The Experts below are selected from a list of 3543 Experts worldwide ranked by ideXlab platform
Feno Heriniaina Rabevohitra - One of the best experts on this subject based on the ideXlab platform.
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remoteencrypter an android Database asymmetric encryption module
International Conference on Mobile Systems Applications and Services, 2019Co-Authors: Kevin Michel Rabefaritra, Feno Heriniaina RabevohitraAbstract:With the constant growing popularity of Android mobile applications, securing an application has become as important as they constitute an opportunity for wicked developers to inject malwares, steal the source code or even steal customer data. In order to reduce the user exposure to malicious applications, Google is constantly updating their developer policy on the Play Store in an attempt to reduce the number of hosted malicious apps. However, as an installed application may retain sensitive information in the local Sqlite Database, it is essential that the developers have their data stored securely. Such provided data security should be maintained during inter-process communications between different applications. In this paper, we introduce RemoteEncrypter, a ready-for-integration Android application asymmetric encryption module on remote data read access. We demonstrate the effectiveness and efficiency of our approach with two dummy applications that respectively store and access a Database. RemoteEncrypter has been tested and efficiently addresses the weakness of standard Database leakage and unwanted access. To the best of our knowledge, the present work is the first proposal for this approach.
Lodewyk F A Wessels - One of the best experts on this subject based on the ideXlab platform.
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proSqlite prolog file based Databases via an Sqlite interface
Practical Aspects of Declarative Languages, 2013Co-Authors: Sander Canisius, Nicos Angelopoulos, Lodewyk F A WesselsAbstract:We present a succinct yet powerful interface library to the Sqlite Database system. The single file, server-less approach of Sqlite along with the natural integration of relational data within Prolog, render the library a useful addition to the existing Database libraries in modern open-source engines. We detail the architecture and predicates of the library and provide example deployment scenarios. A simple bioinformatics example is presented throughout to illustrate proSqlitet's main functions. Finally, this paper discusses the strengths of the system and highlights possible extensions.
Jan Iqra - One of the best experts on this subject based on the ideXlab platform.
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synchronization of data between Sqlite local Database and sql server remote Database
Social Science Research Network, 2017Co-Authors: Showkat Ahmad Dar, Jan IqraAbstract:Dynamic interactive web applications have a Database located on cloud or bigger physical servers for data operations and the modern need is the android or smart applications for such dynamic interactive applications. Development of android applications needs a local Database within the application that should be synchronized with the main Database later. Sqlite is one of the reputed Databases for android applications and is based on relational model. This paper aims at the development of synchronization tier of Sqlite Database that synchronizes the data between local Database (Sqlite) and SQL server located on physical servers using the concept of web services.
Stephan Frickenhaus - One of the best experts on this subject based on the ideXlab platform.
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stamp extensions to the staden sequence analysis package for high throughput interactive microsatellite marker design
BMC Bioinformatics, 2009Co-Authors: Lars Kraemer, Bánk Beszteri, Christoph Held, Florian Leese, Christoph Mayer, Kevin Pöhlmann, Steffi Gablerschwarz, Stephan FrickenhausAbstract:Microsatellites (MSs) are DNA markers with high analytical power, which are widely used in population genetics, genetic mapping, and forensic studies. Currently available software solutions for high-throughput MS design (i) have shortcomings in detecting and distinguishing imperfect and perfect MSs, (ii) lack often necessary interactive design steps, and (iii) do not allow for the development of primers for multiplex amplifications. We present a set of new tools implemented as extensions to the STADEN package, which provides the backbone functionality for flexible sequence analysis workflows. The possibility to assemble overlapping reads into unique contigs (provided by the base functionality of the STADEN package) is important to avoid developing redundant markers, a feature missing from most other similar tools. Our extensions to the STADEN package provide the following functionality to facilitate microsatellite (and also minisatellite) marker design: The new modules (i) integrate the state-of-the-art tandem repeat detection and analysis software PHOBOS into workflows, (ii) provide two separate repeat detection steps – with different search criteria – one for masking repetitive regions during assembly of sequencing reads and the other for designing repeat-flanking primers for MS candidate loci, (iii) incorporate the widely used primer design program PRIMER 3 into STADEN workflows, enabling the interactive design and visualization of flanking primers for microsatellites, and (iv) provide the functionality to find optimal locus- and primer pair combinations for multiplex primer design. Furthermore, our extensions include a module for storing analysis results in an Sqlite Database, providing a transparent solution for data access from within as well as from outside of the STADEN Package. The STADEN package is enhanced by our modules into a highly flexible, high-throughput, interactive tool for conventional and multiplex microsatellite marker design. It gives the user detailed control over the workflow, enabling flexible combinations of manual and automated analysis steps. The software is available under the OpenBSD License [1, 2]. The high efficiency of our automated marker design workflow has been confirmed in three microsatellite development projects.
Florian Leese - One of the best experts on this subject based on the ideXlab platform.
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stamp extensions to the staden sequence analysis package for high throughput interactive microsatellite marker design
BMC Bioinformatics, 2009Co-Authors: Lars Kraemer, Bánk Beszteri, Christoph Held, Florian Leese, Christoph Mayer, Kevin Pöhlmann, Steffi Gablerschwarz, Stephan FrickenhausAbstract:Microsatellites (MSs) are DNA markers with high analytical power, which are widely used in population genetics, genetic mapping, and forensic studies. Currently available software solutions for high-throughput MS design (i) have shortcomings in detecting and distinguishing imperfect and perfect MSs, (ii) lack often necessary interactive design steps, and (iii) do not allow for the development of primers for multiplex amplifications. We present a set of new tools implemented as extensions to the STADEN package, which provides the backbone functionality for flexible sequence analysis workflows. The possibility to assemble overlapping reads into unique contigs (provided by the base functionality of the STADEN package) is important to avoid developing redundant markers, a feature missing from most other similar tools. Our extensions to the STADEN package provide the following functionality to facilitate microsatellite (and also minisatellite) marker design: The new modules (i) integrate the state-of-the-art tandem repeat detection and analysis software PHOBOS into workflows, (ii) provide two separate repeat detection steps – with different search criteria – one for masking repetitive regions during assembly of sequencing reads and the other for designing repeat-flanking primers for MS candidate loci, (iii) incorporate the widely used primer design program PRIMER 3 into STADEN workflows, enabling the interactive design and visualization of flanking primers for microsatellites, and (iv) provide the functionality to find optimal locus- and primer pair combinations for multiplex primer design. Furthermore, our extensions include a module for storing analysis results in an Sqlite Database, providing a transparent solution for data access from within as well as from outside of the STADEN Package. The STADEN package is enhanced by our modules into a highly flexible, high-throughput, interactive tool for conventional and multiplex microsatellite marker design. It gives the user detailed control over the workflow, enabling flexible combinations of manual and automated analysis steps. The software is available under the OpenBSD License [1, 2]. The high efficiency of our automated marker design workflow has been confirmed in three microsatellite development projects.