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TopscomTechnologyCo.,Ltd.

 
 
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patient monitoring systems electronic assembly 

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patient monitoring systems electronic assembly
       

  Product Specification
 
  Model No:      patient monitoring systems pcb assembly
  Country  CN
  Payment Term  T/T

 

    Product Detail
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Instrumentation medical devices patient monitoring
systems pcba assembly electronics oem contract manufacturing services OEM CEM
EMS experience company-China Shenzhen Topscom
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<img src="http://i.bosscdn.com/product/76/b1/d1/789c4c7b9087772dfde7784692.jpg@watermark=2&amp;color=I0ZGRkZGRg%3D%3D&amp;type=ZHJvaWRzYW5zZmFsbGJhY2s%3D&amp;size=17&amp;p=9&amp;t=80&amp;text=cGNiYXNzZW1ibHljaGluYS5ib3NzZ29vLmNvbQ%3D%3D" title="36" alt="36" /><br />
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incorporating rpm&nbsp;<span>Electronic OEM EMS CEM Contract Manufacturing PCb assembly service</span>
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<span>Incorporating RPM in chronic disease
management can significantly improve an individual`s quality of life. It allows
patients to maintain independence, prevent complications, and minimize personal
costs. RPM facilitates these goals by delivering care right to the home. In
addition, patients and their family members feel comfort knowing that they are
being monitored and will be supported if a problem arises. This is particularly
important when patients are managing complex self-care processes such as home
hemodialysis. Key features of RPM, like remote monitoring and trend analysis of
physiological parameters, enable early detection of deterioration; thereby,
reducing number of emergency department visits, hospitalizations, and duration
of hospital stays. The need for wireless mobility in healthcare facilitates the
adoption of RPM both in community and institutional settings. The time saved as
a result of RPM implementation increases efficiency, and allows healthcare
providers to allocate more time to remotely educate and communicate with
patients.</span>
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<span>Technology components:</span>
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<span>The diverse applications of RPM lead to
numerous variations of RPM technology architecture. However, most RPM
technologies follow a general architecture that consists of four components.</span>
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<span>&nbsp;</span>
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<span>Sensors on a device that is enabled by
wireless communications to measure physiological parameters.</span>
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<span>Local data storage at patients` site that
interfaces between sensors and other centralized data repository and/or
healthcare providers.</span>
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<span>Centralized repository to store data sent
from sensors, local data storage, diagnostic applications, and/or healthcare
providers.</span>
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<span>Diagnostic application software that
develops treatment recommendations and intervention alerts based on the
analysis of collected data.</span>
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<span>Depending on the disease and the parameters
that are monitored, different combinations of sensors, storage, and
applications may be deployed.</span>
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<span>&nbsp;</span>
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<span>Applications:</span>
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<span>&nbsp;</span>
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<span>Physiological data such as blood pressure
and subjective patient data are collected by sensors on peripheral devices.
Examples of peripheral devices are: blood pressure cuff, pulse oximeter, and
glucometer. The data are transmitted to healthcare providers or third parties
via wireless telecommunication devices. The data are evaluated for potential
problems by a healthcare professional or via a clinical decision support
algorithm, and patient, caregivers, and health providers are immediately
alerted if a problem is detected.As a result, timely intervention ensures
positive patient outcomes. The newer applications also provide education, test
and medication reminder alerts, and a means of communication between the
patient and the provider. The following section illustrates examples of RPM
applications, but RPM is not limited to those disease states.</span>
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<br />pcbassemblycn.com

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