Thursday, 24 November 2016

Emerging Youth And Amateur Adult League Sports Software Market Advances, Shares, Strategies, And Forecasts, Worldwide, 2016 To 2022

New report analyzes and presents an overview on "Youth And Amateur Adult League Sports Software: Market Shares, Strategies, And Forecasts, Worldwide, 2016 To 2022" worldwide.
Worldwide Youth and Amateur Adult League Sports Software markets are poised to achieve significant growth and enormous market consolidation as youth and recreational teams move to automated process
Integration of a variety of technologies is the functional direction of market development as vendors seek to build out a platform. As companies try to build out specialized payment processing, registration, scheduling, and team communications capability, the platforms become very complex and difficult to change. The classic software problems associated with integration of different software modules begin to plague systems developers. The platform can include a lot of different functions illustrated below.
Sports Software
Club Management
Sports Websites
Sports Technology
Team Roster Software
Team Registration Management
Volunteer Management Software
Flexible payment options.
Users can choose from various payment methods
Pay by check or by credit card
Track cash payments
Make payment on account
Provides an advertising base for retail outlets
Advertising base has local reach
Broad functionality
Administrators can collect online payment securely
One tap payment
Discounts & coupons are supported
Create one multifaceted product
Tracks rosters, schedules, game attendance, practice attendance
Tracks availability, team payments, and statistics
Text communications
Email communications
Messaging
Team web site communications
Effective communications capability
Fields
Courts
Lessons
Referees
Parties
Multipurpose rooms
Equipment
Background Screening
Equipment Tracking
Facility Management
Game Results Tracking
Online Registration
Scheduling
Team Assignments
Volunteer Management
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Youth sports package software often generates revenue b taking a small percentage of the transactions that are run through the software by the teams. Standard software licenses are also used to pay for the software. A third revenue model depends on an annual fee per registration. In some cases, the fee is $50 per web site and an additional $299 annually A vendor typically charges $2.50 per registrant. Custom graphics are available for $599 typically.
Several youth team software vendors provide web site design tools, other vendors permit users to work with a graphics team to support building the appropriate design. Most vendors offer premium features to make them available in high end web sites. This includes text messaging, team, and effective communications capability.
A very few vendors are specialists in payments processing. Credit card processing is an important part of running an team. The teams revolve around shared use of fields, courts or ice. Payments processing provides a way to collect the money easily, providing a base for the team.
Most youth team software is available with an initial free trial. This lets people try out the web site for an organization. The strength of the software is the player registration process. Other vendors have strength in payments processing. Still others specialize in the web site design. A vendor that provides the best registration software considers it the bread and butter for the company.
Communication is a more elaborate software requirement and that is being upgraded by most vendors. Vendors work to make their software customizable. Vendors permit users to ask questions specific to the league, they can add an additional fee to be collected during the registration process.
“Vendors are making acquisitions to make the software able to provide a large set of capabilities. Modules brought in from different companies and developers are difficult to integrate into a functioning platform. Frequently functionality brought in from an acquisition is torn down and rewritten to make it conform to a platform standard.”
Market growth comes from increased benefits of organization in youth and amateur adult sports leagues. Travel teams and tournaments are in vogue. These do not happen in a consistent manner unless there is automated process in place. Automated process is just better for making a team function smoothly, eliminating vast amounts of politics. Shared resource is always a problem, having automated management is better. Once one aspect of the team management is automated, there is demand to automate all the processes across the board leading to plenty of consolidation and acquisitions in this market.
In a $9 billion U.S. youth sports market, the software for youth and amateur adult league teams at $389.4 represents 4.3% of the total spending. This is a nascent market, there is no end in sight, markets are expected to reach $5.9 billion by 2022. Sports teams will continue to get more organized and depend on software to provide increased management efficiency.
