Insufflation retention device with balloon
US-12121651-B2 · Oct 22, 2024 · US
US9855394B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9855394-B2 |
| Application number | US-201514682116-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 9, 2015 |
| Priority date | Apr 9, 2014 |
| Publication date | Jan 2, 2018 |
| Grant date | Jan 2, 2018 |
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There is provided an insufflation system and an insufflation apparatus which can prevent a pressure inside a lumen from rapidly increasing and can achieve operability matched to a sense an operator. The insufflation apparatus is connected to an endoscope and an insertion assisting tool which guides the endoscope into the gastrointestinal tract. Carbon dioxide can be insufflated into a gastrointestinal tract of a patient through an internal conduit of the endoscope according to an operator's operation (manual insufflation). When the operator instructs the insufflation apparatus to perform the automatic insufflation, carbon dioxide is intermittently insufflated into the gastrointestinal tract through the insertion assisting tool so as to make the pressure inside the gastrointestinal tract become a set pressure (automatic insufflation). The insufflation flow rate of the manual insufflation is switched between the high flow rate and the low flow rate according to ON/OFF state of the automatic insufflation.
Opening claim text (preview).
What is claimed is: 1. An insufflation system which insufflates a gas supplied from a gas supply source into a lumen of a living body, the insufflation system comprising: a first insufflation conduit through which the gas is automatically insufflated into the lumen; a second insufflation conduit through which the gas is insufflated into the lumen by manual operation; a pressure sensor configured to detect a pressure inside the lumen; a first solenoid valve configured to control an insufflation flow rate of the first insufflation conduit; a second solenoid valve configured to control an insufflation flow rate of the second insufflation conduit; and a control unit configured to control operations of the first solenoid valve and the second solenoid valve; wherein the control unit controls the insufflation flow rate of the first insufflation conduit based on a pressure difference between the pressure detected by the pressure sensor and a preset set pressure and determines whether or not the gas is insufflated through one or both of the first insufflation conduit and the second insufflation conduit, when a determined result is determined that the gas is insufflated through both of the first insufflation conduit and the second insufflation conduit, the second solenoid valve is controlled, and the insufflation flow rate of the gas insufflated through the second insufflation conduit is set as a first insufflation flow rate MF 1 , when a determined result is determined that the gas is not insufflated through the first insufflation conduit, the second solenoid valve is controlled, and the insufflation flow rate of the gas insufflated through the second insufflation conduit is set as a second insufflation flow rate MF 2 greater than the first insufflation flow rate MF 1 . 2. The insufflation system according to claim 1 , wherein when AF is defined as the insufflation flow rate of the gas insufflated through the first insufflation conduit, a following expression is satisfied MF 1 <AF≦MF 2 3. The insufflation system according to claim 1 , wherein when AF is defined as the insufflation flow rate of the gas insufflated through the first insufflation conduit, a following expression is satisfied MF 1 +AF≦MF 2 4. The insufflation system according to claim 1 , wherein the control unit alternately repeats an insufflation step of insufflating the gas through the first insufflation conduit, and a pressure detection step of stopping insufflating the gas through the first insufflation conduit and detecting the pressure inside the lumen by the pressure sensor. 5. An insufflation apparatus which insufflates a gas supplied from a gas supply source into a lumen of a living body, the insufflation apparatus comprising: a first connector, configured to be connected to a first insufflation conduit through which the gas is automatically insufflated into the lumen; a second connector, configured to be connected to a second insufflation conduit through which the gas is insufflated into the lumen by manual operation; a pressure sensor configured to detect a pressure inside the lumen; a first solenoid valve configured to control an insufflation flow rate of the first insufflation conduit; a second solenoid valve configured to control an insufflation flow rate of the second insufflation conduit; and a control unit configured to control operations of the first solenoid valve and the second solenoid valve; wherein the control unit controls the insufflation flow rate of the gas supplied to the first insufflation conduit based on a pressure difference between the pressure detected by the pressure sensor and a preset set pressure and determines whether or not the gas is supplied to insufflated through one or both of the first insufflation conduit and the second insufflation conduit, when a determined result is determined that the gas is insufflated through both of the first insufflation conduit and the second insufflation conduit, the second solenoid valve is controlled, and the insufflation flow rate of the gas insufflated through the second insufflation conduit is set as a first insufflation flow rate MF 1 , when a determined result is determined that the gas is not insufflated through the first insufflation conduit, the second solenoid valve is controlled, and the insufflation flow rate of the gas insufflated through the second insufflation conduit is set as a second insufflation flow rate MF 2 greater than the first insufflation flow rate MF 1 .
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