Intracavitary probe

A cavity and carrier technology, used in the field of intracavity probes, can solve the problems of high sealing, unable to meet the needs of treating different parts, and unable to achieve pelvic floor treatment and rehabilitation well.

Inactive Publication Date: 2016-08-17
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Although the above two probes can expand and shrink the balloon or inflate the ball according to individual needs to achieve the purpose of filling the vagina, they have the following disadvantages: (1) the user needs to inflate before use, and the operation is complicated; The design requires high airtightness and high process requirements; (3) The inflatable design makes the probe unable to achieve therapeutic functions such as electrical stimulation and myoelectric collection, and cannot well achieve the functions of pelvic floor treatment and rehabilitation
[0005] At present, there is no pelvic floor rehabilitation probe that can flexibly change the length and position of the stimulating electrode on the basis of ensuring the functions of pressure collection, myoelectricity collection, and electrical stimulation therapy. It cannot meet the needs of patients with different physiological structures for different parts of the treatment. Unable to achieve flexible individualized treatment plan

Method used

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Examples

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Embodiment 1

[0031] Such as figure 2 As shown, the intracavity probe of Embodiment 1 of the present invention includes: a first carrier 10, a second carrier 20, a first patch 11, a second patch 21, a pressure sensor 50, a first signal transmission channel 90 and a second Signal transmission channel 80, the second carrier 20 has a cavity, one end of the first carrier 10 protrudes into the cavity of the second carrier 20, the first patch 11 is arranged on the first On the carrier 10, the second patch 21 and the pressure sensor 50 are arranged on the second carrier 20, the first signal transmission channel 90 connects the first patch 11 and the second patch 21, the The second signal transmission channel 80 is connected to the pressure sensor 50 .

[0032] continue to refer figure 2 , in this embodiment, the first carrier 10 and the second carrier 20 are connected in a spiral manner, preferably, one end of the first carrier 10 is provided with an external thread 12, and the inner side of o...

Embodiment 2

[0049] Such as Figure 4 As shown, in this embodiment, the first carrier 10 and the second carrier 20 are connected by snap-fitting. Optionally, a plurality of protrusions 120 are provided on the outer side of one end of the first carrier 10 , and a plurality of recesses 220 engaged with the protrusions 120 are provided on the inner side of one end of the second carrier 20 . Optionally, several recesses 120 are provided on the outside of one end of the first carrier 10 , and several protrusions 220 engaged with the recesses 120 are provided on the inside of one end of the second carrier 20 . The first carrier 10 and the second carrier 20 are connected by snapping and can be plugged in and out, so that the relative position of the first carrier 10 and the second carrier 20 can be changed, thereby adjusting the length of the intracavity probe.

[0050] When the second carrier 20 engages and slides relative to the first carrier 10, the overall length of the intracavity probe cha...

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Abstract

The invention provides an intracavitary probe. The intracavitary probe comprises a first carrier, a second carrier, a first paster, a second paster, a pressure sensor, a first signal transmission channel and a second signal transmission channel. The second carrier is provided with a cavity. One end of the first carrier stretches into the cavity of the second carrier. The first paster is arranged on the first carrier. The second paster and the pressure sensor are arranged on the second carrier. The first signal transmission channel is connected with the first paster and the second paster. The second signal transmission channel is connected with the pressure sensor. The length of the intracavitary probe is set by the adjustable connection mode of the first carrier and the second carrier, and the distance between stimulating electrodes can be flexibly changed so that the objectives of the treatment of different parts and fitting for different people can be achieved, and the individualized requirements for the treatment of pelvic muscles can be met.

Description

technical field [0001] The invention relates to the technical field of medical instruments, in particular to an intracavity probe. Background technique [0002] Pelvic floor dysfunction is a disease that plagues many women, especially postpartum women. At present, some non-surgical treatment methods, such as pelvic floor muscle training and electrical stimulation, have achieved good results. Autonomous pelvic floor muscle training has become a a trend. However, different women have different physiological structures, different parts of the muscle contraction ability and pelvic floor injury are also different, so the pelvic floor muscle rehabilitation can not be unified treatment standard, according to the situation of each patient to adopt the principle of personalized treatment, to provide patients with more flexible, A more suitable treatment plan is a development direction of pelvic floor treatment. [0003] At present, the existing pelvic floor rehabilitation therapy p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61N1/36A61N1/05
CPCA61N1/0524A61N1/36007
Inventor 郭佳卉侯志尚任凯陈开元牛金海
Owner SHANGHAI JIAO TONG UNIV
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