Process for respiratory rehabilitation treatment
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Abstract
A process for respiratory rehabilitation treatment, the process comprises treating a patient with a laser, resurfacing the treatment location by applying pulses of laser light. The process comprises treating a patient with administering an injection, injecting a primary injection solution into an injection location and injecting a secondary injection solution comprises at least a concentrate solution into an injection location. This process treats patients with breathing difficulties with injection of PRP and/or PRF into the soft palate and surrounding tissue. The treatment may be combined with CO2 and/or Nd-YAG laser treatment.
Core Innovation
The invention provides a process for respiratory rehabilitation treatment that treats a user with a laser while simultaneously using a scope to generate a real-time visual feed. The scope comprises a filter configured to attenuate a frequency of the laser and is configured to perform real-time area identification by processing the real-time visual feed, identifying target regions, and providing feedback including overlaying guidelines onto the real-time visual feed that indicate a treatment location.
The process further includes an integrated sensor mechanism in the laser that adjusts an operation of the laser as a function of a detected target energy delivery. Treating comprises injecting the treatment location with a local anesthetic and resurfacing the treatment location by applying pulses of laser light, with the operation of the laser being adjusted based on detected target energy delivery.
In addition to the laser-based resurfacing, the invention administers an injection in which a primary injection solution is formulated from an acquired biological sample relating to a user and is collected from the biological sample. The primary injection solution is injected into an injection location relating to the user, and a secondary injection solution comprising at least a concentrate solution is formulated and administered following formulation.
Claims Coverage
The partial content explicitly provides one independent claim. It covers scope-based real-time area identification with guideline overlay feedback, an integrated sensor mechanism for adjusting laser operation based on detected target energy delivery, local anesthetic injection and laser pulse resurfacing, and dual-stage injection solutions formed from an acquired biological sample and a secondary concentrate solution.
Scope with filter for attenuating laser frequency and real-time visual feed
A laser comprises a scope, wherein the scope comprises a filter configured to attenuate a frequency of the laser, is configured to produce a real-time visual feed, and is configured to perform real-time area identification including processing the real-time visual feed and identifying target regions.
Real-time area identification with overlaying guidelines feedback
The real-time area identification provides feedback comprising overlaying guidelines onto the real-time visual feed indicating a treatment location.
Integrated sensor mechanism adjusting operation based on detected target energy delivery
The laser comprises an integrated sensor mechanism configured to adjust an operation of the laser as a function of a detected target energy delivery.
Local anesthetic injection and laser pulse resurfacing at the treatment location
Treating comprises injecting the treatment location with a local anesthetic and resurfacing the treatment location by applying pulses of laser light.
Primary injection solution formulated from acquired biological sample and secondary concentrate solution
Administering comprises formulating a primary injection solution by acquiring a biological sample relating to a user and collecting the primary injection solution from the biological sample, injecting the primary injection solution into an injection location relating to the user, formulating a secondary injection solution comprising at least a concentrate solution, and administering the secondary injection solution.
Overall, the independent claim requires scope-based real-time visual feed and real-time area identification with guideline overlay feedback, an integrated sensor mechanism that adjusts laser operation based on detected target energy delivery, treatment that combines local anesthetic injection with laser pulse resurfacing, and injection administration that includes a primary injection solution collected from an acquired biological sample and a secondary injection solution comprising at least a concentrate solution.
Stated Advantages
Not explicitly described in patent.
Documented Applications
Not explicitly described in patent.
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