US20030158746A1 - Method and system for collecting and circulating data derived from medical appliances, useful in particular in intensive care units - Google Patents

Method and system for collecting and circulating data derived from medical appliances, useful in particular in intensive care units Download PDF

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Publication number
US20030158746A1
US20030158746A1 US10/257,098 US25709803A US2003158746A1 US 20030158746 A1 US20030158746 A1 US 20030158746A1 US 25709803 A US25709803 A US 25709803A US 2003158746 A1 US2003158746 A1 US 2003158746A1
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Prior art keywords
data
computer equipment
sending
configuration
analysis software
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Abandoned
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US10/257,098
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English (en)
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Steven Forrester
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Capsule Technologie SAS
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Capsule Technologie SAS
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Publication of US20030158746A1 publication Critical patent/US20030158746A1/en
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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/63ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/67ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H80/00ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2213/00Indexing scheme relating to interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F2213/0002Serial port, e.g. RS232C

Definitions

  • This invention relates to a new process and a new system for collecting data originating from sending apparatus that produces the said data and to distribute the data to users.
  • Each user has at least one computer equipment, particularly a personal microcomputer, connected to a display screen and/or a printer and/or a loudspeaker.
  • Each computer equipment is used with data analysis software.
  • the invention relates to a new process and a new system for collecting data originating from medical apparatus, particularly from medical apparatus used in intensive care units, and to distribute the said data to health practitioners.
  • Each health practitioner has at least one computer equipment, particularly a personal microcomputer, connected to a display screen and/or a printer and/or a loudspeaker.
  • the said computer equipment is associated with a clinical analysis software.
  • Medical apparatus is frequently used in intensive care units, including cardiac monitors, ventilators, infusion pumps, etc.
  • Most apparatus available on the market at the present time is provided with a communication port, usually an RS232.Therefore, it can be used to distribute all or some of the collected data to clinical analysis software.
  • This software uses data collected by medical apparatus for a large number of applications, for example for studying the reaction of the patient to a treatment, or a prescription change. This information is obviously valuable for the entire medical community, including the doctor and nurses and the hospital administration, pharmaceutical companies, and government officials responsible for the national health service.
  • the first solution consists of connecting each medical apparatus to a black box specific to it and that is designed to translate received messages into a common language that can be understood by the clinical software. Examples include Device Link made by the HP company, or Octanet made by the Marquette-Hellige company.
  • the second solution consists of developing a program specific to each medical apparatus, for each clinical analysis software.
  • a program specific to each medical apparatus for each clinical analysis software.
  • the process according to the invention to solve this problem collects data from the sending apparatus, particularly from medical apparatus like those used in intensive care units. This process is also designed to distribute the said data to users, particularly to health practitioners.
  • Each user has at least one computer equipment, particularly a personal microcomputer, connected to a display screen and/or a printer and/or a loudspeaker.
  • This computer equipment is used with a data analysis software, particularly a clinical analysis software.
  • the data are output by the sending equipment in specific formats that are different depending on the type of the sending equipment.
  • the process according to the invention comprises the following steps:
  • the user can use the data sent by a sending apparatus, even if the data were not formatted to the same standard as his own computer equipment and the associated data analysis software.
  • the process according to the invention also comprises the following steps:
  • the process according to the invention also comprises a step in which the data translated into a common format are stored.
  • the configuration for sending or receiving data translated into a common format is done using configuration—equipment—computer data as a function of the specific features of computer equipment and/or the data analysis software. Also advantageously, the said configuration—equipment—computer data are saved.
  • This invention also relates to a system to solve the problem that arises.
