Nova Patents
EP2404253A1

Medical monitoring system

Abstract

This record has no abstract on file.

Term

3.4 yearsto projected expiry

Projected expiry 3 March 2030, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

130 claims: 19 independent, 111 dependent

  1. 1
    Claims of equivalent WO 2010102069 A2 WHAT IS CLAIMED IS:1. A medical patient monitoring device for displaying information associated with one or more medical patients, the medical patient monitoring device comprising: an interface configured to receive information associated with at least one patient;a display configured to display the information;a processor configured to control the information appearing on the display;and a detector for detecting the physical presence of a clinician token within a detection area in the vicinity of the medical patient monitoring device, the clinician token being indicative of the identity of a clinician, wherein the processor is further configured to take a first predetermined action in response to detection of the clinician token, the first predetermined action being associated with the identity of the clinician.
  2. 2
    The medical patient monitoring device of Claim 1, wherein the first predetermined action comprises changing the information appearing on the display.
  3. 3
    The medical patient monitoring device of Claim 1, wherein the first predetermined action comprises displaying information associated with one or more patients under the care of the clinician.
  4. 4
    The medical patient monitoring device of Claim 1, wherein the detector is configured to receive a signal from the clinician token in response to activation of a token actuator by the clinician.
  5. 5
    The medical patient monitoring device of Claim 4, wherein the signal comprises an identification code, and wherein the processor is further configured to communicate the code to a database to identify the first predetermined action.
  6. 6
    The medical patient monitoring device of Claim 1, wherein the detector automatically detects the physical presence of the clinican token within the detection area in the vicinity of the medical patient monitoring device without action of the clinician.
  7. 7
    A medical patient monitoring device for monitoring physiological information, the medical patient monitoring device comprising:an interface configured to receive physiological information associated with at least one patient;a processor configured to determine a patient physiological parameter based on the physiological information;and a detector for detecting the physical presence of a clinician token within a detection area in the vicinity of the medical patient monitoring device, the clinician token being indicative of the identity of a clinician, wherein the processor is further configured to take a first predetermined action in response to detection of the clinician token, the first predetermined action being associated with the identity of the clinician.
  8. 8
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises logging the clinician into the medical patient monitoring device.
  9. 9
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises setting the configuration of the medical patient monitoring device.
  10. 10
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises enabling a function offered by the medical patient monitoring device.
  11. 11
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises altering the substance of information displayed by the medical patient monitoring device.
  12. 12
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises altering the formatting of information displayed by the medical patient monitoring device.
  13. 13
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises transmitting physiological information to a remote device.
  14. 14
    The medical patient monitoring device of Claim 7, wherein the predetermined action comprises setting a patient monitoring option.
  15. 15
    The medical patient monitoring device of Claim 7, wherein the processor is further configured to take a second predetermined action once the presence of the clinician token is no longer detected.
  16. 16
    The medical patient monitoring device of Claim 15, wherein the second predetermined action reverses the first predetermined action.
  17. 17
    The medical patient monitoring device of Claim 7, wherein the detector is configured to detect the physical presence of the clinician token without physical contact between the medical patient monitoring device and the clinician token.
  18. 18
    The medical patient monitoring device of Claim 7, wherein the clinician token comprises a consumer electronic device that has undergone a registration process to associate with it a clinician identification code.
  19. 19
    The medical patient monitoring device of Claim 7, wherein the clinician token comprises a Bluetooth-enabled device.
  20. 20
    The medical patient monitoring device of Claim 7, wherein the clinician token comprises an RFID tag
  21. 21
    The medical patient monitoring device of Claim 7, wherein the physical presence of the clinician token is detected based on triangulation of its position using a plurality of distributed access points.
  22. 22
    The medical patient monitoring device of Claim 7, further comprising logic for, in the case where the detector detects the presence of a plurality of clinician tokens within the detection area, selecting a clinician token upon the basis of which to perform the first predetermined action using a plurality of priority indicators associated with the clinician tokens.
  23. 23
    The medical patient monitoring device of Claim 7, wherein the detector is configured to detect the physical presence of the clinician token based, at least in part, upon the strength of a wireless signal from the clinician token.
  24. 24
    The medical patient monitoring device of Claim 7, wherein the detector is configured to detect the physical presence of the clinician token based, at least in part, upon the length of time during which a wireless signal is detected from the clinician token.
  25. 25
    The medical patient monitoring device of Claim 7, further comprising a user interface to allow a clinician to physically interact with the medical patient monitoring device to cause it to take any one of a set of actions offered by the medical patient monitoring device, wherein the set of actions comprises the first predetermined action.
