The potential of systems integration in microbial photosynthesis.
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Rapid and accurate interpretation of allograft biopsies influences the outcome after organ transplantation. Expert histopathologic interpretation can also determine whether a donor organ should be used for transplantation or disposed. These and similar considerations in the field of Transplantation Pathology prompted us to develop a static image, store-and-forward telepathology system capable of rendering accurate, robust, and confidential communication by using readily available equipment and bandwidth capabilities for interactive real-time second opinion consultation. Between July 1999 and October 2000, 102 cases were transmitted, including 78 for second opinion and 1 for primary diagnosis with 6 (5 real-time) frozen sections. Full agreement with the original diagnosis was obtained in 67 of 78 (86%) cases; in 11 (14%) cases, teleconsultation resulted in 8 minor and 3 clinically significant differences of opinion. This led to a change in therapy in 1 case and further evaluation in 2 other cases. We conclude that static image, store-and-forward telepathology can enhance the practice of transplantation pathology, but a multidisciplinary team for ongiong support and development is required. This technology has the potential to promote case sharing, conduct continuing education, build consensus, and standardize readings of biopsies in multicenter trials in which histopathologic findings represent important outcome measures.
Diffusion processes are usually associated with randomness in the system. In this paper we show that deterministic diffusion processes can also occur in systems with zero entropy that mimic chaos with any precision without being mathematically chaotic. A random walk model is used to predict the behavior of the diffusion coefficient. (c) 1996 American Institute of Physics.
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Bäcklund transformations are defined as operations on solutions of a Riemann boundary value problem (vector bundles over P(1)) that add apparent singularities. For solutions of difference and differential linear spectral problems, Bäcklund transformations are presented in explicit form through the Christoffel formula and its generalizations. Identities satisfied by iterations of elementary Bäcklund transformations are represented in the form of the law of addition or as the three-dimensional difference equation of Hirota's type. Matrix two-dimensional isospectral deformation equations are imbedded into three-dimensional scalar systems of Kadomtzev-Petviashvili (law of addition) form. Two-dimensional matrix systems correspond to reductions of Kadomtzev-Petviashvili equations with pseudodifferential operators satisfying algebraic equations.
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A computer-based system termed MBIS (the Molecular Biological Information Service), written in FORTRAN77 and Digital Command Language (DCL) and running on a Digital Equipment Corporation VAX computer under the VMS operating system (V4.1) is in use at the Division of Molecular Biology. MBIS consists of three main sections: 1) The utility section, used by the system's manager to tailor the five commonly available databases so that they are useable by the applications programmes running on the system; 2) The retrieval section, used to find and extract specific sequences or bibliographic information, and 3) The analytical section, used to analyse and compare sequences either extracted from the databases or input by the user. The nucleotide databases maintained are GenBank, EMBL and PIR (Protein Identification Resource, National Biomedical Research Foundation) and the peptide databases are PIR and NEWAT. In addition, users can originate and maintain their own databases. Those programmes which feature graphics output are compatible with most emulators of the Tektronix 4010 terminal.
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Coordination of patient care is the goal; the structure to promote the multidisciplinary plan of care is the unit-based outcome facilitation team. The focus of the team is the outcome achievement for the day, which could include patient education, therapies, or discharge planning.
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