  • This system is designed to collect data produced by sending apparatus, and particularly medical data originating from medical apparatus, for example apparatus located in intensive care units.
  • This system is also designed to distribute the said data to users, particularly to health practitioners.
  • the system according to the invention comprises at least one data processing device.
  • the data processing device comprises reception means, particularly a reception software module, to receive data originating from the sending apparatus.
  • the data processing device also comprises data processing means, particularly a data processing software module to translate received data into a common format.
  • the data processing device also comprises data sending means, particularly a data sending software module, to distribute the data to users in the common format.
  • the system according to the invention is such that the user has his own computer equipment.
  • This computer equipment may in particular consist of a personal microcomputer connected to a display screen and/or a printer and/or a loudspeaker.
  • Each computer equipment comprises:
  • the data analysis software in the computer equipment comprises a conversion module
  • the data processing device also comprises conversion means, and particularly a conversion software module.
  • These conversion means are used to convert data in the common format into formatted data compatible with the computer equipment and/or its data analysis software.
  • the said data processing device is integrated in the said computer equipment. It is applicable to all clinical analysis software that could be used in combination with it.
  • the reception means of the said computer equipment are interconnected to the sending means of the said data processing device through a computer communication network, particularly an Internet type network.
  • the data processing device comprises a configuration—reception interface, and particularly a configuration—reception module, used to input configuration data for the reception means as a function of the format of the data originating from sending apparatus.
  • the data processing device also comprises a register containing the configuration data for the said reception means.
  • the data processing device comprises storage means for storing data translated into a common format.
  • the data analysis software installed on the computer equipment comprises a configuration—reception module that can be used to input reception means configuration data as a function of the specific features of the computer equipment and/or other data analysis software modules.
  • the data analysis software also comprises a save module containing the said configuration—reception data for the reception means.
  • the data processing device comprises a configuration—sending interface, and particularly a configuration—sending module.
  • This interface is used to input configuration data for the sending means as a function of specific features of the computer equipment and the data analysis software with which they will be used.
  • the data processing device also comprises a register containing the said sending means configuration data.
  • users can use data sent by a remote sending device, even if they are formatted according to standards other than the standards for their computer equipment and the data analysis software that they use.
  • FIG. 1 that diagrammatically shows a variant embodiment of the system according to the invention
  • FIG. 2 that diagrammatically shows the six modules forming a variant embodiment of the software for implementation of the invention, in the form of block diagrams.
  • the system is designed to collect medical data originating from medical apparatus 1 .
  • the medical apparatus may be located in intensive care units 2 .
  • the system is also designed to distribute the said data to health practitioners 3 .
  • the system comprises at least one data processing device 4 .
  • This data processing device 4 comprises reception means 4 a, and particularly a reception software module 4 a′ to receive data originating from sending devices 1 .
  • This data processing device 4 comprises data processing means 4 b, particularly a data processing software module 4 b′ , to translate data received into a common format.
  • the data processing device 4 also comprises data sending means 4 c, and particularly a data sending software module 4 c′ , to distribute data in the common format to the users 3 .
  • the software modules 4 a′ , 4 b′ and 4 c′ are shown symbolically in FIG. 1 by machine instruction lines.
  • the user 3 has computer equipment 5 , and particularly a personal microcomputer, connected to a display screen 5 a.
  • He may also include a printer 5 b and/or a loudspeaker 5 c.
  • Each computer equipment 5 comprises reception means 5 d that receive data sent by the said data processing device 4 , a data analysis software 5 e, shown symbolically in FIG. 1 by machine instruction lines.
  • the said data processing device 4 may be included in the computer equipment 5 .
  • the reception means 5 d of the said computer equipment 5 are interconnected to the sending means 4 c of the said data processing device 4 through a communication network 6 , and particularly an Internet type network.
