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The LTE, LTE-Advanced & 5G Ecosystem: 2014 - 2020 - Infrastructure, Devices, Subscriptions & Operator Revenue: Forecast and Research Report Available at MarketResearchReports.Biz

ALBANY, New York, February 13, 2014 /PRNewswire/ --

MarketResearchReports.Biz includes new market research report "The LTE, LTE-Advanced & 5G Ecosystem: 2014 - 2020" to its large collection of research reports.

Browse Full Report with TOC: http://www.marketresearchreports.biz/analysis-details/the-lte-lte-advanced-and-5g-ecosystem-2014-2020-infrastructure-devices-subscriptions-and-operator-revenue

As a natural upgrade path for carriers from the previously detached GSM, CDMA and TD-SCDMA ecosystems, LTE has emerged as the first truly global mobile communications standard. Commonly marketed as the "4G" standard, LTE promises to provide higher data rates and lower latency at a much lower Total Cost of Ownership (TCO) than 3G technologies.

The TCO and performance is further enhanced by deployment of small cells and the LTE-Advanced standard. LTE-Advanced or simply LTE-A is a further enhancement to LTE which improves performance and data rates using features such as the aggregation of carriers, interference management and advanced antenna techniques.

With over 265 fully commercial network launches, LTE adoption has considerably gained momentum throughout the globe, and a number of carriers have already deployed LTE-A features such as carrier aggregation. SNS Research estimates that LTE service revenues will account for $103 Billion in 2014. Revenues are further expected to grow at a CAGR of 40% over the next 6 years.

Driven by these revenue prospects, operators continue to aggressively invest in LTE infrastructure, encompassing macrocell base stations (eNBs), small cells and EPC/mobile core equipment. LTE infrastructure spending is expected to account for nearly $15 Billion by the end of 2014.

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Table of Contents  

1 Chapter 1: Introduction

1.1 Executive Summary

1.2 Topics Covered

1.3 Historical Revenue & Forecast Segmentation

1.4 Key Questions Answered

1.5 Key Findings

2 Chapter 2: LTE and LTE-Advanced Ecosystem

2.1 Mobile Broadband Growth

2.1.1 LTE: Adding Mobility to Broadband Applications

2.1.2 Flexibility of LTE Spectrum & Infrastructure Deployments

2.2 An Overview of LTE & LTE-Advanced

2.2.1 LTE: An Established Market

2.3 What are 4G Technology Features & Services?

2.3.1 LTE Performance Metrics

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3 Chapter 3: The 5G Ecosystem

3.1 What is 5G?

3.1.1 Key Concepts of 5G Technology

3.1.2 Key Features of 5G Technology

3.2 5G Architecture

3.2.1 Ubiquitous Computing

3.2.2 Core Aggregation & Flatter IP Concept

3.3 Challenges & Inhibitors to 5G

3.3.1 Skepticism

4 Chapter 4: 4G & 5G Operator Deployment Models

4.1 LTE/EPC Deployment for an Existing 3GPP Operator

4.1.1 Devices

4.1.2 How to Introduce EPC into the Equation?

4.1.3 Replacing the Existing Core

4.1.4 Upgrading Subscriptions

4.1.5 Maintenance of Legacy and LTE Infrastructure

4.2 LTE/EPC for a Greenfield Operator

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http://www.marketresearchreports.biz/analysis-details/endocrine-testing-market-e2-fsh-hcg-lh-dheas-progesterone-testosterone-tsh-prolactin-cortisol-insulin-tests-and-others--global-industry-analysis-size-share-growth-trends-and-forecast-2013-2019

Endocrinology, a branch of medicine deals with the study of structural and functional elements of the endocrine system. This system comprises endocrine glands (thyroid, adrenal, pituitary and others) and secretory organs (pancreas, hypothalamus) that release hormones directly into the blood stream and regulate the body functioning. Endocrine testing market is studied by three major segments namely, by test, by diagnostic technologies and by end users. The test segment is further classified into 11 major hormone tests that includes estradiol (E2), Follicle Stimulating Hormone (FSH), Human Chorionic Gonadotropin (hCG), Luteinizing hormone (LH), Dehydroepiandrosterone sulfate (DHEAS), progesterone, testosterone, Thyroid Stimulating Hormone (TSH), prolactin, cortisol and insulin tests.

The market accounts for a wide range of conventional as well as rapid diagnostic kits used for detecting deficiency (hyposecretion) or excess (hypersecretion) secretions of these hormones. The diagnostic technologies segment further describes the technological platforms used in the analysis of the specimen test sample (blood, urine, etc) and is further categorized into five major technologies, tandem mass spectrometry, immunoassay, monoclonal and polyclonal antibody, sensor and clinical chemistry technologies. The end user segment elucidates the endocrine testing market by various end users that includes hospitals, commercial laboratories, ambulatory health care centers, home based tests and physician's offices.

The global endocrine testing market is segmented into the following categories:

Hernia Endocrine Testing Market, by Tests

  • Estradiol (E2) Test
  • Follicle Stimulating Hormone (FSH) Test
  • Human Chorionic Gonadotropin (hCG) Test
  • Luteinizing Hormone (LH) Test
  • Dehydroepiandrosterone sulfate (DHEAS) Test

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Endocrine Testing Market, by Diagnostic Technologies

  • Tandem Mass spectrometry
  • Immunoassay (Enzyme immunoassays, Radioimmunoassays  (RIA)) Technologies
  • Monoclonal and Polyclonal Antibody Technologies
  • Sensor (Electrochemical, Biosensors, etc.) Technologies
  • Clinical Chemistry Technologies

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