CN215425521U - Nanometer lower limb deep vein thrombosis protective sleeve - Google Patents
Nanometer lower limb deep vein thrombosis protective sleeve Download PDFInfo
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- CN215425521U CN215425521U CN202120785282.6U CN202120785282U CN215425521U CN 215425521 U CN215425521 U CN 215425521U CN 202120785282 U CN202120785282 U CN 202120785282U CN 215425521 U CN215425521 U CN 215425521U
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- protective sleeve
- deep vein
- lower limb
- opening
- vein thrombosis
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Abstract
The utility model provides a nanometer protecting sleeve for deep venous thrombosis of lower limbs, which is characterized in that: comprises a protective sleeve body; the protecting jacket body comprises a first inlet and outlet part; the first inlet and outlet part is arranged at the top end of the protective sleeve body; first business turn over portion, detachable installs prevents pressing the sore component. The protective sleeve has diversified functions, and can particularly prevent the problems of limb stiffness and pressure sore.
Description
Technical Field
The utility model relates to auxiliary medical equipment, in particular to a nano protective sleeve for deep venous thrombosis of lower limbs.
Background
Sock covers or similar products are generally used at present for lower limb deep vein protection equipment.
Such products, have the following problems:
1. the tightness of the closing part is difficult to reach a proper level, and the problems of edema and the like caused by the compression of limbs due to over-tightness exist often, or the effect of protection cannot be realized due to over-tightness.
2. Since the patient himself or herself is bound to his or her limb, a long-term standstill is likely to cause a problem such as thrombus.
3. The function is single, and diversified application cannot be realized.
4. Is hot and humid and cannot be worn for a long time in environments such as summer.
5. The cold body feeling is caused by the consistent stiffness of the limbs in winter.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects and provide a protective sleeve which has diversified functions and can particularly prevent the problems of limb stiffness and pressure sore.
The utility model provides a nanometer protecting sleeve for deep venous thrombosis of lower limbs, which is characterized in that: comprises a protective sleeve body;
the protecting jacket body comprises a first inlet and outlet part;
the first inlet and outlet part is arranged at the top end of the protective sleeve body;
above-mentioned first entering portion, detachable installs and prevents pressing the sore component.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the pressure sore prevention member is a pressure sore prevention liquid medicine coated on the inner surface of the first inlet and outlet portion.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the pressure sore prevention component comprises a medicine bag and a fixing piece;
the fixing piece is fixed on the medicine bag;
the medicine bag is detachably arranged on the inner surface of the first inlet and outlet part through the fixing part;
the medicine bag is filled with pressure sore prevention liquid medicine;
nanometer through holes are uniformly distributed on the surface of the medicine bag.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the pressure sore prevention component comprises a pressure sore prevention parent part and a pressure sore prevention child part;
the pressure sore prevention female piece is fixed on the inner surface of the first inlet and outlet part;
the above-mentioned prevent pressing sore son spare, detachable with prevent pressing the combination of sore mother's piece.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the pressure sore prevention sub-piece is of a medicine bag structure;
the medicine bag structure is filled with pressure sore prevention liquid medicine;
the external surface of the medicine bag structure is uniformly provided with nanometer through holes.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the protective sleeve body is also provided with a cushion layer;
the cushion layer is of an inflation and deflation structure.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the cushion layer comprises a first air bag group and a second air bag group which are independent from each other and are arranged in a staggered mode;
the first air bag group is communicated with a first air valve;
and the second air bag group is communicated with a second air valve.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the inner surface of the protective sleeve body is provided with at least one groove body;
a slow-release medicine sac is detachably arranged in the groove body;
the slow-release medicine bag is filled with medicine;
the external visual surface of the slow release medicine bag is provided with a nanometer through hole.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the protecting jacket body is provided with at least one pair of opening and closing components;
the opening and closing assembly comprises an opening and closing sub-assembly and an opening and closing main assembly;
the opening and closing sub-element and the opening and closing main element are respectively positioned at the end parts of the two sides of the protective sleeve body;
the size of the space in the protective sleeve body is adjusted by enabling the opening and closing sub-component and the opening and closing main component to be close;
the protection sleeve body is unfolded by keeping the opening and closing sub-element and the opening and closing main element away.
Further, the utility model provides a nanometer lower limb deep vein thrombosis protective sleeve, which is characterized in that: the interior of the protective sleeve body is also provided with a heating mechanism;
and/or
The protective sleeve body is made of hollow-out fabric.
Drawings
Fig. 1 is a schematic structural diagram of a nano lower limb deep vein protective sleeve provided in this embodiment;
fig. 2 is a schematic structural diagram of a sachet provided in the modification 1 of the present embodiment and used with a nano lower limb deep vein protection sleeve;
fig. 3 is a schematic view of the unfolding internal structure of the nano lower limb deep vein protection sleeve provided in the modification 2 of the present embodiment;
fig. 4 is a schematic view of the unfolding internal structure of the nano lower limb deep vein protection sleeve provided in the modification 3 of the present embodiment;
fig. 5 is a schematic structural diagram of a nano lower limb deep vein protection sleeve provided in the modification 4 of the present embodiment;
fig. 6 is a schematic structural diagram of the nano lower limb deep vein protection sleeve provided in the modification 5 of the present embodiment.
