IEEE/ACM Trans Comput Biol Bioinform
Published: July 2016
There are fundamental limitations in inferring the functional interaction structure of a gene (regulatory) network only from sequence information such as binding motifs. To overcome such limitations, various approaches have been developed to infer the functional interaction structure from expression profiles. However, most of them have not been so successful due to the experimental limitations and computational complexity. Hence, there is a pressing need to develop a simple but effective methodology that can systematically identify the functional interaction structure of a gene network from time-series expression profiles. In particular, we need to take into account the different time delay effects in gene regulation since they are ubiquitously present. We have considered a new experiment that measures the overall expression changes after a perturbation on a specific gene. Based on this experiment, we have proposed a new inference method that can take account of the time delay induced while the perturbation affects its primary target genes. Specifically, we have developed an algebraic equation from which we can identify the subnetwork structure around the perturbed gene. We have also analyzed the influence of time delay on the inferred network structure. The proposed method is particularly useful for identification of a gene network with small variations in the time delay of gene regulation.
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http://dx.doi.org/10.1109/TCBB.2015.2394312 | DOI Listing |
Transl Vis Sci Technol
March 2025
Department of Ophthalmology, Guangdong Eye Institute, Guangdong Provincial People's Hospital (Guangdong Academy of Medical Sciences), Southern Medical University, Guangzhou, China.
Purpose: We aimed to analyze retinal neurovascular unit (RNVU) alterations and function via optical coherence tomography angiography (OCTA) and full-field electroretinography (ERG) in patients with ischemic stroke (IS).
Methods: OCTA was used to measure RNVU changes in 229 participants (101 with IS and 128 healthy controls). The RETeval device was used to record full-field electroretinograms (FERGs) in 40 participants (14 with IS and 26 healthy controls).
Health Technol Assess
March 2025
Clinical Trials Research Unit, University of Leeds, Leeds, UK.
Background: Many patients with ulcerative colitis report ongoing diarrhoea even when their disease is stable and in remission.
Design: MODULATE was a pragmatic, multicentre, seamless, adaptive, phase 2/3 open-label, parallel-group, multiarm multistage randomised controlled trial.
Setting And Participants: People aged over 18 years with stable ulcerative colitis who had diarrhoea, recruited from secondary care sites in the United Kingdom.
Objectives: Evaluate the stability of 32 biochemical analytes in venous blood samples stored at 18-25 °C under different time delays prior to centrifugation.
Methods: A prospective study was conducted involving 33 healthy volunteers. Four venous blood samples were collected from each participant.
Curr Opin Crit Care
March 2025
Surgical Critical Care, Corporal Michael J. Crescenz VA Medical Center.
Purpose Of Review: This review is both timely and relevant as the open abdomen approach to manage injury, emergency general surgery (EGS) conditions, as well as secondary intra-abdominal hypertension (IAH) and the abdominal compartment syndrome (ACS) remain prevalent throughout ICUs.
Recent Findings: IAH is not limited to those with injury or EGS conditions, as it is increasingly recognized following cardiac surgery as well as cardiac transplantation. IAH monitoring techniques benefit from technological advances including noninvasive devices.
Brain Behav
March 2025
Department of Epidemiology and Biostatistics, School of Public Health, Kerman University of Medical Sciences, Kerman, Iran.
Objective: Evidence suggests that exercise timing is crucial in reducing the impact of traumatic brain injury (TBI). The present study explores the effects of delayed and early exercise on brain damage, cognitive dysfunction, and anxiety behavior using an experimental TBI model.
Methods: We randomly assigned 36 male rats to six groups: control (sham, TBI), treadmill exercise (24hA, 1-month exercise 24 h after TBI), 1WA (1-month exercise 1 week after TBI), 1MB (1-month exercise before TBI), and 1MBA (1-month exercise before and after TBI).
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