Rat anatomy, Female, Lifting left hind paw with pointer, (direct/above view)
Rat anatomy, Female, Lifting left hind paw with pointer, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Rat anatomy, Female, Pointer to upper faecal pellet in rectum 2, (direct/above view)
Rat anatomy, Female, Pointer to upper faecal pellet in rectum 2, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, compact human bone femur x10, (direct/above view)
Histology, compact human bone femur x10, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, smooth muscle ls? x40, (direct/above view)
Histology, smooth muscle ls? x40, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, umbillical cord ts x4, (direct/above view)
Histology, umbillical cord ts x4, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Rat anatomy, Female, Pointer to caecum, (side/lateral view)
Rat anatomy, Female, Pointer to caecum, (side/lateral view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Rat anatomy, Male, Pointer depressing caecum, (side/lateral view)
Rat anatomy, Male, Pointer depressing caecum, (side/lateral view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, lung vs h x10, (direct/above view)
Histology, lung vs h x10, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, striated muscle ts x100, (direct/above view)
Histology, striated muscle ts x100, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, fibrous tendon (teased) x40, (direct/above view)
Histology, fibrous tendon (teased) x40, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Rat anatomy, Female, Pointer to claw, (side/lateral view)
Rat anatomy, Female, Pointer to claw, (side/lateral view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Rat anatomy, Female, Pointer to spleen 2, (direct/above view)
Rat anatomy, Female, Pointer to spleen 2, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Article :: Create Text-Based Links in Dreamweaver 8
In this lesson, you’ll develop the initial framework of the site structure by developing placeholders for the pages in the Yoga Sangha project site. You’ll link these pages together using Dreamweaver’s visual site-mapping tools to create a working test site. Creating this kind of framework through pages and links in a bare but functional version of the site can help you test the navigation that you have developed. Testing the proposed site structure before creating the design will help you
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Down's syndrome
This topic describes the main features of Down's syndrome and is accompanied by photographs highlighting dysmorphic features. Graphical and tabular information illustrate the intellectual capacity, life expectancy, functional ability and social independence, and medical checks of those with Down's syndrome.
Author(s): St George's, University of London,Raja Habib

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Histology, spermatozoa mammal x40, (direct/above view)
Histology, spermatozoa mammal x40, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, lumbar x4, (direct/above view)
Histology, lumbar x4, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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Histology, neutrophil x100, (direct/above view)
Histology, neutrophil x100, (direct/above view). Rat dissection stills taken from FARID (Functional Anatomy of the Rat [Interactive Dissection]). This resource was authored by Megan Quentin-Baxter and David Dewhurst, with Graham Irving and Stephen Mera at Leeds Metropolitan University.
Author(s): Megan Quentin-Baxter, Newcastle University

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The functional anatomy of the uretero-vesical junction. A historical review.
This paper evaluates the progress of anatomy and dissection during the Middle Ages both in Europe and in the Muslim World. For that purpose, the functional anatomy of the ureterovesical junction and the mechanism of micturition were studied both in the works of Galen (130-200 AD) and in the works of 6 Islamic medical scholars who lived in the period from the ninth to the thirteenth centuries AD (Alrazi, Alzahrawi, Ibn Sina, Al-Baghdadi, Ibn El Nefis and Ibn El Quff). The study relied, only, on o
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Wiggle -- Predicting Functionally Flexible Regions from Primary Sequence
The Wiggle series are support vector machine-based predictors that identify regions of functional flexibility using only protein sequence information. Functionally flexible regions are defined as regions that can adopt different conformational states and are assumed to be necessary for bioactivity. Many advances have been made in understanding the relationship between protein sequence and structure. This work contributes to those efforts by making strides to understand the relationship between p
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Classroom environment: the basics
Your classroom is "home away from home" for you and your students. Make it attractive, comfortable, and functional.
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