolution of approximately equal allocation of lifetime reliability among components of a system. In addition, the paper briefly reviews more complex reliability engineering approaches. Redundancy as a reason for neural mass action is compared to other theoretical reasons for mass action in sensorimotor function and learning. Relationships of the present hypothesis to other theories of recovery from brain damage and to theories of regressive trophic phenomena in ontogeny are briefly discussed; it is suggested that as stages of ontogeny progress, both redundancy and flexibility in simpler behavioral functions are traded away for a larger, more differentiated repertoire of complex functions and memories.

Animals↗

Idiotypic and anti-idiotypic determinants on lymphocytes during anti-Rh immunization.

Evolution of idiotypic determinants on lymphocytes membrane and presence of other lymphocytes carrying anti-idiotypic determinants, were studied in Rh negative human volunteer blood donors during immunization towards Rh factor. For this purpose E-Rh Rosettes, direct immunofluorescence, inhibition of E-Rh Rosettes by anti-idiotypic sera as well as EA-Rh Rosettes--induced with Fab'2 fragments from anti-Rh antibodies and lymphocytes from the same subject--were examined and compared to the evolution of circulating antibodies. E-Rh Rosettes preceded or accompanied production of anti-Rh antibodies; their frequency decreased after the fifth month following immunization, meanwhile EA-Rh Rosettes increased in parallel with antibody decrease. The direct immunofluorescence and the inhibition of E-Rh Rosettes, by anti-idiotypic sera, show the presence of idiotypic determinants on lymphocyte membranes; the presence of EA-Rh Rosettes, coinciding with the decrease in antibodies demonstrate the existence of lymphocytes bearing auto-anti-idiotypic determinants.

Antibodies, Anti-Idiotypic↗

Hitch-hiking: a parallel heuristic search strategy, applied to the phylogeny problem.

The article introduces a parallel heuristic search strategy ("Hitch-hiking") which can be used in conjunction with other random-walk heuristic search strategies. It is applied to an artificial phylogeny problem, in which character sequences are evolved using pseudo-random numbers from a hypothetical ancestral sequence. The objective function to be minimized is the minimum number of character-state changes required on a binary tree that could account for the sequences observed at the tips (leaves) of the tree -- the Maximum Parsimony criterion. The Hitch-hiking strategy is shown to be useful in that it is robust and that on average the solutions found using the strategy are better than those found without. Also the strategy can dynamically provide information on the characteristics of the landscape of the problem. I argue that Hitch-hiking as a scheme for parallelization of existing heuristic search strategies is of potentially very general use, in many areas of combinatorial optimization.

Algorithms↗

The role of sonography in the early diagnosis of biliopancreatic Ascaris infestation.

Acute pancreatitis due to ascaris lumbricoides infestation is extraordinarily uncommon in Europe. The diagnosis can be difficult because of the low index of suspicion in our area, and this may lead to death. The case of a Columbian patient living in Spain who developed an acute pancreatitis is discussed. He had no history of alcohol abuse, gallstones, or drug abuse. The sonography showed a longitudinal structure with inner parallel linear bands and undulant movements inside the gallbladder and a hypoechogenic pancreas. These features are compatible with acute pancreatitis secondary to Ascaris lumbricoides infestation. The patient was treated with mebendazole and his evolution was excellent. Sonography was useful as an assessment modality during follow-up. We conclude that Ascaris lumbricoides should be recalled as a rare cause of acute pancreatitis in Western countries. Sonography allows early diagnosis and prompt treatment.

Acute Disease↗

Possible ancient oceans on Mars: evidence from Mars Orbiter Laser Altimeter data.

High-resolution altimetric data define the detailed topography of the northern lowlands of Mars, and a range of data is consistent with the hypothesis that a lowland-encircling geologic contact represents the ancient shoreline of a large standing body of water present in middle Mars history. The contact altitude is close to an equipotential line, the topography is smoother at all scales below the contact than above it, the volume enclosed by this contact is within the range of estimates of available water on Mars, and a series of extensive terraces parallel the contact in many places.

Evolution, Planetary↗

The evolution of community psychiatry.

Community Psychiatry is sometimes regarded as a separate and even as a recent study. The history of its evolution in Australia shows it to have resulted from a logical progression since the earliest days of the psychiatric services. The demand for care completely outstripped the accommodation available so two separate but parallel methods of dealing with this problem were evolved. The first explored how the numbers in the overcrowded hospitals could be reduced, and the second, the ways in which admission could be avoided. Both methods resulted in the expansion of community services. Present day activities must be viewed in this light and community services recognised to be an indivisible portion of a professionally organised total mental health organisation.

Activities of Daily Living↗

The transsphenoidal approach. A historical perspective.

