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Implantable Medical Device Management System

a management system and medical device technology, applied in the direction of program control, electric programme control, instruments, etc., can solve the problems of patient's indefinite hospital stay, patient's medical treatment is likely to be the patient's prior art clinical intrathecal treatment methods are generally limited to the physical requirements of the implantable therapeutic substance infusion device, etc., to achieve efficient and integrated internet software

Inactive Publication Date: 2008-03-13
MEDTRONIC INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0017] The present invention provides a suite of applications for support of implanted medical devices, particularly implantable therapeutic substance infusion devices, or “drug pumps”. The invention may be configured to provide a single user login and authentication process for a central server hosting a suite of applications useful to practitioners, suppliers, and other parties with an interest in the operation of implantable medical devices. The present invention enables medical device manufacturers to define and market a unique suite of web tools for specific customer segments, while protecting a common “user experience” environment for a public server connected to a network, including a public network. The invention provides for efficient, integrated Internet software. Suites consist of applications that add value for the customer and are built around their medical practice workflows. Applications can be defined as “shared” or “dedicated” to a specific suite.
[0018] The suites will preferably include an Internet GUI Application Portal that will display the primary available applications provided to users by the system. Preferably, the GUI will be a user-configurable template. A first application in the suite is termed a “Specialty Pharmacy” application, which provides a communication between a physician and a pharmacy. This communication allows a physician to place orders or refills of a therapeutic agent on behalf of a patient with the pharmacy. The physician can also then change the prescription order in necessary. The application provides the physician with refill and prescription order reminders for the implantable drug pump. An automated dosage calculator is utilized in the application to provide predictive scenarios of contemplated treatment regimens for a patient. This dosage calculator can also insure that two or more non-compatible prescriptions are prescribed at the same time and can issue a warning to the physician if a lethal dosage is prescribed.

Problems solved by technology

Prior art methods of clinical intrathecal therapy are generally limited to the implantable therapeutic substance infusion device's physical requirements.
For example, if a physician needs to review the performance parameters of an implantable therapeutic substance infusion device in a patient, it is likely that the patient will have to go to the clinic.
Further, if the medical conditions of a patient with an implantable therapeutic substance infusion device warrant a continuous monitoring or adjustment of the device, the patient would have to stay in a hospital indefinitely.
Such a continued treatment plan poses both economic and social problems.
Currently, there is very little direct connectivity between the patient, the implantable drug pump manufacturer, the physician, the pharmacist, and the implantable device surgeon with the implantable drug pump.
The pharmacist's coordination with other drug pump stakeholders is limited as well.
Thus the capabilities of the implantable drug pump and the capabilities of the therapeutic substances are not optimized.
Electrically powered implanted therapeutic substance infusion devices can require replacement once implanted due to factors such as battery consumption, corrosion damage, and mechanical wear.
The worst-case scenario typically resulting in the implanted infusion device being replaced several months or even years before the implanted infusion device required replacement.
However, because present dosage calculation systems do not provide the patients, other clinicians, pharmacists and dispensaries, and drug pump manufactures with connectivity to each other.
Further, prior art dosage calculators do not provide the ability to view a patient's drug history, and intrathecal drug history, and assess drug dosage trends or perform a convenient detailed check of a patient's information such as drug allergies.
Finally, the prior art devices do not take into account the detailed specification of the implanted drug pump when therapeutic substance infusion therapy, such as intrathecal therapy, is being prepared.

Method used

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Embodiment Construction

[0038] To assist in an understanding of the invention, a preferred embodiment or embodiments will now be described in detail. Reference will be frequently taken to the figures, which are summarized above. Reference numerals will be used to indicate certain parts and locations in the figures. The same reference numerals will be used to indicate the same parts or locations throughout the figures unless otherwise indicated. The term application is frequently referred to below. It is to be understood that the term application can mean any general purpose programming language with a number of features, which make the language well suited for use on the World Wide Web (e.g., Java applets).

[0039] With respect to FIG. 1, a Conceptual Component Model 1 of a preferred embodiment of the present invention is depicted. A system according to the present invention preferably consists of multiple Business-to-Consumer (B2C) or Business-to Business (B2B) style applications (box 2), customized, as we...

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PUM

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Abstract

A suite of applications is provided for the administration of implantable medical devices, particularly implantable therapeutic substance infusion devices. The applications may be accessed over a public network, such as the Internet, and may be run using middleware. The applications provide for the administration of medical devices as they pertain to a particular patient, the ordering of therapeutic agents from participating third-party dispensaries, the scheduling of device maintenance and explant events, and the review of literature and educational materials pertaining to a particular medical device or class of devices.

Description

CROSS-REFERENCE TO RELATED APPLICATIONS [0001] This application is a continuation of copending U.S. patent application Ser. No. 10 / 025,023, filed Dec. 19, 2001, which claims the benefit of U.S. Provisional Application No. 60 / 278,821, filed Mar. 26, 2001, both of which are incorporated herein by reference in its entirety.FIELD OF THE INVENTION [0002] The present invention generally relates to an implantable therapeutic substance infusion device, also known as an implantable “drug pump”. Specifically, the invention is a remote server providing configuration capabilities for implantable drug pumps. The server provides utilities to consider aspects of the implantable pump along with specific drug formulations. More specifically the invention relates to real-time communication between physicians and the implantable therapeutic substance infusion device to assist the clinician in managing patients receiving intrathecal therapy. BACKGROUND OF THE INVENTION [0003] Optimally, a technology-ba...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): G05B19/18A61K9/22G06F17/00A61M5/142
CPCA61M5/14276A61M2205/3584G06Q50/24G05B2219/31186G05B2219/34038G05B2219/31156G16H20/17G16H40/40G16H40/67G16H70/00
Inventor BRISTOL, GUY SCOTT
Owner MEDTRONIC INC
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