  26. 26
    The medical patient monitoring device of Claim 7, wherein the medical patient monitoring device comprises a bedside patient monitor having an input port for communicatively coupling to a medical parameter sensor that senses the physiological information.
  27. 27
    The medical patient monitoring device of Claim 7, wherein the medical patient monitoring device comprises a central monitoring station configured to be communicatively coupled to a plurality of bedside patient monitors, and to receive therefrom physiological information from a plurality of patients.
  28. 28
    A clinician token for communicating the identity of a clinician to a medical patient monitoring device, the clinician token comprising:a memory configured to store a clinical identification code associated with identity of a medical clinician;a communication module configured to wirelessly communicate the clinical identification code to a medical monitoring device in response to the clinician token being positioned within a detection area associated with the medical patient monitoring device, the communication module further configured to cause a medical monitoring device to display clinical information associated with the clinician in response to receiving the clinical identification code.
  29. 29
    The clinician token of Claim 28, further comprising an input module configured to receive a command from the clinician, and to cause the communication module to communicate with the medical monitoring device in response to the command.
  30. 30
    A clinical system for determining the physical locations of a plurality of medical devices, the system comprising:a plurality of medical patient monitoring devices, the plurality of medical patient monitoring devices being configured to collect physiological information from a plurality of patients;a distributed network of a plurality of detectors, the plurality of detectors being configured to detect wireless signals from the plurality of medical patient monitoring devices;and a location monitoring server communicatively coupled to the plurality of detectors, the location monitoring server being configured to determine estimates of the physical locations of the plurality of medical patient monitoring devices based upon the wireless signals detected from the plurality of detectors.
  31. 31
    The clinical system of Claim 30, wherein the location monitoring server is communicatively coupled to the plurality of medical patient monitoring devices, and wherein the location monitoring server is configured to cause a medical patient monitoring device to take an action using a rule that is based upon the estimated physical location of the medical patient monitoring device.
  32. 32
    The clinical system of Claim 31, wherein the action comprises setting the configuration of a medical patient monitoring device.
  33. 33
    The clinical system of Claim 32, wherein the configuration comprises a patient monitoring option.
  34. 34
    The clinical system of Claim 33, wherein the patient monitoring option comprises a physiological parameter alarm limit.
  35. 35
    The clinical system of Claim 31, wherein the action comprises notifying a clinician of a physiological parameter alarm condition detected by one of the plurality of medical patient monitoring devices.
  36. 36
    The clinical system of Claim 35, wherein the rule comprises notifying the clinician who is physically nearest the medical patient monitoring device that detects the physiological parameter alarm condition.
  37. 37
    The clinical system of Claim 30, wherein the plurality of detectors comprise WiFi-enabled access points.
  38. 38
    The clinical system of Claim 30, wherein the plurality of medical patient monitoring devices comprise the plurality of detectors. an interface configured to receive physiological information from at least one patient;a processor configured to perform a clinically-useful task based on the physiological information;and a detector for detecting the physical presence of a clinician token within a detection area in the vicinity of the medical patient monitoring device, the clinician token being indicative of the identity of a clinician, wherein the processor is further configured to take a first predetermined action in response to detection of the clinician token, the first predetermined action being associated with the identity of the clinician.
  39. 39
    A proximity display configured to display physiological parameters associated with one or more medical patients on screen according to a display preference associated with a user in proximity to the proximity display, the proximity display comprising:a physiological monitor configured to determine physiological parameters in response to an optical sensor signal derived from a patient;a display incorporated with the physiological monitor and configured to present the physiological parameters for viewing by a caregiver;a transceiver incorporated with the monitor responsive to an identification signal received from a transmitter carried by the caregiver, the identification signal being associated with the caregiver, wherein the display is configured to display the physiological parameters on the display according to a display preference associated with the caregiver as indicated by the identification signal.
  40. 45
    A proximity display monitor comprising:a monitor having a display and a wireless transceiver;the wireless transceiver responsive to identification signals which indicate the proximity to the monitor of any of a plurality of users;a plurality of display preferences corresponding to the users;and a plurality of preferred screens presenting physiological parameters on the display according to the display preferences.
  41. 46
    The proximity display monitor accordingly to claim 45 further comprising:a plurality of wireless transmitters associated with the users;the wireless transmitters send the identification signals to the wireless transceiver;the identification signals corresponding to the users;and the users having entered their identifications and display preferences into the monitor.
