It takes the average reader 3 hours and 8 minutes to read Molecular, Cellular and Model Organism Approaches for Understanding the Basis of Neurological Disease by Robert J. Harvey
Assuming a reading speed of 250 words per minute. Learn more
The advent of next-generation sequencing technologies has resulted in a remarkable increase our understanding of human and animal neurological disorders through the identification of disease causing or protective sequence variants. However, in many cases, robust disease models are required to understand how changes at the DNA, RNA or protein level affect neuronal and synaptic function, or key signalling pathways. In turn, these models may enable understanding of key disease processes and the identification of new targets for the medicines of the future. This e-book contains original research papers and reviews that highlight either the impact of next-generation sequencing in the understanding of neurological disorders, or utilise molecular, cellular, and whole-organism models to validate disease-causing or protective sequence variants.
Molecular, Cellular and Model Organism Approaches for Understanding the Basis of Neurological Disease by Robert J. Harvey is 185 pages long, and a total of 47,175 words.
This makes it 62% the length of the average book. It also has 58% more words than the average book.
The average oral reading speed is 183 words per minute. This means it takes 4 hours and 17 minutes to read Molecular, Cellular and Model Organism Approaches for Understanding the Basis of Neurological Disease aloud.
Molecular, Cellular and Model Organism Approaches for Understanding the Basis of Neurological Disease is suitable for students ages 10 and up.
Note that there may be other factors that effect this rating besides length that are not factored in on this page. This may include things like complex language or sensitive topics not suitable for students of certain ages.
When deciding what to show young students always use your best judgement and consult a professional.
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