Ems Studio Training Jacket

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Ems Studio Training Jacket
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EMS Studio Training Jacket BBModel907 Size:XS-XXL Payment term:TT/Paypal /Western union Warranty:Electro Muscle Stimulation Suit (3 months) , Engergy (1 years) Certification:CE, CTT, EMC, ROHS, SGS,GTS.
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EMS Training Weight Loss
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Description

EMS Studio Training Jacket

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Overview  

--Quick Details of EMS Studio Training Jacket

Type:Other

Feature:Anti-Puffiness, Skin Tightening, Cellulite Reduction, Detox, Wrinkle Remover, Weight Loss

Operation System:ems muscle stimulator

Place of Origin:Guangdong, China

Brand Name:bodytech

Model Number:BBModel907

Application:For Commercial & Home Use, home/gym/sport field

Product name:EMS Studio Training Jacket

Plattform:Android/iOS phone,tablet

service:OEM ODM

Technology:advanced EMS electro fitness

Suit Material:Spandex/Cotton/silver fiber/silicone

Size:XS-XXL

Agent:OEM Device or Software

Keywords:EMS Studio Training Jacket

Payment term:TT/Paypal /Western union

Warranty:Electro Muscle Stimulation Suit (3 months) , Engergy (1 years)

Certification:CE, CTT, EMC, ROHS, SGS,GTS.

Shipping (No need to pay extra shipping cost):DHL,UPS,FedEX,EMS,TNT and etc.

Lead time:7-10 days after receiving your payment

--Supply Ability Of EMS Studio Training Jacket

Supply Ability:200 Piece/Pieces per Month

--Packaging & Delivery of EMS Studio Training Jacket

Packaging Details:International export cartons , wooden box

Port:Guangzhou

--Parameter of EMS Studio Training Jacket

Equipment weight:150g

Equipment size:96*65*29mm

Period of use:1 year

Battery capacity:2650mAh

Charging rating:DC5V-Must be a standard 5V charge

Battery voltage:3.8V

The output voltage:0-50V DC square wave

Output frequency:1-120Hz

Output pulse width:1-500us

Operating temperature and humidity:10-40,30%-85%RH

Transport and storage temperature and humidity:-40~55,10%RH~93%RH

Operating pressure:860-1060hPa

Transportation and storage pressure:500hPa~1060hPa

 included things of model907

What does our ems device including?

1*Bodytech powersuit(EMS Studio Training Jacket),including the ems cable,ems belt

1* Ems underwear(Bottoming coat)

1*Bodytech Box,BT control box for attachment to the Powersuit

1*Charger

1*instruction manual

1*Huawei tablet

Shipping cost!No matter which country or region, this price already includes your shipping cost, no need to pay more!

 907展示衣服全局细节卖点

How to maintain the EMS Studio Training Jacket?

An antimicrobial layer was added to the surface of the electrode.If necessary, disinfect the electrode.This can be done as follows:

1.Under the highest water temperature 30manual cleaning training suit.

2.Hang the training clothes on the clothes rack, dry in a well-ventilated place.

3.The training suit after cleaning are clean and can be dried. Use again after drying.

Use ISOPROPANOL 70% for disinfection

All components,except the control unit,need to be inspected periodically and replaced if necessary.Only when the equipment is in good condition can BODYTECH be used optimally.

NOTICE

Material damage from incorrect cleaning!

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EMS Studio Training Jacket

During an EMS training session, we can configure a wide range of training parameters to suit your individual needs. However, an important difference to other forms of exercise is that we are able to activate ALL of the muscle groups simultaneously. This makes a workout much more time-efficient than conventional strength training or gym sessions, which typically only work a few muscle groups at a time.

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For which sports is EMS training suitable as supplementary training?

EMS training can be used as supplementary training for any kind of sport. Many professional athletes from different fields (e.g. football, golf, winter sports, athletics) use EMS training and can confirm its success. EMS training enhances speed, strength and endurance capacity.

 系统介绍

Role of whole body-electromyostimulation - "A series of studies"

However, newer study data indicate that a training frequency of at least two hours / week / year must be achieved in order to maintain or build muscle or bone mass at an older age. This need for high training frequency collides with the (low) sports participation rates of older people. For example, German surveys show that less than a quarter regularly engage in "sports" among the more than 70-year-old women, the risk group for sarcopenia and osteoporosis . In addition, in people who are lifelong "athletes", the willingness and insight to start a regular and intensive body training even at an older age is, understandably, not very pronounced. New training technologies, such as the so far under-researched whole-body electromyostimulation (WB-EMS), offer themselves here as time-effective, customizable and joint-preserving options for musculoskeletal prevention, especially for the elderly, less sport-affluent man. The aim of the TEST intervention studies was / is therefore to evaluate the effectiveness, applicability and attractiveness of WB-EMS on musculoskeletal parameters of the elderly.

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Introduction: The most effective strategy to prevent sarcopenia, osteoporosis and related musculo skeletal complaints is a physically active lifestyle, or even more promising, physical exercise. However, due to a variety of reasons the majority of elderly subjects are either unwilling or unable to perform frequent and intense conventional workouts. In this context, Whole-Body-Electromyostimulation (WB-EMS) may be a save, autonomous and efficient option to increase or maintain muscle and bone mass, and to favorably affect fat accumulation.

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Objective: Thus, the primary aim of the TEST (Training and Electromyostimulation Trial) study series is to determine the effect of WB-EMS-application on musculoskeletal parameters in trained and untrained subjects, 60 years and older. While TEST I, TEST II and TEST V focus exclusively on body composition with special regard to muscle mass and function, TEST III further addresses Bone Mineral Density (BMD) in a cohort of osteopenic females, 70 years and older, with a low livelong sport affinity.

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Results: In summary, WB-EMS showed significant positive effects on muscle mass, strength and power as well as on total and abdominal fat accumulation. With respect to muscle mass and, with some limitation, to muscular function, positive changes generated by WB-EMS were comparable to the effects of conventional resistance exercise training reported for elderly subjects. However, despite the apparently close muscle/bone interaction the WB-EMS effect on BMD was rather limited. Compared with a slightly active control group the WB-EMS application resulted in borderline significant effects only at the lumbar spine. In this context, the most favorable current composition (i. e. frequency, intensity, type) and application (i. e. active, passive) of WB-EMS to induce bone adaptation have still to be determined. With respect to feasibility, WB-EMS-application was highly accepted by all cohorts tested, which is substantiated by positive attendance, adherence and dropout rates. This, however, may be at least partially related to the exclusivity of this technology.

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Conclusion: In summary, considering the good acceptance of this technology by non-sportive elderly cohorts at risk for sarcopenia, obesity, and osteoporosis, WB-EMS should be considered as an efficient, less offputting option for subjects unwilling or unable to exercise conventionally to improve muscle and bone mass and function.

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