Write a report on following topics with each topic on its own section. (Min 6 pages, more acceptable, header and references are not included):
People are using their mobile phone browsers more and more every day to find information about businesses, make product decisions and purchases, and even determine the quality of a business based on what they can find online. Write a six to 10 (6 – 10) page paper in which you:
1. How to Choose a Mobile Web Development Option.
2. Research and discuss effective use of screen real estate.
3. Compare and contrast different mobile platforms with Android.
4. The tools of mobile interface design.
5. Discuss mobile information design.
With the increasingly ubiquitous nature of mobile devices and applications, if you are not already thinking about mobile apps, you probably should be. According to a recent Pew Research Center Study, the number of users accessing the internet on their smartphones has more than doubled in the past years, as has the number of users downloading and using mobile apps. Of those who use the internet or email on their phones, more than a third go online primarily through their handheld devices. Mobile Web app development requires detailed planning. Identifying your (or your customer`s) requirements is one of the most essential best practices in app development, mobile or otherwise. Carefully research the targeted capabilities to determine if they are achievable in your mobile web app.
of NF proteins have been detected. A reduction of myelinated fiber size is correlated with axonal NFs loss in peripheral nerves of STZ-induced diabetic rats (25, 26), and mRNAs levels encoding for NF-L and NF-H are reduced in the same animal model of diabetes (7). Moreover, changes on the expression of several NF-associated protein kinases isoforms may also contribute to diabetes-induced changes (4). Several protein kinases regulate NF phosphorylation status, being NFs hyperphosphorylation a hallmark of several neurodegenerative diseases. Abnormal NF phosphorylation has been described in sensory neurons of animal models of type 1 diabetes (27). Moreover, in the spinal cord of diabetic rats there is increased phosphorylation of NF-H, (28). Additionally, changes on the activity of Cdk5 and GSK-3β kinases have been described to alter the phosphorylation status of NFs in an animal model of type 1 diabetes. Specifically, in dorsal root ganglion neuronsincreased phosphorylation of GSK-3β correlated linearly with increased phosphorylation of NF-H, while decreasing activity of Cdk5 is associated with reduced phosphorylation of NF-M, which may result in progressive deficits of axonal function (29).
Microfilaments
Microfilaments (or actin filaments) are the thinnest filaments of the cytoskeleton, having 6 nm in diameter, providing both stability and dynamics to neurons. In neurons, actin filaments are packed into networks and stabilized by interacting proteins (22). Microfilaments play a role in spine formation and spine volume stabilization (30), with the dynamics of actin leading to the formation of new synapses as well as increased cell communication. The actin cytoskeleton controls several cellular processes.