Detailed Description
As shown in fig. 1, the nanometer protecting sleeve for deep venous thrombosis of lower limb of the present embodiment has a main body similar to a traditional sock model;
the protective sleeve body comprises a first inlet and outlet part 110 and a second inlet and outlet part 120;
in use, the first entrance and exit portion 110 is an entrance and exit position of the foot of the patient, and is generally provided with an elastic band;
the second entrance and exit 120 corresponds to a toe portion, and in the present embodiment, the second entrance and exit 120 has an open structure in consideration of convenience of daily observation/sterilization.
The second inlet and outlet portion 120 may be a closed structure or a structure with an opening and closing member (e.g., a flap, etc.) according to the actual application.
In this embodiment, the first entrance and exit portion 110 is in a foldable configuration (i.e. folded down as shown in fig. 1), and the foldable position is coated with the pressure sore prevention agent 111, so as to prevent pressure sore problem caused by long-term wearing.
In addition, it is considered that the coating of the medical agent on the protective cover body may cause problems such as difficulty in cleaning and residue, and the medical agent may be absorbed by the fabric itself, thereby deteriorating the medical effect.
As a modification, the foldable position is a structure of the female hook and loop fastener 111.
The medicine feeding bag matched with the magic female sticker has a structure as shown in figure 2, namely, the medicine feeding bag comprises a medicine bag body 220;
the medicine bag body 220 is internally filled with a pressure sore prevention medicine 221;
nano through holes 222 are uniformly arranged on the upper surface of the medicine capsule body 220;
the lower surface of the medicine bag body 220 is provided with a magic tape 210;
in the in-process of using, paste 210 with the magic and paste 111 completion interconnect back with the magic mother, wait that patient's foot gets into the sheath, will turn over a position and turn up, along with human body temperature and the oppression effect of elastic cord itself, the liquid medicine in the anther sac passes through the slow release of nanometer through-hole to being oppressed the position, can prolong the time of changing the anther sac on the one hand, and on the other hand can stabilize effectual the dosing for a long time.
Moreover, the design can avoid the operation trouble of family members of patients, and only needs to select and purchase a replacement medicine bag with a proper size. And the sanitary problem caused by medicament residue is not needed to be worried about.
Considering the situation that a certain pressure and long-term wearing are required as a protective cover for postoperative rehabilitation. The post-operation limb cannot move freely as normal limb due to the problem that the limb is once injured, so that the problems that the part of the limb has operation, edema is caused by long-term insufficient movement and the like are caused.
In order to solve the problem of the ill condition of the limb caused by the stiffness, the inner layer structure of the whole sheath is provided with adjustable pressure in the embodiment.
As shown in fig. 3, in this embodiment, the shield main body position has a barrier layer having a first air cushion layer 131 and a second air cushion layer 141 therein;
the first cushion layer 131 and the second cushion layer 141 are designed to be staggered with each other;
the first air cushion layer 131 is also provided with a ball valve 132 communicated with the first air cushion layer, the ball valve 132 is pressed to enable the air to enter the first air cushion layer 131 to be expanded, and when the air is not required to be expanded, a vent valve of a port of the first air cushion layer 131 is opened;
the second air cushion layer 141 is also provided with a ball valve 142 communicated with the second air cushion layer, the ball valve 142 is pressed to enable the gas to enter the second air cushion layer 141 to be swelled, and when the gas does not need to be swelled, a ventilation valve at the port of the second air cushion layer is opened;
the two ball valves are generally disposed above the protective sleeve to facilitate pressing and securing.
In the using process, the person can adjust the inflation saturation and different air bag groups according to the body feeling of the person.
For example: the patient can inflate and deflate a group of air bags every 1 hour, so that the pressure change of different local positions is realized, and the effect similar to massage is realized.
In addition, as shown in fig. 4, the first air cushion layer 131 and the second air cushion layer 141 may also be in a structure with uniform dot distribution as shown in the figure, and this structure can better achieve the effect of force averaging.
Considering the problem of different foot/leg sizes of individuals, the foot size changes when the foot edema changes according to different treatment stages.
Therefore, the modification provides a protective sleeve capable of adjusting the tightness of each part;
as shown in FIG. 5, the sheath is comprised of a main body portion 100, upper flaps, center flaps, and lower flaps;
the upper, middle and lower wings are paired and located at the upper, middle and lower positions of the main body portion 100, respectively, and correspond to the legs, ankles and toes.