  42. 51
    A proximity display method comprising the steps of:attaching an optical sensor to a fleshy tissue site;generating a sensor signal responsive to optical radiation transmitted by the sensor and detected by the sensor after absorption by pulsatile blood flow within the tissue site;communicating the sensor signal to a monitor, which processes the sensor signal so as to derive physiological parameters responsive to constituents of the pulsatile blood flow;wirelessly signaling to the monitor the identity of a user in proximity to the monitor;determining a screen preference from the user identity for displaying the physiological parameters on a monitor display;and presenting at least a portion of the physiological parameters on the monitor display according to the screen preference.
  43. 58
    A proximity display monitor comprising:a processor responsive to a sensor signal generated from optical radiation transmitted into a fleshy tissue site and detected after attenuation by pulsatile blood flow within the tissue site, the processor configured to calculate a plurality of physiological parameters indicative of constituents of the pulsatile blood flow. a display that provides a visual representation of the physiological parameters values for viewing by proximate users;a wireless communications means for determining the identities of proximate users;a plurality of screen preference means for presenting the physiological parameters on the display;and a lookup table means for relating the identities to the screen preferences.
  44. 62
    A method for facilitating communication between first and second medical devices within a medical information network, the method comprising:receiving a first input message from a first medical device, the first medical device having generated said input message according to a first communication protocol, said input message identifying a second medical device as an intended recipient of the input message;translating said input message into an output message by applying one or more translation rules, said second medical device being configured to receive and process said output message;and providing said output message to the second medical device.
  45. 63
    The method of Claim 62, wherein the first communication protocol comprises the HL7 protocol.
  46. 64
    The method of Claim 62, further comprising generating said translation rules based upon said input message.
  47. 65
    The method of Claim 62, wherein said translating comprises rearranging at least a portion of the input message.
  48. 66
    The method of Claim 62, wherein said providing comprises providing said output message to the second medical device over a network.
  49. 67
    The method of Claim 62, wherein said providing comprises providing said output message to the second medical device over the Internet.
  50. 68
    The method of Claim 62, further comprising:receiving a second input message from the second medical device, the second medical device having generated said second input message according to a second communication protocol;translating said second input message into a second output message by applying different translation rules, said first medical device being configured to receive and process said second output message;and providing said second output message to the first medical device.
  51. 69
    A medical device message translator configured to facilitate communication between first and second medical devices within a medical information network, the translator comprising:a communication interface module configured to receive a first input message from a first medical device, the first medical device having generated said input message according to a first communication protocol, said input message identifying a second medical device as an intended recipient of the input message;a rules module, configured to store one or more predetermined translation rules;and a translation module configured to translate said input message into an output message by applying one or more translation rules retrieved from said rules module, said second medical device being configured to receive and process said output message.
  52. 70
    A method for converting messages communicated between medical devices and a hospital or clinical information system, the method comprising:receiving an input message from a hospital information system that comprises electronic patient medical records, the content of the input message being formatted according to a first set of formatting rules allowed under a medical electronic communication protocol;comparing the input message to a set of transformation rules;generating an output message, the content of the output message being reformatted according to a second set of formatting rules allowed under the medical electronic communication protocol, wherein the conversion rules control the reformatting of the content of the output message so as to comply with the second set of formatting rules;and outputting the output message to a medical device.
  53. 71
    The method of Claim 70, wherein the transformation rules are manually inputted.
  54. 72
    The method of Claim 70, wherein the transformation rules are automatically generated.
  55. 73
    The method of Claim 70, further comprising requesting a message and automatically determining a type of formatting to be implemented based on said message.
  56. 74
    The method of Claim 70, wherein the first set of formatting rules are implemented using HL7.
  57. 75
    The method of Claim 70, wherein the comparing includes parsing the input message.
  58. 76
    The method of Claim 70, wherein the comparing includes separating formatting and content of input message.
  59. 77
    The method of Claim 70, wherein the input message and output message use the same protocol but have different formats.
  60. 78
    The method of Claim 70, wherein the input message and output message use different protocol.
  61. 79
    The method of Claim 70, further comprising determining whether the input message complies with the HL7 standard.
  62. 80
    The method of Claim 70, wherein said generating comprises substituting field delimiter characters and/or changing field positions.
  63. 81
    The method of Claim 70, wherein the message comprises an admit discharge transfer (ADT) message.
  64. 82
    The method of Claim 70, further comprising determining field repeatability, cardinality, position, usage status, data type, and/or length.
  65. 83
    The method of Claim 70, further comprising reading rules from updatable or user configurable file.