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Companies Profiled
Market Leaders
ACTIVE Network / ACTIVE Sports
Blue Star Sports
NBC Sports / Sport Ngin Hudl
Time / Sports Illustrated Play
Affinity Sports
TeamSnap
Dicks / Blue Sombrero
EZFacility
Cogran Systems
Market Participants
Affinity Sports
Atheletrax / mysportsort
Bear Dev
BenchBucket
Catapult
Coach Logic
Cogran
Easyteammanager
Engage Sports
FiXi Competition Management
HorizonWebRef.com
Jevin
Jonas Software / EZFacility
JoomSport
LeagueApps
LeagueLineup
LeagueLobster
LeagueRepublic
Nike+
QSTC
RosterBot
Sideline Sports
Sportlyzer
Swimtopia
Team Topia / SwimTopia
Teamer
TeamSideline.com
TeamSnap
Time / Sports Illustrated Play
Vista Equity Partners Fund IV and Vista Equity Partners Fund III / Active Network / ActiveSports / Lanyon
Wooter
Zuluru
YourTeamOnline
Front Desk
ClubManager
Bm Sports Leagues New York
Team Sports Admin
WatchMeGoPro
JDPreneur
Bonzi Technology
TopDog Sports
Upper Hand
Key Topics
Youth Sports Software
Recreational League Sports Software
Youth Organization Of Baseball
Youth Organization Of Softball
Youth Organization Of Basketball
Youth Organization Of Football leagues
Sports Platform
Sports Coaching
Sports Training
Sports Oxygen
Sports Wearables
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Retail: Global Bidet Market Research - Industry Analysis, Size, Share, Growth, Trends, And Forecast 2016-2021

New report analyzes and presents an overview on "Global Bidet Market - Industry Analysis, Size, Share, Growth, Trends, And Forecast 2016-2021" worldwide.
Gen's report, 'Global Bidet Market - Industry Analysis, Size, Share, Growth, Trends, and Forecast 2016-2021' provides detailed market and segment level data on the Global and Chinese consumption of Bidet. The report provides historic, forecast and growth patterns by company, country and type/application from 2016 to 2021.
This report delivers an extensive overview of Global Bidet industry with a focus on China. It also acts as an essential tool to companies active across the value chain and to the new entrants by enabling them to capitalize the opportunities and develop business strategies. It also helps the companies to better understand the trends of Soups market to seize opportunities and formulate crucial business strategies.
With this report, you will get access to:
1. Market overview including definition, industrial chain (upstream & downstream), manufacturing technology details and the costs analysis from the aspects of raw materials, labor costs and depreciation.
2. Value and volume consumption status and trends of the market, including Global and Chinese top players capacity & production, price & production value, cost & profit and market shares from 2011 to 2016.
3. Worldwide supply/demand pattern of Bidet by country or region (North America, China, EMEA, Asia except China), and by application/type.
4. Growth, trends and forecast of 2016-2021 Bidet market and some important proposals for new investment of Bidet Industry before evaluating its feasibility.
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Overall, the report provides an in-depth insight of 2011-2021 Global and Chinese Bidet industry covering all important parameters.
