RU48740U1 - Медицинское устройство переносного типа для отображения тепловой структуры - Google Patents

Медицинское устройство переносного типа для отображения тепловой структуры Download PDF

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RU48740U1
RU48740U1 RU2005105280/22U RU2005105280U RU48740U1 RU 48740 U1 RU48740 U1 RU 48740U1 RU 2005105280/22 U RU2005105280/22 U RU 2005105280/22U RU 2005105280 U RU2005105280 U RU 2005105280U RU 48740 U1 RU48740 U1 RU 48740U1
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box
scanning
portable
portable type
scanning head
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RU2005105280/22U
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Лю ДЖОНКИ
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Лю ДЖОНКИ
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Abstract

Настоящая полезная модель представляет собой переносное устройство для отображения тепловой текстуры (ОТТ), которое состоит из сканирующей головки, плавающего планшетного стола управления направлением сканирования, контроллера направления сканирования сканирующей головки, центрального процессора, автономного и/или внешнего источника питания, а также переносной коробки, в которой помещаются все перечисленные компоненты. Названная коробка состоит из 2-3 соединительных коробок. Между соединительными коробками проходят вертикальные направляющие рельсы и направляющие дорожки. С наружной стороны переносная коробка снабжена рукоятками и роликами, облегчающими ее перемещение. Все элементы устройства могут быть компактно размещены внутри переносной коробки, для регулирования положения сканирующей головки по высоте регулируют положение соединительных коробок по высоте, а от пациента не требуется каких-либо дополнительных движений, не считая поворотов, за счет чего устройство занимает мало места, что особо предпочтительно для применения с целью клинической диагностики в полевых/неотложных условиях.