The upper wing consists of a first upper wing 130 and a second upper wing 131;
the back of the first upper wing 130 has a hook and loop fastener 132 (or a first buckle);
the second upper wing 131 has a hook and loop fastener 133 (or a second buckle) on its face;
during the use process, the first upper wing 130 and the second upper wing 131 are combined after the distance between the two wings is automatically adjusted according to the tightness;
also, the middle flap is composed of a first middle flap 120 and a second middle flap 121;
the back of the first middle wing 120 has a hook and loop fastener 122 (or a first snap);
the face of the second middle wing 121 is provided with a magic female tape 123 (or a second buckle);
during the use process, the first upper wing 120 and the second upper wing 121 are combined after the distance between the two wings is automatically adjusted according to the tightness;
the lower wing consists of a first lower wing 110 and a second lower wing 111;
the back of the first lower wing 110 has a hook and loop fastener 112 (or a first buckle);
the face of the second lower wing 111 has a hook and loop fastener 113 (or a second buckle);
in the using process, the distance between the first lower protective wing 110 and the second lower protective wing 111 is automatically adjusted according to the tightness, and then the first lower protective wing and the second lower protective wing are combined;
in addition, the upper end portion of the main body portion 100 is also provided with a pressure sore prevention member 101 (which is similar to fig. 1 and 2);
also, the body portion 100 may have an air cushion structure similar to that shown in fig. 3 and 4.
In addition, in consideration of the problem of administration of the entire foot, the present modification also provides a solution that enables administration of the entire foot.
As shown in fig. 6, on the main body portion 100 of the sheath, there are also a plurality of grooves 102;
the medicine is directly administered in each groove 102, or a magic tape structure is arranged in each groove 102;
when the structure is a magic tape structure, the medicine bag structure shown in figure 2 is also adopted for medicine administration.
Claims (10)
1. A nanometer deep vein thrombus lag of low limbs which characterized in that: comprises a protective sleeve body;
the protecting jacket body comprises a first inlet and outlet part;
the first inlet and outlet part is arranged at the top end of the protective sleeve body;
first business turn over portion, detachable installs prevents pressing the sore component.
2. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the pressure sore prevention component is pressure sore prevention liquid medicine coated on the inner surface of the first inlet and outlet part.
3. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the pressure sore prevention component comprises a medicine bag and a fixing piece;
the fixing piece is fixed on the medicine bag;
the medicine bag is detachably arranged on the inner surface of the first inlet and outlet part through the fixing part;
the medicine bag is filled with pressure sore prevention liquid medicine;
nanometer through holes are uniformly distributed on the surface of the medicine bag.
4. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the pressure sore prevention component comprises a pressure sore prevention parent part and a pressure sore prevention child part;
the pressure sore prevention female piece is fixed on the inner surface of the first inlet and outlet part;
prevent pressing sore son spare, detachable combines with preventing pressing sore mother's piece.
5. The nano shield for protecting deep vein thrombosis of lower limb of claim 4, wherein:
the pressure sore prevention sub-piece is of a medicine bag structure;
the medicine bag structure is filled with pressure sore prevention liquid medicine;
nanometer through holes are uniformly distributed on the external visual surface of the medicine bag structure.
6. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the protective sleeve body is also provided with a cushion layer;
the cushion layer is of an inflation and deflation structure.
7. The nano shield for protecting deep vein thrombosis of lower limb according to claim 6, wherein:
the cushion layer comprises a first air bag group and a second air bag group which are independent from each other and are arranged in a staggered mode;
the first air bag group is communicated with a first air valve;
and the second air bag group is communicated with a second air valve.
8. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the inner surface of the protective sleeve body is provided with at least one groove body;
a slow-release medicine sac is detachably arranged in the trough body;
the slow-release medicine bag is filled with medicine;
the external visual surface of the slow release medicine capsule is provided with a nanometer through hole.
9. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the protecting sleeve body is provided with at least one pair of opening and closing components;
the opening and closing assembly comprises an opening and closing sub-assembly and an opening and closing main assembly;
the opening and closing sub-element and the opening and closing main element are respectively positioned at the end parts of the two sides of the protective sleeve body;
the size of the space in the protective sleeve body is adjusted by enabling the opening and closing sub-component and the opening and closing main component to be close;
the protection sleeve body is unfolded by keeping the opening and closing sub-element and the opening and closing main element away.
10. The nano shield for protecting deep vein thrombosis of lower limb of claim 1, wherein:
the interior of the protective sleeve body is also provided with a heating mechanism;
and/or
The protective sleeve body is made of hollow-out fabric.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120785282.6U CN215425521U (en) | 2021-04-16 | 2021-04-16 | Nanometer lower limb deep vein thrombosis protective sleeve |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120785282.6U CN215425521U (en) | 2021-04-16 | 2021-04-16 | Nanometer lower limb deep vein thrombosis protective sleeve |
Publications (1)
Publication Number | Publication Date |
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CN215425521U true CN215425521U (en) | 2022-01-07 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120785282.6U Active CN215425521U (en) | 2021-04-16 | 2021-04-16 | Nanometer lower limb deep vein thrombosis protective sleeve |
Country Status (1)
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CN (1) | CN215425521U (en) |
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2021
- 2021-04-16 CN CN202120785282.6U patent/CN215425521U/en active Active
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