Chapter One Description
1.1 Study Scope
1.2 Key Findings of Industry
Chapter Two Brief Introduction
2.1 Definition
2.2 Industry Chain Structure
2.2.1 Upstream Raw Materials
2.2.2 Downstream Market
Chapter Three Development and Trends
3.1 Key Manufacturing Technologies
3.2 Issues and Trends
Chapter Four Cost Structure
4.1 Bill of Materials (BOM)
4.3 Labor Costs
4.4 Depreciation Costs
4.5 Manufacturing Costs
Chapter Five Worldwide Key Vendors
Company A
Company B
Company C
Company D
Company E
Company F
Company G

Chapter Six Market Overview
6.1 Global Market Size
6.2 Chinese Market Size
Chapter Seven Market Status
7.1 Market Competition Status by Key Vendors
7.2 Regional Market Competition Status
China
North American
EMEA
Asia except China
Chapter Eight Consumption Pattern
8.1 Regional Consumption
8.2 Global Consumption by Application
8.3 Chinese Consumption by Application
Chapter Nine Market Forecast
9.1 Market Size Forecast
9.2 Regional Consumption Forecast
9.3 Global Consumption Forecast by Application
9.4 Chinese Consumption Forecast by Application
Chapter Ten Development/Trends
10.1 Policies and Events
10.2 2015 New Situation
Chapter Eleven Investment Feasibility Analysis
Figures and Tables
Figure Global Market Size 2011-2016
Figure Chinese Market Size 2011-2016
Figure Global Key Application 2015
Figure Chinese Key Application 2015
Table Company A Production Status 2011-2016
Figure Company A Market Share 2011-2016
Table Company B Production Status 2011-2016
Figure Company B Market Share 2011-2016
Table Company C Production Status 2011-2016
Figure Company C Market Share 2011-2016
Table Company D Production Status 2011-2016
Figure Company D Market Share 2011-2016
Table Company E Production Status 2011-2016
Figure Company E Market Share 2011-2016
Table Company F Production Status 2011-2016
Figure Company F Market Share 2011-2016
Table Company G Production Status 2011-2016
Figure Company G Market Share 2011-2016
Table Global Key Vendors Capacity List 2011-2016
Table Global Key Vendors Capacity Share List 2011-2016
Figure Global Key Vendors Capacity Share 2011-2016
Table Global Key Vendors Production List 2011-2016
Table Global Key Vendors Production Share List 2011-2016
Figure Global Key Vendors Production Share 2011-2016
Table Global Key Vendors Production Value List 2011-2016
Table Global Key Vendors Production Value Share List 2011-2016
Figure Global Key Vendors Production Value Share 2011-2016
Figure Global Production, Production Value and Growth Rate 2011-2016
Table Global Average Price and Gross Margin 2011-2016
Table Chinese Key Vendors Capacity List 2011-2016
Table Chinese Key Vendors Capacity Share List 2011-2016
Figure Chinese Key Vendors Capacity Share 2011-2016
Table Chinese Key Vendors Production List 2011-2016
Table Chinese Key Vendors Production Share List 2011-2016
Figure Chinese Key Vendors Production Share 2011-2016
Table Chinese Key Vendors Production Value List 2011-2016
Table Chinese Key Vendors Production Value Share List 2011-2016
Figure Chinese Key Vendors Production Value Share List 2011-2016
Figure Chinese Production, Production Value and Growth Rate 2011-2016
Table Chinese Average Price and Gross Margin 2011-2016
Table Chinese Consumption 2011-2016
Figure Global Key Vendors Capacity Share 2015
Figure Global Key Vendors Production Share 2015
Figure Global Key Vendors Production Value Share 2015
Figure Chinese Key Vendors Capacity Share 2015
Figure Chinese Key Vendors Production Share 2015
Figure Chinese Key Vendors Production Value Share 2015
Table Regional Capacity (Units) List 2011-2016
Figure Regional Capacity (Units) 2011-2016
Table Regional Capacity Share List 2011-2016
Figure Regional Capacity Share 2011-2016
Table Regional Production (Units) List 2011-2016
Figure Regional Production (Units) 2011-2016
Table Regional Production Share List 2011-2016
Figure Regional Production Share 2011-2016
Table Regional Production Value (M USD) List 2011-2016
Figue Regional Production Value (M USD) 2011-2016
Table Regional Production Value Share List 2011-2016
Figure Regional Production Value Share 2011-2016
Table Regional Consumption Volume (Units) List 2011-2016
Figure Regional Consumption Volume (Units) 2011-2016
Table Regional Consumption Volume Share List 2011-2016
Figure Regional Consumption Volume Share 2011-2016
Table Global Consumption Volume (Units) List 2011-2016
Figure Global Consumption Volume (Units) 2011-2016
Table Global Consumption Volume Share List 2011-2016
Figure Global Consumption Volume Share 2011-2016
Table Chinese Consumption Volume (Units) List 2011-2016
Figure Chinese Consumption Volume (Units) 2011-2016
Table Chinese Consumption Volume Share List 2011-2016
Figure Chinese Consumption Volume Share 2011-2016
Figure Global Production, Production Value and Growth Rate 2016-2021