Over the last century, the transsphenoidal approach has evolved into the first-line method of treatment for sellar as well as select groups of parasellar and suprasellar lesions. The journey to its current popularity has been marked by controversy and near abandonment in the late 1920s, followed by its renaissance in the late 1960s. Despite the profound skepticism with which this procedure was viewed, several visionary neurosurgeons persevered through its nadir in popularity, preserving this surgical corridor to the skull base. Advances in medical and surgical techniques, paralleling an improved understanding of pituitary pathophysiology, contributed to its resurgence. The transsphenoidal procedures now performed stem from an array of modifications and refinements accumulated through nearly 100 years of medical and surgical evolution. This era's critical innovations and neurosurgical personalities are the topic of this historical overview.

Brain Neoplasms↗

Effects of antigen and internal environment on anti-phosphorylcholine immune responses of autoimmune aged NZB/W F1 mice.

The idiotypic profile of anti-phosphorylcholine plaque-forming cell responses and their evolution with ageing were studied in (NZB X NZW) F1 mice. Our results showed that the anti-phosphorylcholine plaque-forming cell response induced by phosphorylcholine coupled to keyhole limpet haemocyanin and, paralleling, the T15 idiotype clonal dominance declined with ageing. This loss of immune competence was also observed with another thymus-dependent (phosphorylcholine coupled to egg globulin) as well as thymus-independent (capsular polysaccharide of Streptococcus pneumoniae strain R36a) antigens. In contrast, old mice challenged with an antigenic preparation of Neisseria meningitidis showed an immune response not significantly different from that elicited by the same antigen in young mice. The hapten-augmentable plaque-forming cells were assayed to determine whether a putative auto-antiidiotypic regulation underlies this loss of immune competence. Only minimal numbers and non-significant differences between young and old mice immunized with any antigen could be detected. Further studies using an adoptive transfer system demonstrated that cells from aged mice were able to support a normal anti-phosphorylcholine response when transferred into lethally irradiated young recipients. Our results suggest that no permanent cellular defects, but rather internal environment or/and radioresistant suppressor cells, are involved in this loss of immune competence. The role played by these factors and their effect on distinct subpopulations of B cells are discussed.

Aging↗

Prospective life-science payloads.

A viable spacelab programme is based on the thesis that biomedical specialists require a quantifiable, and possibly mechanistic, understanding of the significant changes observed in crew, in and after manned space flights. Only then can prophylaxis or atraumatic reversal be achieved (with potentially an added use to ameliorate qualitatively similar disease aspects on Earth). This approach could justify national funding to promote lead-up ground-based research as well as research and development for special equipment, of which the "spin-off" into clinical practice could well precede its first use in Spacelab. The requirement for "applied expediency" arises from the watershed met early in the evolution of a life-sciences programme. Initially, the facility of space flight provoked numerous valid experiments designed to test for, or quantitate, gravity-dependent mechanisms and their interaction with other agents, radiation, vibration, or absence of triggers for rhythmic patterns. In parallel, measurable parameters of man's function in space were being monitored, primarily to promote survival by remedial action when available. Monitoring data were then developed to find a critical mechanism feasible to testing. Often the rationale for such tests and experiments was that "man was there" and could, moreover, attend to several biological experiments in space! The watershed appeared when man in a Spacelab was shown as a hazard to the instrumentation, cleanliness, accuracy, thermal control, weight limits, etc. essential to the other disciplines. Other than the life sciences only the technological requirements of materials processing required a manned spacelab! So, life scientists have needed to rethink their payloads, and their constrictions, to plan for compatible load sharing. A composite of proposed biomedical projects related to apparently unanswered etiology of observed changes in returning astronauts will be used to illustrate the evolution of and possible answers to sample problems. The principles outlined, their moderation by expediency (with the untouched upon need for the enthusiastic involvement of biomedical potential in space projects) should remain our guidelines. This is in spite of the expected obsolescence of these specific projects within the next decade.

Aerospace Medicine↗

Insights on the evolution of trehalose biosynthesis.

BACKGROUND: The compatible solute trehalose is a non-reducing disaccharide, which accumulates upon heat, cold or osmotic stress. It was commonly accepted that trehalose is only present in extremophiles or cryptobiotic organisms. However, in recent years it has been shown that although higher plants do not accumulate trehalose at significant levels they have actively transcribed genes encoding the corresponding biosynthetic enzymes. RESULTS: In this study we show that trehalose biosynthesis ability is present in eubacteria, archaea, plants, fungi and animals. In bacteria there are five different biosynthetic routes, whereas in fungi, plants and animals there is only one. We present phylogenetic analyses of the trehalose-6-phosphate synthase (TPS) and trehalose-phosphatase (TPP) domains and show that there is a close evolutionary relationship between these domains in proteins from diverse organisms. In bacteria TPS and TPP genes are clustered, whereas in eukaryotes these domains are fused in a single protein. CONCLUSION: We have demonstrated that trehalose biosynthesis pathways are widely distributed in nature. Interestingly, several eubacterial species have multiple pathways, while eukaryotes have only the TPS/TPP pathway. Vertebrates lack trehalose biosynthetic capacity but can catabolise it. TPS and TPP domains have evolved mainly in parallel and it is likely that they have experienced several instances of gene duplication and lateral gene transfer.

Animals↗

Descent with modification: the unity underlying homology and homoplasy as seen through an analysis of development and evolution.