  66. 84
    A method of providing field-customizable transformation of input and output medical messages belonging to a common medical electronic communication protocol but having different formats, the method comprising:receiving an input message from a first medical device, the content of the input message being formatted according to a first set of formatting rules;determining an intended recipient medical device from the input message;comparing the input message to a set of transformation rules;changing the formatting of the input message to reflect a second set of formatting rules expected by the intended recipient medical device based on the comparison of the input message to the set of transformation rules;generating an output message, the content of the output message being formatted according to the second set of formatting rules;and outputting the output message to the intended recipient medical device.
  67. 85
    The method of Claim 84, wherein the transformation rules are manually inputted.
  68. 86
    The method of Claim 84, wherein the transformation rules are automatically generated.
  69. 87
    The method of Claim 84, further comprising requesting a message and automatically determining a type of formatting to be implemented based on said message.
  70. 88
    The method of Claim 84, wherein the first set of formatting rules are implemented using HL7.
  71. 89
    The method of Claim 84, wherein the comparing includes parsing the input message.
  72. 90
    The method of Claim 84, wherein the comparing includes separating formatting and content of input message.
  73. 91
    The method of Claim 84, wherein the input message and output message use the same protocol but have different formats.
  74. 92
    The method of Claim 84, wherein the input message and output message use different protocol.
  75. 93
    The method of Claim 84, further comprising determining whether the input message complies with the HL7 standard.
  76. 94
    The method of Claim 84, wherein said generating comprises substituting field delimiter characters and/or changing field positions.
  77. 95
    The method of Claim 84, wherein the message comprises an admit discharge transfer (ADT) message.
  78. 96
    The method of Claim 84, further comprising determining field repeatability, cardinality, position, usage status, data type, and/or length.
  79. 97
    The method of Claim 84, further comprising reading rules from updatable or user configurable file.
  80. 98
    The method of Claim 84, wherein said input message is received from a hospital information system or clinical information system.
  81. 99
    The method of Claim 84, wherein said input message is received from a patient monitor or other medical device.
  82. 100
    The method of Claim 84, wherein said output message sent to a HIS and/or a CIS.
  83. 101
    The method of Claim 84, wherein said output message sent to patient monitor or other medical device.
  84. 102
    A system for facilitating communication of medical messages between a hospital information system and a patient monitor, the system comprising:a hospital information system comprising an electronic medical records database configured to store electronic medical records of a plurality of patients;a patient monitor configured to monitor at least one physiological condition of a patient;a transformation module configured to be communicatively coupled between the hospital information system and the patient monitor, the transformation module configured to: receive an input message from one of the hospital information system or the patient monitor, the content of the input message being formatted according to a first set of formatting rules;compare the input message to a set of transformation rules;and generate an output message, the content of the output message being re-formatted according to a second set of formatting rules, wherein the conversion rules control the re-formatting of the content of the output message so as to comply with the second set of formatting rules.
  85. 103
    The system of Claim 102, wherein said electronic medical records database is component of HIS or CIS.
  86. 104
    The system of Claim 102, further comprising a server.
  87. 105
    The system of Claim 104, wherein said server is configured to act as interface between the EMR database and the network.
  88. 106
    The system of Claim 105, wherein the network comprises a shared network.
  89. 107
    The system of Claim 102, wherein the transformation rules are manually inputted.
  90. 108
    The system of Claim 102, wherein the transformation rules are automatically generated
  91. 109
    A system for facilitating communication of medical messages between medical devices over a network, the system comprising:a first medical device configured to transmit and receive medical messages, the first medical device configured to be communicatively coupled to a network;a second medical device configured to transmit and receive medical messages, the second medical device configured to be communicatively coupled to the network;a transformation module configured to be communicatively coupled between the first medical device and the second medical device, the transformation module configured to: receive an input message from the first medical device, the content of the input message being formatted according to a first set of formatting rules;compare the input message to a set of transformation rules;generate an output message, the content of the output message being re-formatted according to a second set of formatting rules, wherein the conversion rules control the re-formatting of the content of the output message so as to comply with the second set of formatting rules;and output the output message to the second medical device.
  92. 110
    1 10. A method of defining formatting of medical communications under a medical electronic communication protocol, the method comprising:compiling format transformation software;installing the format transformation software;and updating a set of transformation rules within a user-configurable file without recompiling the format transformation software.
  93. 111
    1 1 1. A method for analyzing physiological parameter monitoring data, the method comprising:receiving physiological parameter data from a plurality of patients;receiving first physiological parameter alarm data from the plurality of patients, the first physiological parameter alarm data being indicative of alarm conditions experienced by the plurality of patients, the alarm conditions having been detected based upon a first alarm criteria;generating second physiological parameter alarm data using a processor, the second physiological parameter alarm data being indicative of simulated alarm conditions, the simulated alarm conditions being detected based upon a second alarm criteria;and comparing the first and second physiological parameter alarm data using a processor.
