Protective glove capable of preventing sensors at ends of fingers from falling off or being in poor contact
By using a rigid plastic support plate and a separate finger support plate design, combined with elastic fabric and straps for fixation, the problem of poor contact and detachment of the pulse oximeter probe caused by finger movement in pediatric patients is solved, ensuring the accuracy of monitoring data.
Patent Information
- Application Number
- CN202423012994.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Existing pulse oximeter fixation devices are prone to poor contact or detachment in pediatric patients due to finger movements, affecting the accuracy of monitoring results.
The support plate made of rigid plastic and the separate finger support design, combined with elastic fabric and straps for fixation, ensure that the fingers do not rub against each other. Use Velcro or snaps to secure the gloves to prevent the sensors from falling off or making poor contact.
It effectively prevents sensor detachment and poor contact caused by finger movements, ensuring the accuracy of monitoring data, and is suitable for blood oxygen monitoring in pediatric patients.
Smart Images

Figure CN223873943U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a protective glove, especially to a protective glove which can prevent blood oxygen probe and similar sensor sleeved on the end of the finger from falling off or from being in poor contact with the finger and thus affecting the detection result, and belongs to a medical auxiliary device. BACKGROUND
[0002] In medical treatment, a blood oxygen probe is generally sleeved on the end of the finger of a patient and is used as a sensor for monitoring the blood oxygen content in the patient's body. During use, especially for children patients, the movement of adjacent fingers will affect the contact area between the sensor and the finger, and thus may affect the result of blood oxygen monitoring, resulting in the phenomenon of false monitoring data.
[0003] CN 213551807 U discloses a kind of ECG monitoring blood oxygen saturation probe protection fixing device, including the palm sleeve of being connectable on palm and the wrist sleeve of being connectable in wrist, the bottom end of the palm sleeve is connected with wrist sleeve;Wherein, the palm wrist sleeve is equipped with the peelable adhesive paste;The top of palm sleeve is equipped with one and more than magic paste bandage.When blood oxygen saturation probe is sleeved on the finger, it is like wearing gloves and is sleeved into the device, and the connecting line is fixed by the peelable adhesive paste of palm sleeve and wrist sleeve, and the probe and connecting line are fixed simultaneously by finger sleeve, so as to achieve the fixation of blood oxygen saturation probe. However, the problems are as follows: the palm sleeve, wrist sleeve and finger sleeve are made of ordinary materials, which cannot well limit the movement of children's hands. Although the blood oxygen saturation probe is fixed by the finger sleeve, the fingers can still move due to the active characteristics of children, and the fingers can rub each other, so that the blood oxygen saturation probe cannot be firmly fixed, and the problem of looseness and poor contact caused by finger movement and rubbing still exists, resulting in false monitoring results.
[0004] Therefore, a protective device that can prevent blood oxygen probes and other sensors from falling off or being in poor contact to ensure accurate monitoring results has become the goal of those skilled in the art. SUMMARY
[0005] The utility model aims to solve the problem that blood oxygen probes and other similar sensors sleeved on the end of the finger are easily affected by movement and cause poor contact or falling off in clinical monitoring of blood oxygen in patients, and the problem that existing ECG monitoring blood oxygen saturation probe protection fixing device cannot well limit finger movement and activity to cause poor contact of sensors.
[0006] The utility model discloses in order to realize above-mentioned purpose, its adopted technical scheme is: a kind of protective gloves for preventing finger end sensor from falling off or contact badly, it is characterized in that, it includes: one hard plastic board is made into the support plate of hand shape, the support plate has a palm plate identical with palm shape, 5 finger support plates integrally formed in palm plate end and in the separate state;It is equipped with the upper protective sleeve made of fabric on the upper surface of the support plate, the upper protective sleeve and the support plate form a glove for hand insertion, the front end of the upper protective sleeve located finger is in short supply, so that the first knuckle end of finger is exposed, first strap is equipped at the wrist joint of the glove, and five second straps are equipped at the position of the upper protective sleeve close to finger end.