Figure Chinese Production, Production Value and Growth Rate 2016-2021
Table Global Average Price and Gross Margin 2016-2021
Table Chinese Average Price and Gross Margin 2016-2021
Table Consumption Volume (Units) List 2016-2021
Figure Consumption Volume (Units) 2016-2021
Table Consumption Volume Share List 2016-2021
Figure Consumption Volume Share 2016-2021
Table Global Consumption Volume (Units) List 2016-2021
Figure Global Consumption Volume (Units) 2016-2021
Table Global Consumption Volume Share List 2016-2021
Figure Global Consumption Volume Share 2016-2021
Table Chinese Consumption Volume (Units) List 2016-2021
Figure Chinese Consumption Volume (Units) 2016-2021
Table Chinese Consumption Volume Share List 2016-2021
Figure Chinese Consumption Volume Share 2016-2021
Table New Investment Feasibility Analysis
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Rehabilitation Robots Market Emerging Evolution, Innovation, Market Size, Sales, Advances, Shares, Strategies, And Forecasts, Worldwide, 2016 To 2022

New report analyzes and presents an overview on "Rehabilitation Robots: Market Shares, Strategies, And Forecasts, Worldwide, 2016 To 2022" worldwide.
The 2016 study has 774 pages, 296 tables and figures. Worldwide markets are poised to achieve significant growth as the rehabilitation robots, active prostheses, and exoskeletons are used inside rehabilitation treatment centers and sports facilities providing rehabilitation for all patients with injuries or physical dysfunction.
Research has found that by actively engaging stroke patients in repetitive tasks, the brain is able to rewire neurological pathways to motor functions. In this manner patients who have lost functions are able to relearn movement. The awareness and movement of hemi-paretic limbs can occur and functional recovery can continue even years after the brain injury. Much of the damage to a brain comes from lack of oxygen, even brief lack of oxygen is detrimental to the brain. The ability to recover is an ongoing process, something that robotic therapy over time will help.
Now, the reimbursement times for physical therapy are limited, and clinicians tell patients that everything that can be done has been done after a relatively short time. Robotic rehabilitation can continue after services are no longer paid for, giving people longer recovery times and more hope to regain lost function.
Robotic rehabilitation devices are based on automated process, use of a motor or use of microprocessor technology controlled by software. Rehabilitation robot vendors have set out to create repetitive process that works to help people improve their physical wellbeing using a robot, to improve more than they would without the robot. Improvements come because of a reduction in the cost of care delivery, making the rehabilitation more affordable and therefore able to be continued longer, or because of a reduction in boredom.
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Lack of knowledge about what protocols would work for a particular patient in a particular situation contributes to lack of rehabilitation benefit and patients stuck without optimum movement. Rehabilitation robots can be customized to create automated process that is responsive to patient needs.
Robotic rehabilitation devices use automated process to motivate patients and help them to improve their motor abilities. Motors are used to drive continuous motion machines to build muscle tone. Advances in robotics and bionics help therapists diagnose more precisely, increase clinic efficiencies, and reach more patients. Robotic physical therapy technologies improve patient engagement and HEP compliance. All better patient experience in turn leads to improved outcomes.
Because of the longer treatment cycle with rehabilitation robotics and extra motivation provided from incremental improvement, people get better than they might have otherwise.
Devices precisely record the patient performance during the training. Metrics gathered can be used to analyze and document the therapy progress. Graphical presentation of information about improvement can be used to further motivate patients to use the robotic devices for even more rehabilitation.
Relearning of lost functions in a patient depends on stimulation of desire to conquer the disability. The rehabilitation robots can show patients progress and keep the progress occurring, encouraging patients to work on getting healthier. Independent functioning of patients depends on intensity of treatment, task-specific exercises, active initiation of movements and motivation and feedback. Rehabilitation robots can assist with these tasks in multiple ways. Creating a gaming aspect to the rehabilitation process has brought a significant improvement in systems.