  94. 112
    1 12. The method of Claim 111, wherein generating second physiological parameter alarm data comprises applying an alarm detection algorithm to the physiological parameter data, the alarm detection algorithm being substantially similar to an alarm detection algorithm used to generate the first physiological parameter alarm data.
  95. 113
    The method of Claim 111, further comprising receiving medical intervention data indicative of medical interventions experienced by the plurality of patients.
  96. 114
    The method of Claim 113, further comprising correlating medical interventions from the medical intervention data with alarm conditions from the first physiological parameter alarm data.
  97. 115
    The method of Claim 113, further comprising estimating false negative events based upon the medical intervention data.
  98. 116
    The method of Claim 115, further comprising determining whether the false- negative events are detected using the second alarm criteria.
  99. 117
    1 17. The method of Claim 113, further comprising estimating, based upon the medical intervention data, which of the alarm conditions in the first physiological parameter alarm data are false positive alarms.
  100. 118
    The method of Claim 1 17, further comprising determining whether the false positive alarms are detected using the second alarm criteria.
  101. 119
    The method of Claim 1 13, further comprising estimating, based upon the nκdical intervention data, which of the alarm conditions in the first physiological parameter alarm data correspond to actual instances of medical duress experienced by a patient.
  102. 120
    The method of Claim 119, further comprising determining whether the actual instances of medical duress are detected using the second alarm criteria.
  103. 121
    The method of Claim 111, wherein comparing the first and second physiological parameter alarm data comprises determining the difference between the number of alarm conditions and the number of simulated alarm conditions.
  104. 122
    The method of Claim 111, wherein the physiological parameter data is received from a plurality of bedside patient monitoring devices.
  105. 123
    The method of Claim 1 11, wherein the first alarm criteria comprises a first threshold value of the medical parameter, and wherein the second alarm criteria comprises a second threshold value of the medical parameter.
  106. 124
    A computer-readable medium comprising instructions that, when read by a computer, cause the computer to perform a method for analyzing physiological parameter monitoring data, the method comprising:receiving physiological parameter data from a plurality of patients;receiving first physiological parameter alarm data from the plurality of patients, the first physiological parameter alarm data being indicative of alarm conditions experienced by the plurality of patients, the alarm conditions having been detected based upon a first alarm criteria;generating second physiological parameter alarm data using a processor, the second physiological parameter alarm data being indicative of simulated alarm conditions, the simulated alarm conditions being detected based upon a second alarm criteria;and comparing the first and second physiological parameter alarm data using a processor.
  107. 125
    A method for analyzing physiological parameter monitoring data, the method comprising:receiving physiological parameter data from a plurality of patients;receiving first physiological parameter alarm notification data indicative of physiological parameter alarm notifications generated based upon a first alarm notification delay time;generating second physiological parameter alarm notification data using a processor, the second physiological parameter alarm notification data being indicative of simulated physiological parameter alarm notifications generated based upon a second alarm notification delay time;and comparing the first and second physiological parameter alarm notification data.
  108. 126
    The method of Claim 125, wherein the physiological parameter data is received from a plurality of bedside patient monitoring devices.
  109. 127
    The method of Claim 125, wherein first alarm notification delay time comprises the elapsed time between detection of an alarm event by a first medical monitoring device and notification of the alarm event to a second medical monitoring device.
  110. 128
    The method of Claim 125, wherein the first alarm notification delay time comprises the elapsed time between detection of an alarm event and notification of the alarm event to a clinician.
  111. 129
    The method of Claim 125, wherein comparing the first and second physiological parameter alarm notification data comprises determining the difference between the number of physiological parameter alarm notifications and the number of simulated physiological parameter alarm notifications.
  112. 130
    The method of Claim 125, wherein generating second physiological parameter alarm notification data comprises applying an alarm detection algorithm to the physiological parameter data, the alarm detection algorithm being substantially similar to an alarm detection algorithm used to generate the first physiological parameter alarm notification data. 131. A computer-readable medium comprising instructions that, when read by a computer, cause the computer to perform a method for analyzing physiological parameter monitoring data, the method comprising:receiving physiological parameter data from a plurality of patients;receiving first physiological parameter alarm notification data indicative of physiological parameter alarm notifications generated based upon a first alarm notification delay time;generating second physiological parameter alarm notification data using a processor, the second physiological parameter alarm notification data being indicative of simulated physiological parameter alarm notifications generated based upon a second alarm notification delay time;and comparing the first and second physiological parameter alarm notification data.
Independent claims112