[0007] Most preferred scheme, wherein, one end of the first strap is provided with a buckle, and the free end of the first strap is provided with a snap fastener which can be buckled through the buckle; one end of the second strap is provided with a buckle, and the free end of the second strap is provided with a snap fastener which can be buckled through the buckle.
[0008] Most preferred scheme, wherein, an opening is provided at the middle position of the palm plate, and a meshed air-permeable material is provided at the opening.
[0009] Most preferred scheme, wherein, the distance between the ends of adjacent finger support plates is greater than or equal to 1 cm.
[0010] Most preferred scheme, wherein, the upper protective sleeve is made of meshed fabric.
[0011] Most preferred scheme, wherein, the upper protective sleeve is made of elastic meshed fabric.
[0012] This invention, by adopting the above-described technical solution, uses a rigid plastic support plate, such as PP molding material, for the bottom of the glove that contacts the palm, with the five finger support plates separated by a certain distance. The upper part of the glove (the side that contacts the back of the hand) – the upper protective cover – is made of a soft fabric material, such as elastic fabric or elastic mesh fabric. The ends of the upper protective cover are exposed, revealing the first finger joint, so that sensors such as blood oxygen probes can be placed at the fingertips. The wrist and fingers of the glove are secured with first and second straps, for example, straps with Velcro or other snap fasteners, thereby allowing the blood oxygen probes and other sensors to be placed. By fixing the fingers to the protective gloves described in this invention to prevent fingertip sensors from falling off or making poor contact during blood oxygen saturation probe and various sensor monitoring, the gloves have a support plate made of hard plastic on the side in contact with the palm. Therefore, the fingers are fixed to the five-finger support plate, which is spread apart. This prevents adjacent fingers from rubbing or twisting against each other, effectively preventing poor contact caused by finger twisting or rubbing, which could lead to inaccurate readings from the testing instrument and affect clinical judgment and observation. This ensures the accuracy of the monitoring data. Attached Figure Description
[0013] Fig. 1 This is a top view of a protective glove for preventing fingertip sensors from falling off or making poor contact, as described in this utility model.
[0014] Fig. 2 This is a bottom view of a protective glove for preventing fingertip sensors from falling off or making poor contact, as described in this utility model.
[0015] Fig. 3 This is a schematic diagram of the first strap of a protective glove for preventing fingertip sensors from falling off or making poor contact, as described in this utility model.
[0016] Explanation of reference numerals in the attached drawings: Glove 100, Support plate 1, Palm plate 11, Breathable mesh 111, Finger support plate 12, Upper protective cover 2, First strap 3, Buckle 1 31, Snap fastener 1 32, Second strap 4. Detailed Implementation
[0017] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings, but these preferred embodiments should not be used to limit the scope of protection of the present invention.
[0018] See Figs. 1-3, the figure shows a protective glove for preventing the finger end sensor from falling off or poor contact, which comprises: a support plate 1 in the shape of a hand, the support plate 1 is made of hard plastic plate, the support plate 1 comprises: a palm plate 11 with the same shape as the palm of the hand and five finger support plates 12, the five finger support plates 12 and the palm plate 11 are integrally formed, the five finger support plates 12 are in a separated state, and the distance between the ends of adjacent finger support plates 12 is greater than or equal to 1 cm; an upper protective sleeve 2 is arranged on the upper surface of the support plate 1, the upper protective sleeve 2 is made of fabric, preferably mesh fabric or elastic mesh fabric, the upper protective sleeve 2 and the support plate 1 form a glove 100 for the hand to stretch into, the front end of the finger part of the upper protective sleeve 2 is in a shortage state, that is, the length of the finger part of the upper protective sleeve 2 is shorter than the length of the finger support plate 12, and the shortage length is preferably a knuckle length, which is equivalent to the length of the blood oxygen probe for monitoring the blood oxygen of the finger, so that the finger end is exposed, and the blood oxygen probe is sleeved on the finger end; a first binding band 3 is arranged at the wrist joint of the glove 100, the first binding band 3 can fix the glove 100 and prevent it from falling off, and five second binding bands 4 are arranged at positions close to the finger ends of the upper protective sleeve 2, the second binding bands 4 can fix the fingers and fix the blood oxygen probe.