Homology is at the foundation of comparative studies in biology at all levels from genes to phenotypes. Homology is similarity because of common descent and ancestry, homoplasy is similarity arrived at via independent evolution. However, given that there is but one tree of life, all organisms, and therefore all features of organisms, share some degree of relationship and similarity one to another. That sharing may be similarity or even identity of structure and the sharing of a most recent common ancestor--as in the homology of the arms of humans and apes--or it may reflect some (often small) degree of similarity, such as that between the wings of insects and the wings of birds, groups whose shared ancestor lies deep within the evolutionary history of the Metazoa. It may reflect sharing of entire developmental pathways, partial sharing, or divergent pathways. This review compares features classified as homologous with the classes of features normally grouped as homoplastic, the latter being convergence, parallelism, reversals, rudiments, vestiges, and atavisms. On the one hand, developmental mechanisms may be conserved, even when a complete structure does not form (rudiments, vestiges), or when a structure appears only in some individuals (atavisms). On the other hand, different developmental mechanisms can produce similar (homologous) features. Joint examination of nearness of relationship and degree of shared development reveals a continuum within an expanded category of homology, extending from homology --> reversals --> rudiments --> vestiges --> atavisms --> parallelism, with convergence as the only class of homoplasy, an idea that turns out to be surprisingly old. This realignment provides a glimmer of a way to bridge phylogenetic and developmental approaches to homology and homoplasy, a bridge that should provide a key pillar for evolutionary developmental biology (evo-devo). It will not, and in a practical sense cannot, alter how homoplastic features are identified in phylogenetic analyses. But seeing rudiments, reversals, vestiges, atavisms and parallelism as closer to homology than to homoplasy should guide us toward searching for the common elements underlying the formation of the phenotype (what some have called the deep homology of genetic and/or cellular mechanisms), rather than discussing features in terms of shared or independent evolution.

Animals↗

The single MyoD family gene of Ciona intestinalis encodes two differentially expressed proteins: implications for the evolution of chordate muscle gene regulation.

A MyoD family gene was identified in the ascidian Ciona intestinalis and designated CiMDF (Ciona intestinalis Muscle Determination Factor). Expression of CiMDF was restricted to the muscle cells of the developing embryo and the body-wall muscle of adults. Northern blots showed that two differentially regulated CiMDF transcripts were expressed during development. A 1.8 kb transcript (CiMDFa) appeared first and was gradually replaced by a 2.7 kb transcript (CiMDFb). These transcripts encoded essentially identical MyoD family proteins with the exception of a 68 amino acid C-terminal sequence present in CiMDFb that was absent from CiMDFa. Although both CiMDFa and CiMDFb contained the cysteine-rich/basic-helix loop helix domain (Cys-rich/bHLH) present in all MyoD family proteins, only CiMDFb contained the region near the C terminus (Domain III) characteristic of this gene family. Genomic Southern blots showed that C. intestinalis has only one MyoD family gene, suggesting that CiMDFa and CiMDFb result from differential processing of primary transcripts. The existence of two MyoD family proteins that are differentially expressed during ascidian embryogenesis has novel parallels to vertebrate muscle development and may reflect conserved myogenic regulatory mechanisms among chordates.

Amino Acid Sequence↗

Complete nucleotide sequence of the mitochondrial genome of a Malagasy poison frog Mantella madagascariensis: evolutionary implications on mitochondrial genomes of higher anuran groups.

We determined the complete nucleotide sequence of the mitochondrial (mt) genome of a Malagasy poison frog, Mantella madagascariensis (family Mantellidae), and partial sequences of two Mantella (M. baroni and M. bernhardi) and two additional mantellid species (Boophis madagascariensis and Mantidactylus cf. ulcerosus). The M. madagascariensis genome was shown to be the largest (23kbp) of all vertebrate mtDNAs investigated so far. Furthermore, the following unique features were revealed: (1) the positions of some genes and gene regions were rearranged compared to mitochondrial genomes typical for vertebrates and other anuran groups, (2) two distinct genes and a pseudogene corresponding to transfer RNA gene for methionine (tRNA-Met) were encoded, and (3) two control regions with very high sequence homology were present. These features were shared by the two other Mantella species but not the other mantellid species, indicating dynamic genome reorganization in a common ancestor linage before divergence of the Mantella genus. The reorganization pathway could be explained by a model of gene duplication and deletion. Duplication and deletion events also seem to have been responsible for concerted sequence evolution of the control regions in Mantella mt genomes. It is also suggested that the pseudo tRNA-Met gene sustained for a long time in Mantella mt genomes possibly functions as a punctuation marker for NADH dehydrogenase subunit (ND) 2 mRNA processing. Phylogenetic analyses employing a large sequence data set of mt genes supported the monophyly of Mantellidae and Rhacophoridae and other recent phylogenetic views for ranoid frogs. The resultant phylogenetic relationship also suggested parallel occurrence of two tRNA-Met genes, duplicated control regions, and ND5 gene translocation in independent ranoid lineages.

Animals↗