As patients get stronger and more coordinated, a therapist can program the robot to let them bear more weight and move more freely in different directions, walking, kicking a ball, or even lunging to the side to catch one. The robot can follow the patient’s lead as effortlessly as a ballroom dancer, its presence nearly undetectable until it senses the patient starting to drop and quickly stops a fall. In the later stages of physical therapy, the robot can nudge patients off balance to help them learn to recover.
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According to Susan Eustis, principal author of the team that developed the market research study, “Robotic therapy stimulus of upper limbs provides an example of the excellent motor recovery after stroke that can be achieved using rehabilitation robots.” Lower limb systems and exoskeleton systems provide wheelchair bound patients the ability to get out of a wheelchair
No company dominates the entire rehabilitation robot market sector. The products that work are still emerging as commercial devices. All the products that are now commercially viable are positioned to achieve significant staying power in the market long term, providing those companies that offer them with a possibility for long term leadership position in the market.
The companies you would expect to see as participating in these markets, the leaders in the wheelchair markets re not there with any significant presence. The exoskeletons will challenge the wheel chairs, providing a supplement to the wheelchair, permitting disabled people to have some more mobility than they have now.
Robotic rehabilitation equipment is mostly used in rehabilitation clinical facilities. There is a huge opportunity for launching a homecare equipment market if it is done through sports clubs rather than through clinical facilities. People expect insurance to pay for medical equipment but are willing to spend bundles on sports trainer equipment for the home. Rehabilitation robots can help stroke patients years after an event, so it makes a difference if someone keeps working to improve their functioning.
Vendors will very likely have to develop a strong rehabilitation robotic market presence as these devices evolve a homecare aspect. The expense of nursing home rehabilitation has been very high, limiting the use of rehabilitation to a few weeks or months at the most.
Rehabilitation robots realistically extend the use of automated process for rehabilitation in the home. The availability of affordable devices that improve mobility is not likely to go unnoticed by the sports clubs and the baby boomer generation, now entering the over 65 age group and seeking to maintain lifestyle.
As clinicians realize that more gains can be made by using rehabilitation robots in the home, the pace of vendor acquisitions will likely pick up in an effort to consolidate the industry.
Rehabilitation robot market size at $221.4 million in 2015 is expected grow dramatically to reach $1.1 billion by 2022. Exoskeleton markets will be separate and additive to this market. A separate exoskeleton market will create more growth. Market growth is a result of the effectiveness of robotic treatment of muscle difficulty. The usefulness of the rehabilitation robots is increasing. Doing more sophisticated combinations of exercise have become more feasible as the technology evolves. Patients generally practice 1,000 varied movements per session. With the robots, more sessions are possible.
WinterGreen Research is an independent research organization funded by the sale of market research studies all over the world and by the implementation of ROI models that are used to calculate the total cost of ownership of equipment, services, and software. The company has 35 distributors worldwide, including Global Information Info Shop, Market Research.com, Research and Markets, Electronics.CA, Bloomberg, and Thompson Financial.
WinterGreen Research is positioned to help customers face challenges that define the modern enterprises. The increasingly global nature of science, technology and engineering is a reflection of the implementation of the globally integrated enterprise. Customers trust WinterGreen Research to work alongside them to ensure the success of the participation in a particular market segment.
WinterGreen Research supports various market segment programs; provides trusted technical services to the marketing departments. It carries out accurate market share and forecast analysis services for a range of commercial and government customers globally. These are all vital market research support solutions requiring trust and integrity.
