Systems and methods for intra-operative physiological functional stimulation

a physiological function and intraoperative technology, applied in the field of tissue identification and integrity testing, can solve problems such as impairment of natural recipient function, and achieve the effect of accurate evaluation of the neuromuscular system

Inactive Publication Date: 2012-11-22
CHECKPOINT SURGICAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This technology helps evaluate how well your nerve works when it's damaged during surgeries that require precise assessment by measuring its activity accurately. It can help make repairs more effective without causing damage to surrounding tissues like muscles.

Problems solved by technology

Technically speaking, there exist situations where it becomes difficult for physicians to accurately determine which areas have been damaged by necrosis due to accidental incidents such as lacerations caused by accidents involving bone fractures. These issues make it challenges to perform precise assessments through traditional methods like histopathology, imaging techniques, ultrasonography, etc., especially after major operations.

Method used

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  • Systems and methods for intra-operative physiological functional stimulation
  • Systems and methods for intra-operative physiological functional stimulation
  • Systems and methods for intra-operative physiological functional stimulation

Examples

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Embodiment Construction

[0036]This Specification discloses various systems and methods for safeguarding against nerve, muscle, and tendon injury during surgical procedures or confirming the identity and / or location of nerves, muscles, and tendons and evaluating their function or the function of muscles enervated by those nerves. The systems and methods are particularly well suited for assisting surgeons in identification of nerves and muscles in order to assure nerve and muscle integrity during medical procedures using medical devices such as stimulation monitors, cutting, drilling, and screwing devices, pilot augers, and fixation devices. For this reason, the systems and methods will be described in the context of these medical devices.

[0037]The systems and methods desirably allow the application of a stimulation signal at sufficiently high levels for the purposes of locating, stimulating, and evaluating nerve or muscle, or both nerve and muscle integrity in numerous medical procedures, including, but not

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PUM

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Abstract

Improved assemblies, systems, and methods provide safeguarding against tissue injury during surgical procedures and/or identify nerve damage occurring prior to surgery and/or verify range of motion or attributes of muscle contraction during reconstructive surgery. Embodiments of methods according to the present invention provide the ability to intra-operatively simulate post-operative physiologic function of a body part. Such methods may be used during various surgical procedures, including nerve transfer procedures. Included are one or more steps of confirming paralysis or a weakened condition of a body part, confirming responsivity or operability of transfer tissue to supplement the functionality of the paralyzed or weakened part, and intra-operatively simulating post-operative functionality of the transfer tissue to enhance and/or predict the outcome of the surgical procedure.

Description

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Claims

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Application Information

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Owner CHECKPOINT SURGICAL
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