Keyword search (4,164 papers available)

"Oncology" Keyword-tagged Publications:

Title Authors PubMed ID
1 A pilot randomized controlled trial comparing the feasibility and preliminary effects of different forms of exercise-related social support for older adult survivors of cancer Smith-Turchyn J; Sinclair S; O' Loughlin E; Innes A; Richardson J; Pillips S; Beauchamp M; Thabane L; Wrosch C; Sabiston CM; 41673350
PSYCHOLOGY
2 Deep learning-based feature discovery for decoding phenotypic plasticity in pediatric high-grade gliomas single-cell transcriptomics Abicumaran Uthamacumaran 40848317
PSYCHOLOGY
3 Translating Evidence-Based Self-Management Interventions Using a Stepped-Care Approach for Patients With Cancer and Their Caregivers: A Pilot Sequential Multiple Assignment Randomized Trial Design Lambert S; Moodie EEM; McCusker J; Lokhorst M; Harris C; Langmuir T; Belzile E; Laizner AM; Brahim LO; Wasserman S; Chehayeb S; Vickers M; Duncan L; Esplen MJ; Maheu C; Howell D; de Raad M; 39763142
PSYCHOLOGY
4 Cell Fate Dynamics Reconstruction Identifies TPT1 and PTPRZ1 Feedback Loops as Master Regulators of Differentiation in Pediatric Glioblastoma-Immune Cell Networks Abicumaran Uthamacumaran 39420135
PSYCHOLOGY
5 A Review of Mathematical and Computational Methods in Cancer Dynamics Uthamacumaran A; Zenil H; 35957879
PHYSICS
6 Dissecting cell fate dynamics in pediatric glioblastoma through the lens of complex systems and cellular cybernetics Abicumaran Uthamacumaran 35678918
PHYSICS
7 Acceptability of a structured diet and exercise weight loss intervention in breast cancer survivors living with an overweight condition or obesity: A qualitative analysis. Beckenstein H, Slim M, Kim H, Plourde H, Kilgour R, Cohen TR 33491338
PERFORM
8 Pain in long-term survivors of childhood cancer: A systematic review of the current state of knowledge and a call to action from the Children's Oncology Group. Schulte FSM, Patton M, Alberts NM, Kunin-Batson A, Olson-Bullis BA, Forbes C, Russell KB, Neville A, Heathcote LC, Karlson CW, Racine NM, Charnock C, Hocking MC, Banerjee P, Tutelman PR, Noel M, Krull KR 33112416
PSYCHOLOGY
9 A mixed-methods evaluation of a community physical activity program for breast cancer survivors. Sabiston CM, Fong AJ, O'Loughlin EK, Meterissian S 31217021
CONCORDIA

 

Title:Dissecting cell fate dynamics in pediatric glioblastoma through the lens of complex systems and cellular cybernetics
Authors:Abicumaran Uthamacumaran
Link:https://pubmed.ncbi.nlm.nih.gov/35678918/
DOI:10.1007/s00422-022-00935-8
Publication:Biological cybernetics
Keywords:Artificial intelligenceAttractorsCancerCellular decision-makingComplex systemsComputational medicineCyberneticsEpigeneticsNetworksSystems oncology
PMID:35678918 Category: Date Added:2022-06-09
Dept Affiliation: PHYSICS
1 Department of Physics (Alumni), Concordia University, Montreal, QC, Canada. a_utham@live.concordia.ca.

Description:

Cancers are complex dynamic ecosystems. Reductionist approaches to science are inadequate in characterizing their self-organized patterns and collective emergent behaviors. Since current approaches to single-cell analysis in cancer systems rely primarily on single time-point multiomics, many of the temporal features and causal adaptive behaviors in cancer dynamics are vastly ignored. As such, tools and concepts from the interdisciplinary paradigm of complex systems theory are introduced herein to decode the cellular cybernetics of cancer differentiation dynamics and behavioral patterns. An intuition for the attractors and complex networks underlying cancer processes such as cell fate decision-making, multiscale pattern formation systems, and epigenetic state-transitions is developed. The applications of complex systems physics in paving targeted therapies and causal pattern discovery in precision oncology are discussed. Pediatric high-grade gliomas are discussed as a model-system to demonstrate that cancers are complex adaptive systems, in which the emergence and selection of heterogeneous cellular states and phenotypic plasticity are driven by complex multiscale network dynamics. In specific, pediatric glioblastoma (GBM) is used as a proof-of-concept model to illustrate the applications of the complex systems framework in understanding GBM cell fate decisions and decoding their adaptive cellular dynamics. The scope of these tools in forecasting cancer cell fate dynamics in the emerging field of computational oncology and patient-centered systems medicine is highlighted.





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