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Intuitively and rapidly applicable tourniquets

发明专利审中
22权利要求 · 3 独立
§ Ⅰ

卷宗概要

申请人

Michael J. Dimino; Michael C. Dimino; Alfonse Dimino

发明人

Michael J. Dimino; Michael C. Dimino; Alfonse Dimino

IPC 分类

A61B 5/205A61B 5/A61B 5/1A61B 5/2A61B 5/24A61B 5/11A61B 5/1455A61B 17/A61B 17/132G16H 40/67G16H 50/20

CPC 分类

A61B5/2055A61B5/22A61B5/1A61B5/2042A61B5/2422A61B5/1112A61B5/14552A61B5/7264A61B5/7275A61B5/746A61B17/1325G16H40/67G16H50/20A61B2017/57A61B2560/214

The Retrofit Tourniquet System is a portable, non-invasive diagnostic device designed to assess and monitor vital signs for early detection of hypovolemic shock and other trauma-related medical conditions. Utilizing integrated sensors, the system continuously tracks critical metrics such as heart rate, blood pressure, respiratory rate, pulse pressure, and blood oxygen levels, comparing them against individualized baseline values stored in lookup tables. The system's diagnostic algorithms identify deviations in vital signs, calculate estimated blood loss stages, and provide recommended treatment options. Built to function seamlessly on or off a tourniquet, the Retrofit Tourniquet System enables first responders and military personnel to assess a patient's condition in real-time, even in field conditions. Enhanced by secure data encryption and compatibility with healthcare interoperability standards (e.g., FHIR and HL7), the system also supports remote monitoring by medical professionals when integrated with remote databases. This tailored, AI-assisted device improves patient survivability by allowing for timely interventions, particularly in cases of internal bleeding where traditional diagnostics are insufficient.

原文(中文)

The Retrofit Tourniquet System is a portable, non-invasive diagnostic device designed to assess and monitor vital signs for early detection of hypovolemic shock and other trauma-related medical conditions. Utilizing integrated sensors, the system continuously tracks critical metrics such as heart rate, blood pressure, respiratory rate, pulse pressure, and blood oxygen levels, comparing them against individualized baseline values stored in lookup tables. The system's diagnostic algorithms identify deviations in vital signs, calculate estimated blood loss stages, and provide recommended treatment options. Built to function seamlessly on or off a tourniquet, the Retrofit Tourniquet System enables first responders and military personnel to assess a patient's condition in real-time, even in field conditions. Enhanced by secure data encryption and compatibility with healthcare interoperability standards (e.g., FHIR and HL7), the system also supports remote monitoring by medical professionals when integrated with remote databases. This tailored, AI-assisted device improves patient survivability by allowing for timely interventions, particularly in cases of internal bleeding where traditional diagnostics are insufficient.