Companies Profiled
Market Leaders
AlterG
Myomo
InMotion Robots
Hocoma
Ekso Bionics
Patterson
Chatanoonga
BioNik / Interactive Motion Technologies
Market Participants
Berkley Robotics and Human Engineering Laboratory
Biodex
Bioness
Catholic University of America
Biodex
Bioness
DJO Global
Fanuc
Focal Meditech
Furniss
Hocoma
Honda Motor
Instead Technologies
Invacare
iRobot
InMotion Robots
Interaxon
KDM
Kinova
KLC Services
Medi
MRISAR
Orthocare Innovations
Patterson
ProMed Products Xpress
Reha-Stim
Robotdalen
RSL Steeper
RU Robots
Secom
Sunrise Medical
Touch Bionics
Tyromotion
Key Topics
Stroke Protocols
Active Prostheses
Exoskeletons
Robotic Technologies Leverage Neuroplasticity
Wearable Robotics
Strengthen The Upper Extremity
Strengthen The Lower Extremity
Hand Rehabilitation
Physical Therapy Automation
Recovery After Hip Injury
Wrist Rehabilitation
Stroke Rehabilitation
Rehabilitation Robots Software
Hip Rehabilitation
Anti-Gravity Treadmill
Continuous Positive Motion
CPM
Spinal Cord Injury Rehabilitation
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Wireless Infrastructure Market Size, Technology Advancement, Shares, Strategies, And Forecasts, Worldwide, 2013 To 2019

MarketResearchReports.Biz Research announces that it has published a new study Wireless Infrastructure: Market Shares, Strategy, and Forecasts, Worldwide, 2013 to 2019. Next generation mission critical systems are leveraging new technology. The 2013 study has 554 pages, 245 tables and figures. Worldwide Wireless Infrastructure markets are poised to achieve significant growth as Building out core networks and backhaul for smart phones.
A smart phone is not very smart if the infrastructure can't support its applications. In response to the high growth smart phone markets, wireless infrastructure promises to grow dramatically in the near term.. Wireless Infrastructure technologies include WiMax, LTE, 4G and HSPA. These technologies are driving much higher capacity from the base station back to the fiber core. Fiber core is putting extreme pressure on provider's infrastructure and backhaul networks.
WinterGreen Research predicts that the dramatic growth of wireless infrastructure is based on the growth of smart phones to a one trillion market by 2019, serving an installed base of 8.5 billion, many people having more than one smart phone. Wireless infrastructure markets at $58 billion in 2012 will be $163 billion by 2019, new markets evolved because of the value that apps provide to smart phones, mobile devices, tablets, and the Internet of things.
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According to Susan Eustis, lead author of the study, "Wireless Infrastructure is being installed to upgrade core networks and upgrade backhaul and base stations to make systems more modern. Infrastructure for the Internet and for smart mobile devices creates demand for more sophisticated web development and web applications that in turn depend on more sophisticated infrastructure. Everything is going mobile. This evolution is driven by mobile smart phones and tablets that provide universal connectivity. Modern systems represent a significant aspect of Internet market evolution."
The proportions of wireless infrastructure market industry segments are expected to remain much as they are, with the small cells and femtocells achieving strong growth on the access side, the core infrastructure must be upgraded to support the added backhaul backbone infrastructure. Wireless apps are expected to achieve $37 trillion revenue by 2019. This unbelievable growth occurs as the Internet is expanded to implement the interconnection of everything.
Digital devices proliferate, machine to machine capabilities vastly expand instrumentation. The digital devices become the engine of a world economy, with apps collecting pennies a day for millions of apps from 8.5 billion people with smart phones by 2019.
Companies Profiled
Market Leaders
Alcatel-Lucent
Ericsson
Google / Motorola
Samsung
NEC
ZTE
Cisco
Fujitsu
Huawei
LG
Nokia
Market Participants
Antenova
Berkeley-Varitronics Systems
CDG
General Dynamics
Global Mobile Suppliers Association
Juniper Networks
Micro Mobio
MTI Mobile
Nokia-Microsoft Partnership
Nokia Siemens Networks
QRC Technologies
Qualcomm
Radisys
Repeaters Australia
Reactel
RF Hitec
Siemens AG
Spirent Communications
TelLabs
TelNova Technologies
Check Out These Key Topics
Wireless Infrastructure
CDMA2000
GSM
Global System for Mobile Communications
W-CDMA
Wideband Code Division Multiple Access
LTE
Long-Term Evolution
Global Mobile Traffic
Femtocell
Small Cell
Broadband Cellular Networks
Mobile Packet Core
Mobile Broadband1
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