Description

Technical Field
The present utility model relates to a mobile type of TTM apparatus, who is especially fit for performing thermal texture mapping (TTM) evaluation 11 mobile and/or emergency clinic diagnosis application.
Background Art
Since the early 21 century, TTM technology has attracted wide attend from the scientific and medical fields. Especially in the medical field, it is the first time human being is enabled to study the inner thermal source from infrared thermal radiation data obtained from human body surface, and hundred kinds of relationship between diseases/sub-healthy status and inner them sources have been established through statistical work on great many medical cases and their corresponding TTM scanning data. For fundamental information about TTM technique, please refer to United State Patent No.6, 023, 637, relevant contents are hereby incorporated into present application by reference.
The in prior art, normal TTM apparatus is consisted of an operation central processing system, a scanning system and a scanning bed. The operation and central processing system includes console, central processing unit, color displayer, color printer and so on. Operator controls the scanning system and scanning bed through console. The scanning system is consisted 3 parts: a scanning head, a scanning shelf and a shelf cover. The scanning shelf is inside the shelf cover; In a new model, the two parts are combined into one and the scanning head is placed on the scanning shelf through floating table By controlling the console, the scanning head could perform lift-fan, left-right up-down rotating scanning, and image focus scanning. The scanning bed could move forward or backward along the rails, and the rotary table at the low
part of the bed could do 360° clockwise or anti-clockwise rotation to meet scanning requirements. It is easy to sec that the apparatus described above rot only needs large space, but also demands much high standards for power supply and application environment. It is also hard to move the whole mashie. This proves that this kind of apparatus is not fit for field, and/or emergency у clinic diagnosis application for the people in remote area or for the mob crowd such as vehicle/ship passengers or army.
Contents of the Utility Model
This utility model is aimed to overcome the defects of the normal TT apparatus described above by providing a mobile type of medical TT apparatus, which is fit for-clinic diagnosis application in field and/or emergency for the people in remote, area and/or for mobile crowd.
This utility model provides a mobile type of TTM apparatus consisted an infrared scanning head, a direction-controlling floating table, a scanning [head direction-controller, a central processing unit and a power unit. The scanning head locates on the direction-controlling floating table, connected the central processing unit. and scanning head direction-controller by sign lines. It is characterized in that there includes a mobile box which is capable having all the elements described above compacted therein, when the apparatus is not in use; and that the direction-controlling floating table could be pulled from the box and stable supported by the inner wall of the box, when the apparatus is in use; and that the power unit comprises a self-contained power supply and/or an external power supply interface.
The mobile box is consisted of 2-3 coupling boxes, and the inner box(es) could be pulled upwards and fixed at a height with the outer box(es) to form stable support for the floating table. The said boxes have up-down sliding rail, guiding slots between each other for their up- and downwards movement, are have locating pins or blocks for fixation of the relative position of the boxed. Sliding the rails and slots could realize a height change of the boxes from
external to internal ones, so as to form a elevated floating table, thus the height of scanning head could be adjusted through adjusting the height of boxes ladder-by-ladder way. Beside this, there are locating pins or locating blocks the rails or slots to fix the relative position in height of each coupling box. And on the outer side of die mobile box there are handles and trolley wheels, while can enable convenient movement of the box by dragging it.
The self-contained power or external power for this apparatus could AC 12V DC power, such as the self-contained accumulator or external 12V DС power provided by automobile engine. A self-contained battery has to suppу the apparatus with electrical power for 40-60 minutes. So this apparatus has a self-contained accumulator and an interface for external 12V DC power free automobile. In order to perform long time operation at the places with 220V or 110V commercial power, this apparatus has a vertoro to transfer 1: i; ЛС 220V or 110V commercial power supply into 12V DC power; in order (perform long time operation at the places without commercial power supply this apparatus optionally has a man-powered generator which could provide 12V DC power to ensure long term power supply. In practical use, it could (fitted with a vertoro and/or man-powered generator according to the condition and using requirements. This is more convenient and flexible.
The advantage and effect of this utility model is obviously seeable, as e I the elements, including scanning head, the direction-controlling floating table he scanning head direction-controller, and the power unit, could be compact into the mobile box, and the height of the scanning head could be adjust according to demands by adjusting the height of boxes. So, scanning from s directions could be carried out without necessity of extra movement of the patient, except for rotation. This apparatus occupies little space, flexible for fitting with external elements. It is especially fit for the emergent and migratory clinic diagnosis which need to move the apparatus to the spot, for TTM 1 diagnosis in the areas where lack in large TTM apparatus, such as the rur areas, and for TTM diagnosis in mobile crowd such as vehicle/ship passenger,
army and field workers.
Description of the Figures
Fig.1 is a structural diagram of the mobile type of TTM apparatus in use status;
Fig.2 is a diagram explaining the operation process of the mobile type г TTM apparatus;
Fig.3 is the back view of the mobile box when the mobile type of TTM apparatus is compacted in the mobile box, with handles pulled out.
Example
A detailed description of this utility model is now given referring to the accompanying figures. But it should be understood that the special embodiments recorded in example should not mean any restriction to the content of the utility model.
Fig.1 shows the structural diagram of the mobile type of TTM apparatus in use status. From this figure we could see that this apparatus mainly consists an infrared scanning head 1, a direction-controlling floating table 2, a scanning head direction-controller 3, a central processing unit 4, a self-contained power and a external power interface 9. The scanning head 1 is placed on the direction-controlling floating table 2. The scanning head 1 respectively connects with the central processing unit 4 and the scanning head direction-controller 3 through signal lines. The central processing unit 4 and the scanning head direction-comroller 3 could be taken out of the box for operator to perform scanning and for data processing. Power 5 or power from extern 1 power interface 9 provides power for the apparatus. Besides these, there also includes a mobile box 6, which could contain all the elements in it and is ca to move.
The said easy-to-move box consists of 2-3 coupling boxes. Power supp is placed in the bottom box. There are up-down sliding rails and guiding slo
between these boxes for adjusting the height of the scanning head. On the rails and slots there are locating blocks to fix the position. Besides, on one of the external vertical sides of the mobile box, there is a handle 7 which could pulled out and pushed in conveniently for dragging the box. On the bottom)[the box there are wheels 8 for supporting the box and making it convenient movement and transportation.
When the apparatus is not in use, all the elements could be compacted the box for convenient movement/transportation.
When needed, a vertoro and/or man-powered generator could be allocate.1, so as to fit for different power supply condition.
Fig.2 gives the diagram explaining the operation process of the mob i: type of TTM apparatus. An instruction is given to the direction-controlling floating table through a floating table controller. Through the direction-controlling floating table, the scanning direction is adjusted to i proper scanning position. The heat radiated during the metabolism course human cells is detected by the scanning head and is transferred into digit signals, then transmitted to the central processing unit. After TTM's processing a thermal radiation distribution map, reflecting the relative metabolism intense off the detected parts of human body, is displayed, and further analysis could i (made to judge the health, condition of the human body.
Claims
1. A mobile type of TTM apparatus, which includes at least an infrar, (scanning head, a direction-controlling floating table, a scanning direction-controller, a central processing unit and a power unit; the scanning [head is placed on the direction-controlling floating table, the scanning he, с respectively connects with the central processing unit and the scanning head direction controller through signal lines, characterized in that there includes <mobile box which is capable of having ail the elements described above compacted therein, when the apparatus is not in use; and that ti dilection-controHmg floating table could be pulled out from the box and stab supported by the inner wall of the box, when the apparatus is in use; and the power unit comprises a self-contained power supply and/or an extern power supply interface.
2. The mobile type of TTM apparatus according to claim 1, characterize r that the mobile box is composed of 2-3 coupling boxes, and the inner box(es) could be pulled upwards and fixed with the outer box(es) at a required height:
form a stable support for the floating table.
3. The mobile type of TTM apparatus according to claim 2, characterize in that the said boxes have up-down sliding rails, guiding slots between each other for their up- and downwards movement, and have locating pins or blocks for fixation of the relative position of the boxes.
4. The mobile type of TTM apparatus according to claim 1, characterizi: i in that on one of the external vertical sides of the mobile box, there is a handle which could be pulled out and pushed in conveniently for dragging the bog and at the bottom of the box there are wheels for supporting the box are 3 making it convenient for transportation.
5. The mobile type of TTM apparatus according to claim 1, characterized in that the said self-contained or external power supply is 12V DC power.
6. The mobile type of TTM apparatus according to claim 5. characterized
in that the 12V DC power is supplied by self-contained accumulator or extern automobile engine.
7. The mobile type of TTM apparatus according to claim 5, characterized 11 in that the 12V DC power is supplied by external vertoro which perfon transformation and commutation from AC 220V or 110V commercial power, or supplied by external man-powered generator.
Abstract
The present utility model provides a mobile type of thermal texture mapping (TTM) apparatus, which includes a scanning head, direction-controlling floating table, a scanning head direction-controller, central processing unit, a self-contained and/or external power supply, as well as a mobile box, the mobile box could contain all the above-said elements. The box is composed of 2-3 coupling boxes. Each coupling box has up-down i sliding rails and guiding slots between them. Outside the mobile box, there are handles and trolley wheels convenient for dragging the box. Because all elements could be compacted into the mobile box, the height of the scanning head could be adjusted by adjusting the height of the coupling boxes, no extra movement, except rotation, is needed for the patient, so it occupies only a small space, which is very fit for field or emergency clinic diagnosis.