  • the data analysis software 5 e of the computer equipment 5 comprises a conversion module 5 f to convert the data in a common format into formatted data compatible with the computer equipment 5 and/or other modules 5 g of the said data analysis software.
  • the data processing device 4 may also comprise conversion means 4 d, particularly a conversion software module 4 d′ to convert the data in the common format into formatted data compatible with the computer equipment 5 and/or its data analysis software 5 e.
  • the data analysis device 4 comprises a configuration—reception interface 4 e, particularly a configuration—reception software module 4 e′, to input configuration data for reception means 4 a as a function of the format of data output from sending apparatus 1 .
  • the data processing device 4 comprises a register 4 f containing the said configuration data for the reception means 4 a.
  • the data processing device 4 comprises storage means 4 g for storing data translated into a common format.
  • the data analysis software 5 e of the said computer equipment 5 comprises a configuration—reception module 5 h for inputting configuration data of the reception means 5 d as a function of the specific features of the computer equipment 5 and/or other modules 5 g of the data analysis software 5 e.
  • the analysis software 5 e also comprises a save module 5 i containing the said configuration—reception data of the reception means 5 d.
  • the data processing device 4 comprises a configuration—sending interface 4 e, particularly a configuration—sending module 4 e′ , used to input configuration data for sending means 4 c as a function of the specific features of computer equipment 5 and the data analysis software 5 e with which they will be used.
  • the register 4 f contains the said configuration data for the sending means 4 c.
  • FIG. 2 diagrammatically shows the six modules forming a variant embodiment of the software used to implement the invention, in the form of block diagrams.
  • the software referred to in the following as the “DataCaptor” software, is composed of the following seven modules:
  • the DataCaptor Service (DS) 21 is the software core. It starts and controls the other modules. It controls correct operation of the entire system. It detects malfunctions and restores nominal operation by correcting any problems. It checks that each DataCaptor Communication Interface (DCI) module 22 ( 4 a, FIG. 1), is activated and is operating correctly. It maintains the integrity and security of the system at all times. It controls the DataCaptor Device Interface (DDI) modules 23 ( 4 a, FIG. 1), through On/Off interfaces and commands (C). It provides interfaces that will be used by the other modules.
  • DCI DataCaptor Communication Interface
  • the DataCaptor Data Store (DDS) 24 is a Data storage module D, for short and long term. This module receives data acquired by each DDI 23 , stores the data on the disk 25 ( 4 g, FIG. 1) and sends them to DataCaptor ActiveX Controls (DAC) 26 .
  • the DDS 24 executes functions known in themselves to manage storage of data. It is optimised so that it can process requests in real time or requests in batch data, without any loss of performance. It provides interfaces enabling use of data D and commands C by other modules. All collected data are stored locally in binary files.
  • Each DataCaptor ActiveX Control (DAC) 26 is accessible from all points on the computer communication network 6 , regardless of whether a small NetBEUI network or an Internet network is being used. Each DataCaptor ActiveX Control (DAC) 26 is capable of distributing data D.
  • the DataCaptor ActiveX Control (DAC) 26 finds the associated DataCaptor Data Store (DDS) 24 for which it knows the address, and it then registers itself on this DDS as a data receiver.
  • the DataCaptor ActiveX Control (DAC) 26 can then receive data D from the associated DataCaptor Data Store (DDS) 24 .
  • This DDS may be local or it may be remote.
  • the data D are sent through the DataCaptor ActiveX Control (DAC) 26 to the computer equipment 5 (FIG. 1) belonging to the health practitioner, through the DataCaptor Data Portal (DDP) module 40 .
  • the clinical software used by a health practitioner can thus access all data related to a patient, collected by any medical apparatus in a health care unit, a hospital, etc.
  • the DataCaptor ActiveX Control (DAC) 26 may address C commands to the DataCaptor Data Store (DDS) 24 and/or to the DataCaptor Service (DS) 21 or to any other module.
  • DDS DataCaptor Data Store
  • DS DataCaptor Service
  • the programmer of the clinical analysis application software 5 e can integrate a DataCaptor ActiveX Control (DAC) module 26 , in some variant embodiments.
  • the Datacaptor ActiveX Control (DAC) module 26 is the interface that the programmer uses to use the system.
  • the C commands addressed by the DataCaptor ActiveX Control (DAC) 26 to the DataCaptor Data Store (DDS) 24 and/or to the DataCaptor Service (DS) 21 and to any other module may be pre-programmed in the application software and activated by the health practitioner.
  • DAC DataCaptor ActiveX Control
  • the DataCaptor Device Interfaces (DDI) 23 are used to access medical apparatus through DataCaptor Communication Interfaces (DCI) 22 . They are configured as a function of the specific features of the connected medical apparatus, making use of parameters contained in the register 27 ( 4 f, FIG. 1) of the operating system and inserted in the register by the DataCaptor Control Panel (DCP) 28 ( 4 e, FIG. 1).
