ملخص
A distributed computing system is a collection of processors that communicate either by reading and writing from shared memory or by sending messages over some communication network. Most prior biologically inspired distributed computing algorithms rely on message passing as the communication model. Here we show that in the process of genome-wide epigenetic modifications, cells utilize their DNA as a shared memory system. We formulate a particular consensus problem, called the epigenetic consensus problem, that cells attempt to solve using this shared memory model and then present algorithms, derive expected run time and discuss, analyze and simulate improved methods for solving this problem. Analysis of real biological data indicates that the computational methods indeed reflect aspects of the biological process for genome-wide epigenetic modifications.
اللغة الأصلية | الإنجليزيّة |
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عنوان منشور المضيف | Structural Information and Communication Complexity - 28th International Colloquium, SIROCCO 2021, Proceedings |
المحررون | Tomasz Jurdziński, Stefan Schmid |
ناشر | Springer Science and Business Media Deutschland GmbH |
الصفحات | 146-163 |
عدد الصفحات | 18 |
رقم المعيار الدولي للكتب (المطبوع) | 9783030795269 |
المعرِّفات الرقمية للأشياء | |
حالة النشر | نُشِر - 2021 |
منشور خارجيًا | نعم |
الحدث | 28th International Colloquium on Structural Information and Communication Complexity, SIROCCO 2021 - Virtual, Online المدة: ٢٨ يونيو ٢٠٢١ → ١ يوليو ٢٠٢١ |
سلسلة المنشورات
الاسم | Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) |
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مستوى الصوت | 12810 LNCS |
رقم المعيار الدولي للدوريات (المطبوع) | 0302-9743 |
رقم المعيار الدولي للدوريات (الإلكتروني) | 1611-3349 |
!!Conference
!!Conference | 28th International Colloquium on Structural Information and Communication Complexity, SIROCCO 2021 |
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المدينة | Virtual, Online |
المدة | ٢٨/٠٦/٢١ → ١/٠٧/٢١ |
ملاحظة ببليوغرافية
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