[0019] Referring to Fig. 3 , the first binding band 3 can be a separate band, one end of which is provided with a buckle ring I 31, and the free end of the first binding band 3 is provided with a hook and loop fastener I 32, and the free end provided with the hook and loop fastener 32 can be buckled through the buckle ring I 31; the first binding band 3 can also be two, one end of which is fixedly connected with two ends of the palm plate 11 respectively, and the free ends of the two binding bands are respectively provided with a hook and a loop fastener, which are buckled. The second binding band 4 has the same structure as the first binding band, one end of which is provided with a buckle ring II, and the free end is provided with a hook and loop fastener II which can be buckled through the buckle ring II. It can also be two bands, which are fixed at both ends of the finger support plate 12 respectively, and the free ends are provided with a hook and a loop fastener, which are buckled.
[0020] Further, in order to dissipate heat and sweat on the palm, an opening is preferably arranged at the middle position of the palm plate 11, and a breathable gauze net 111 made of mesh breathable material is arranged at the opening.
[0021] The above description is only illustrative and not limiting for the present application, and the present application aims to provide a protective glove for preventing the finger end sensor from falling off or poor contact, the support plate at the bottom of the glove is made of hard plastic material, so as to fix the position of the fingers and avoid the influence of finger rubbing movement on the monitoring effect, and those skilled in the art can make many modifications, changes or equivalents without departing from the spirit and scope defined by the claims, for example: changing the distance between the fingers and changing the structure of the binding band, but all will fall within the protection scope of the present application.
Claims
1. A protective glove for preventing a finger tip sensor from falling off or from being in poor contact, characterized by, It comprises: a support plate (1) in the shape of a hand made of hard plastic, said support plate (1) having a palm plate (11) in the shape of a palm, five finger support plates (12) integrally formed at the end of the palm plate (11) and in a separated state; an upper protective sleeve (2) made of fabric is arranged on the upper surface of the support plate (1), said upper protective sleeve (2) and said support plate (1) form a glove (100) for the hand to put in, said upper protective sleeve (2) is short at the front end of the fingers, so that the first knuckle of the end of the fingers is exposed, a first band (3) is arranged at the wrist joint of the glove, five second bands (4) are arranged at the position of the upper protective sleeve (2) close to the end of the fingers.
2. The protective glove for preventing the finger tip sensor from falling off or from being out of contact according to claim 1, wherein One end of the first band (3) is provided with a buckle (31), the free end of the first band (3) is provided with a snap fastener (32) which can be buckled through the buckle (31); one end of the second band (4) is provided with a buckle (32), the free end of the second band (4) is provided with a snap fastener (32) which can be buckled through the buckle (32).
3. The protective glove for preventing the finger tip sensor from falling off or from being out of contact according to claim 1 or 2, characterized by, An opening is arranged at the middle position of the palm plate (11), and a breathable gauze net (111) made of mesh breathable material is arranged at the opening.
4. The protective glove for preventing the finger tip sensor from falling off or from being out of contact according to claim 1 or 2, characterized by, The distance between the ends of the adjacent finger support plates (12) is greater than or equal to 1 cm.
5. The protective glove for preventing the finger tip sensor from falling off or from being out of contact according to claim 1 or 2, characterized by, The upper protective sleeve (2) is made of mesh fabric.
6. The protective glove for preventing the finger end sensor from falling off or from poor contact according to claim 5, characterized by, The upper protective sleeve (2) is made of elastic mesh fabric.