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Quantifying Food Intake in Caenorhabditis elegans by Measuring Bacterial Clearance07:05

Quantifying Food Intake in Caenorhabditis elegans by Measuring Bacterial Clearance

This protocol describes an assay to quantify Caenorhabditis elegans feeding rate based on measuring the clearance of bacteria in liquid...
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A Data-Driven Approach to Quantifying Immune States in Sepsis07:42

A Data-Driven Approach to Quantifying Immune States in Sepsis

This study investigates the immune condition in sepsis by analyzing the quantitative relationships among white blood cells, lymphocytes, and neutrophils in sepsis patients and healthy controls using data visualization analysis and three-dimensional numerical fitting to establish a mathematical model.
482
Identification of Mycobacterium Species by DNA Microarray Chip Method06:27

Identification of Mycobacterium Species by DNA Microarray Chip Method

Here, we present a DNA microarray chip method for identifying Mycobacterium species, which will improve diagnostic accuracy and efficiency of related diseases for clinical...
526
A Preclinical Model of Sepsis-Induced Myopathy with Disuse in Mice04:01

A Preclinical Model of Sepsis-Induced Myopathy with Disuse in Mice

This murine model combines a septic insult with hindlimb muscle disuse to recapitulate the bedridden feature of the typical septic patient. The model represents a significant departure from previous models to study muscle dysfunction in sepsis and is a reproducible approach to addressing therapeutic strategies to treat this...
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Definite Integral01:29

Definite Integral

Consider a real-valued function defined on a closed interval. One of the fundamental objectives in calculus is to determine the area under the graph of such a function. When an exact computation is not readily available, this area can be estimated by dividing the interval into a finite number of equal subintervals. Each subinterval corresponds to a rectangle whose width is the length of the subinterval and whose height is determined by the value of the function at a selected point within that...
27
Design of a Cyclic Pressure Bioreactor for the Ex Vivo Study of Aortic Heart Valves07:12

Design of a Cyclic Pressure Bioreactor for the Ex Vivo Study of Aortic Heart Valves

A cyclic pressure bioreactor capable of subjecting heart valve tissue to physiological and pathological pressure conditions has been designed. A LabVIEW program allows users to control pressure magnitude, amplitude and frequency. This device can be used to study the mechanobiology of heart valve tissue or isolated...
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