Claims (6)

1. Устройство переносного типа для отображения тепловой текстуры (ОТТ), состоящее, по меньшей мере, из одной инфракрасной сканирующей головки, плавающего планшетного стола управления направлением сканирования, контроллера направления сканирования сканирующей головки, центрального процессора и блока питания, у которого сканирующая головка расположена на плавающем планшетном столе управления направлением сканирования, сканирующая головка при помощи соответствующих сигнальных шин соединена с центральным процессором и контроллером направления сканирования сканирующей головки, блок питания, предназначенный для подачи электрической энергии в контроллер направления сканирования, и контроллер направления сканирования, предназначенный для управления перемещением плавающего планшетного стола управления направлением сканирования, отличающееся тем, что оно имеет переносную коробку, в которой могут компактно помещаться все названные элементы, когда устройство не используется; и что плавающий планшетный стол управления направлением сканирования установлен с возможностью извлечения из коробки и прочного прикрепления к внутренней стенке коробки, когда устройство используется, а блок питания представляет собой автономный источник питания и/или устройство сопряжения с внешним источником питания.
2. Устройство переносного типа для ОТТ по п. 1, отличающееся тем, что переносная коробка состоит из 2-3 соединительных коробок, а внутренняя коробка (-и) может быть выдвинута вверх по расположенным между коробками направляющим рельсам или дорожкам, которые обеспечивают их перемещение вверх и вниз и имеют установочные штифты или приспособления для фиксации относительного положения коробок, и зафиксирована на требуемой высоте вместе с наружной коробкой (-ами), за счет чего образуется надежная опора для плавающего планшетного стола.
3. Устройство переносного типа для ОТТ по п. 1, отличающееся тем, что на одной из вертикальных внешних поверхностей переносной коробки расположена выдвижная рукоятка, при помощи которой коробку можно удобно перемещать, а на нижней поверхности коробки находятся ролики, служащие в качестве опоры коробки и облегчающие ее транспортировку.
4. Устройство переносного типа для ОТТ по п. 1, отличающееся тем, что автономный или внешний источник питания представляет собой 12-вольтовый источник постоянного тока.
5. Устройство переносного типа для ОТТ по п. 4, отличающееся тем, что 12-вольтовый постоянный ток поступает из автономного аккумулятора или внешнего автомобильного двигателя.
6. Устройство переносного типа для ОТТ по п. 4, отличающееся тем, что 12-вольтовый постоянный ток поступает из внешнего преобразователя тока, который осуществляет преобразование и подачу переменного тока 220 или 110 вольт сети общего пользования, или из приводимого в движение мускульной силой человека генератора.
Figure 00000001
RU2005105280/22U 2005-02-28 2005-02-28 Медицинское устройство переносного типа для отображения тепловой структуры RU48740U1 (ru)

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RU2005105280/22U RU48740U1 (ru) 2005-02-28 2005-02-28 Медицинское устройство переносного типа для отображения тепловой структуры

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