  • the DataCaptor Service (DS) 21 starts these DataCaptor Device Interfaces.
  • Each DataCaptor Device Interface (DDI) 23 then connects to the appropriate DataCaptor Communication Interface (DCI) module 22 .
  • the DataCaptor Device Interfaces (DDI) 23 then maintain the connection with the connected apparatus and manage detected communication errors.
  • Each DataCaptor Device Interface (DDI) 23 controls low level communication through the DataCaptor Communication Interface (DCI) module 22 and the high level interface, using Data Communication protocols for data sent by the medical apparatus concerned.
  • the DataCaptor Device Interfaces (DDI) 23 read and translate the protocols of medical apparatus to which they are connected.
  • DataCaptor Device Interfaces (DDI) 23 can read and translate sporadic parameters, data curves in real time and any other digital data output from medical apparatus.
  • Each DataCaptor Device Interface (DDI) 23 transmits collected data to the DataCaptor Data Store (DDS) 24 .
  • DDS DataCaptor Data Store
  • DataCaptor Communication Interfaces (DCI) 22 are used to start and control physical communication ports 29 with the computer communication networks to which each medical apparatus 1 is connected. There is a DataCaptor Communication Interface (DCI) 22 for each type of communication port (serial, network, etc.). Each DataCaptor Communication Interface (DCI) 22 is started by the first DataCaptor Device Interface (DDI) 23 that requires this type of communication port. They also monitor any communication errors.
  • DCI DataCaptor Communication Interfaces
  • the DataCaptor Control Panel (DCP) module 28 ( 4 e, FIG. 1) is the interface used to configure the system. The user specifies (i) physical connections between the medical apparatus and physical communication ports, (ii) communication parameters and (iii) the type of medical apparatus concerned, through the DataCaptor Control Panel (DCP) 28 .
  • the DataCaptor Control Panel (DCP) module 28 is used to update the register 27 ( 4 f, FIG. 1).
  • the DataCaptor Control Panel (DCP) module 28 supplies information about the configuration of data sources for the system to the DataCaptor Device Interfaces (DDI) 23 and to the DataCaptor Communication Interfaces (DCI) 22 concerned through the register 27 .
  • DCI DataCaptor Communication Interfaces
  • the DataCaptor Data Portal (DDP) module 40 is the data conversion module D, converting data D from the DataCaptor ActiveX Controls (DAC) 26 , into the communication format of the clinical analysis software 5 e (FIG. 1).
  • the DataCaptor Data Portal (DDP) 40 sends data thus converted to the clinical analysis application software 5 e installed on the computer equipment 5 (FIG. 1).
  • the DataCaptor Data Portal (DDP) module 40 receives commands C from the clinical analysis application software 5 e (FIG. 1) and sends these data to the DataCaptor ActiveX Control (DAC) 26 .
  • a DataCaptor Data Portal (DDP) 40 is designed to receive data D from one or several DataCaptor ActiveX Controls (DAC) 26 .
  • the programmer of the clinical analysis application software 5 e (FIG. 1) includes a DataCaptor ActiveX Control (DAC) module 26 into the software, there is no need to provide a DataCaptor Data Portal (DDP) 40 . Also in this case, the programmer of the clinical analysis application software 5 e adapts the proprietary language of the clinical analysis software to the common format.
  • DAC DataCaptor ActiveX Control
  • DDP DataCaptor Data Portal
  • the solution according to the invention provides all data, regardless of the format of the source, in a single and easily useable output format.
  • the Microsoft Distributed Component Object Model forms the basic platform that was used for the development of a variant embodiment of the DataCaptor software.
  • This variant embodiment of the DataCaptor software is written in Microsoft C++ and Visual Basic. It implements an architecture based on ([D]COM) and operates under WNT, W98 and W95.
  • the choice of ([D]COM) solves all inter-module, inter-PC and Internet communication problems and guarantees compatibility with future versions of the Microsoft operating system, while enabling binary compatibility with other operating systems.
  • ([D]COM) is a binary standard.
US10/257,098 2000-04-06 2001-04-05 Method and system for collecting and circulating data derived from medical appliances, useful in particular in intensive care units Abandoned US20030158746A1 (en)

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FR0004391A FR2807542B1 (fr) 2000-04-06 2000-04-06 Procede et systeme pour collecter et diffuser les donnees provenant d'appareils, notamment d'appareils medicaux
FR00/04391 2000-04-06

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US10/257,098 Abandoned US20030158746A1 (en) 2000-04-06 2001-04-05 Method and system for collecting and circulating data derived from medical appliances, useful in particular in intensive care units

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EP (2) EP1279135A1 (de)
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US20030200116A1 (en) 2003-10-23
EP1279135A1 (de) 2003-01-29
FR2807542A1 (fr) 2001-10-12
WO2001077980A1 (fr) 2001-10-18
WO2001077981A1 (fr) 2001-10-18
FR2807542B1 (fr) 2006-09-29
AU4847601A (en) 2001-10-23
AU2001248479A1 (en) 2001-10-23
EP1279134A1 (de) 2003-01-29

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