The present application relates to a detachable cast, specifically an adjustable and detachable cast with pressure sensor to monitor a patient's bloods flows in casted body part. The present invention also relates to a method to ensure the patient's normal blood flow in casted body region by detecting a blockage of blood flow, and a secure and simple way to remove the cast when needed.
Bone fracture is a common medical condition that can occur to anyone at any stage of life. Stabilizing a fractured bone by means of a cast is an effective and low cost standard practice. However, the post fracture swelling makes cast too tight and creates pressure to casted body part. When swelling continues to occur after the cast has been placed and cause blood flow blockage, the cast often has to be split to relieve pressure as it may result in irreversible damage to the patient.
Removal of a conventional cast requires a saw blade, which is sharp and generates heat and particles in the air during sawing, poses risk and danger of cutting or burning the patient and inhalation of cast particles in the process.
One of the alternative removal methods is taught in U.S. Pat. No. 2,103,942, to Gillin. The Gillin is a detachable cast which applies zippers or hooks around the marginal edges and ensures ease of removal of cast. However the Gillin does not teach how to adjust the tightness of the cast if removal the cast is not an option.
On the other hand, a cast too tight can induce bad blood circulation and hence causes slower recovery of casted body part, while a cast too loose cannot stabilize a fractured bone and has no functionality. Nevertheless, swelling repeatedly occurs and abates after placing the cast so it can be hard to maintain normal blood flow while stabilizing fracture bone in the meantime during wearing a cast.
Additionally, swelling or blood flow blockage may occur without the awareness of the patient or doctor. A way to timely monitor so as to prevent irreversible damage to the patient is also needed.
It is accordingly the primary objective of the present invention that it provides an improved cast to adjust the pressure of the cast to the casted region. A further objective of the present invention is to provide an easier way to detach the cast when the need is detected.
In one aspect, a cast equipment is provided in this application. The cast equipment includes a fixed element, a fixing device and a pressure sensor. The filling device with a first site is fastened to the fixed element, and the pressure sensor is attached to the filling device, and the pressure sensor is able to detect and collect pressure data.
According to the above, the fixed element has a first container and a shape-retaining moldable material inside the first container.
According to the above, the filling device has a second container and an inflatable balloon inside the second container.
According to the above, the first container and the second container are bags made of weave cloth.
According to the above, the filling device has a second site attached to the fixed element by weaving the first container and the second container together.
According to the above, the pressure sensor detects a pressure data through detecting the pressure of the filling device.
According to the above, the fixed element includes a separable fasten means and the separable fasten means is a zipper.
According to the above, the pressure sensor further includes a component for connecting to an internet environment, and the pressure sensor sends a collected pressure data to a user's device through the internet environment.
According to the above, the pressure sensor can send an alert to the user's device if the pressure sensor detects a pressure data over a threshold value.
According to the above, the threshold is 60 mmHg.
In another aspect, a method for detecting a pressure data to a casted region is also provided. The method has steps of (a) applying a fixed element having a separable fasten means to a patient; (b) fastening a filling device to said fixed element with an attached pressure sensor by the separable fasten means; and (c) detecting the pressure data by the pressure sensor.
According to the above, the method further has a step of sending a detected pressure data to a user's device.
According to the above, the detected pressure data is sent through a wireless network environment.
According to the above, the method further has a step of sending an alert to a user's device if the pressure data represents a blood blockage.
According to the above, the pressure data is a data over 60 mmHg.
In another aspect, a method for releasing a blockage to a casted region is provided. The method has steps of (a) applying a fixed element having a separable fasten means to a patient; (b) fastening a filling device to the fixed element with an attached pressure sensor by the separable fasten means; (c) detecting a blood blockage by the pressure sensor; and (d) deflating the filling device or removing the fixed element by the separable fasten means to release the blockage.
According to the above, the method further has a step of sending a detected blockage alert to a user's device after step (c).
According to the above, the detected blockage alert is sent through a wireless network environment.
According to the above, the filling device is an inflatable balloon.
According to the above, the blood blockage is a pressure data over 60 mmHg.
The spirit of the invention will be more readily appreciated by one of ordinary skilled in the art from the following drawings, working examples and descriptions.
The features of the present application will become apparent from the following detailed description that is provided in connection with the accompanying figures of the invention. It should be understood that indicating embodiments of the present application are not intended to limit the scope of the following claims.
Step S1: Applying a fixed element having a separable fasten means to patient;
Step S2: Fastening a filling device to the fixed element with an attached pressure sensor by the separable fasten means;
Step S3: detecting a pressure data by the pressure sensor;
Step S4: sending the detected pressure data to a user's device through internet, or sending an alert to a user's device if the pressure data is over 60 mmHg, which is over a normal human diastolic pressure and is representing a blood flow blockage.
Step S5: Deflating the filling device or removing the fixed element by the separable fasten means to release a blockage.
The present invention applies a fixed element having a separable fasten means which are detachable and a filling device with pressure sensor which is able to release the tightness and the blood flow blockage caused by post-fracture swelling. The present application provides a way to adjust the cast and solve the problem in the field.
The present application claims the benefit of U.S. provisional Application No. 62/307,553 filed on Mar. 13, 2016, the contents of which are hereby incorporated by reference.
Number | Date | Country | |
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62307553 | Mar 2016 | US |