System for prognosticating patient outcomes and methods of using the same
Systems and Methods for prognosticating an outcome in a patient by integrating a hemodynamic parameter (Hdp) monitoring system and a Radio Frequency generator synchronized by a processing system is disclosed. The system is capable of identifying health condition-specific Hdp variation values changes in a patient upon the exposure of low-energy amplitude modulated electromagnetic field frequencies. The construction of a library of frequencies can be used to more efficiently and effectively predict or treat an outcome in a patient by auto-tuning a treatment regimen specifically to the patient.
1. A system for prognosticating an outcome in a patient, the system comprising:
an electrocardiogram monitoring system configured to detect an RR interval exhibited by the patient;
a generator configured to generate a low-energy electromagnetic carrier output signal to which the patient can be exposed; and
a processing system coupled to the electrocardiogram monitoring system and the generator, the processing system configured to:
synchronize the electrocardiogram monitoring system and the generator, and
receive, via the electrocardiogram monitoring system, a plurality of first RR interval values exhibited by the patient during a nonexposure period in which the patient is not exposed to the low-energy electromagnetic carrier output signal and a plurality of second RR interval values exhibited by the patient during or after an exposure period in which the patient is exposed to the low-energy electromagnetic carrier output signal, and
determine the outcome associated with the patient based on a comparison of the plurality of first RR interval values and the plurality of second RR interval values.
2. The system of claim 1 , wherein the outcome is selected from the group consisting of quality of life, survival, and hospital admission.
3. The system of claim 1 , wherein the low-energy electromagnetic carrier output signal is configured to influence a cellular function of the patient.
4. The system of claim 1 , further comprising an electrical sensor assembly coupled to the electrocardiogram monitoring system, the generator, and the processing system, wherein the electrical sensor assembly is configured to:
apply the low-energy electromagnetic carrier output signals to the patient; and
receive an electrical response from the patient in response to the low-energy electromagnetic carrier output signals.
5. The system of claim 4 , wherein the electrical sensor assembly is selected from the group consisting of an electrode belt configured to be worn by the patient and an antenna.
6. The system of claim 1 , wherein the processing system is configured to execute a computational statistics model that has been trained to determine the outcome associated with the patient based on the comparison of the plurality of first RR interval values and the plurality of second RR interval values.