Hill Model

The Hill model is a mathematical framework for describing how the binding of one molecule influences the binding of additional molecules, making it useful for analyzing cooperative interactions in biochemical systems. It relates ligand concentration to the fraction of occupied binding sites through the Hill equation, commonly expressed with a Hill coefficient that indicates the apparent degree of cooperativity: values above one suggest positive cooperativity, whereas values below one suggest negative cooperativity. In biochemistry, the model helps characterize oxygen binding by hemoglobin, enzyme regulation, and receptor-ligand interactions, allowing researchers to compare binding behavior and estimate response sensitivity from experimental concentration-response data.

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Education

JoVE Core - Statistics

Criteria for Causality: Bradford Hill Criteria - II

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2025

The Bradford Hill criteria serve as guidelines for establishing causative links in epidemiological research. Beyond Strength, Consistency, Specificity, and Temporality, key criteria also include Biological Gradient, Plausibility, Coherence, Experiment, and Analogy. These principles assist scientists in assessing the likelihood of causation in complex biological contexts. Below is a summary of these concepts: Biological Gradient: Also known as the dose-response relationship, this criterion...

Criteria for Causality: Bradford Hill Criteria - I

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2025

The Bradford Hill criteria are a group of principles that provide a framework to determine a causal relationship between a specific factor and a disease. There are nine criteria that are pivotal in assessing causality in epidemiological studies. Here's a closer look at Strength, Consistency, Specificity, and Temporality criteria with definitions and examples: Strength: This criterion refers to the size of the association between the factor and the outcome. A strong association suggests a...

Research

JoVE Journal - Biology
Free Sample

In Vivo Modeling of the Morbid Human Genome using Danio rerio

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Cited by 66 •

2013

Here, we present a systematic approach for developing physiologically relevant, sensitive and specific in vivo assays for interpreting variation in human pathology. Transient genetic manipulation via microinjection of WT and mutant human mRNA and morpholino (MO) antisense oligonucleotides harness the tractability of the developing zebrafish embryo to rapidly assay pathogenic mutations, especially, but not exclusively, in the context of human developmental disorders.

A Simplified Model for Heterotopic Heart Valve Transplantation in Rodents

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Cited by 6 •

2021

This protocol describes a simple and efficient method for the transplantation of aortic valve leaflets under the renal capsule to allow for the study of alloreactivity of heart valves.

Subconjunctival Administration of Adeno-associated Virus Vectors in Small Animal Models

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Cited by 2 •

2022

In this manuscript, subconjunctival injection is demonstrated as a valid vector delivery method for ocular tissues in mice using an injection system consisting of an infusion/withdrawal syringe pump and a gastight removable syringe coupled with microinjection needles. This injection system is also adaptable for other intraocular administration routes.

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