Apparatus For Identifying And Manipulating A Blood Vessel, And Corresponding Method
20190380645 ยท 2019-12-19
Assignee
Inventors
- Pascal KOPPERSCHMIDT (Dittelbrunn, DE)
- Pia DANIEL (Bodman, DE)
- Reiner Spickermann (Wasserlosen-Burghausen, DE)
- Otto Arkossy (Budapest, HU)
- Cacilia Scholz (Schwalbach, DE)
- Kai-Uwe Ritter (Rednitz-Hembach, DE)
- Elke Schulte (Schweinfurt, DE)
- Christopher Hauke (Mainz-Kostheim, DE)
Cpc classification
A61B5/1535
HUMAN NECESSITIES
A61M1/3653
HUMAN NECESSITIES
A61B34/20
HUMAN NECESSITIES
A61M2205/3375
HUMAN NECESSITIES
A61B90/37
HUMAN NECESSITIES
A61B5/022
HUMAN NECESSITIES
A61B90/14
HUMAN NECESSITIES
A61B5/150748
HUMAN NECESSITIES
A61B8/085
HUMAN NECESSITIES
A61B5/150786
HUMAN NECESSITIES
International classification
A61B5/00
HUMAN NECESSITIES
Abstract
The invention relates to a detection apparatus and a method for detecting and manipulating a blood vessel under the skin of part of the body of a patient, which comprises a treatment chamber for accommodating the body part, a data processing control device, a vascular structure measuring device for detecting the position and/or dimensions of vascular structure data of the blood vessel in the treatment chamber by measurement, a vascular manipulation device for changing the position and/or dimension of the blood vessel, wherein the control device is designed to control the vascular manipulation device as a function of the vascular structure data.
Claims
1. A detection apparatus for detecting and manipulating a blood vessel under the skin of a body part of a patient, comprising a treatment chamber for accommodating the body part, a data processing control device, a vascular structure measuring device for detecting the position and/or dimensions of vascular structure data of the blood vessel in the treatment chamber by measurement, a vascular manipulation device for changing the position and/or dimension of the blood vessel, wherein the control device is designed to control the vascular manipulation device as a function of the vascular structure data.
2. The detection apparatus according to claim 1, wherein the vascular manipulation device is designed as a pressing device and the control of the pressing device is effected by the setting of a contact pressure.
3. The detection apparatus according to claim 1, wherein the vascular manipulation device is designed as a heat transfer device and the control of the heat transfer device is effected by setting a heat transfer time interval and/or a heat transfer output.
4. The detection apparatus according to claim 1, wherein the vascular manipulation device is designed as a movable supporting device for supporting the body part in the treatment chamber and the control of the movable supporting device is effected by actuating a motor for controlling the movable supporting device.
5. The detection apparatus according to claim 1, wherein the vascular structure measuring device is designed as an image capture device and comprises optical measurement or is based on ultrasound measurement.
6. The detection apparatus according to claim 1, wherein the control device is designed to regulate the vascular manipulation device as a function of the vascular structure data.
7. The detection apparatus according to claim 1, wherein the control device is designed to perform the change or the regulating of the position and/or dimensions of the blood vessel within a predetermined time interval.
8. The detection apparatus according to claim 2, wherein the pressing device comprises a force or pressure sensor for measuring the contact pressure.
9. The detection apparatus according to claim 8, wherein the control device is designed such that a predetermined or control device-determined maximum contact pressure is not exceeded.
10. A cannulation robot for the automatic cannulation of a detected blood vessel of a body part of a patient which comprises a detection apparatus in accordance with claim 1.
11. A method for operating a detection apparatus, comprising the steps: Detecting the position and/or dimensions of a blood vessel in a treatment chamber by measuring vascular structure data of the blood vessel in the treatment chamber; optional: Comparing the vascular structure data to comparative data, which in particular contains predetermined reference values on the position and/or dimension of the blood vessel; Changing the position and/or dimension of the blood vessel by means of a vascular manipulation device, controlled by a control device as a function of the vascular structure data.
12. A method for the subcutaneous cannulation of a blood vessel of a part of the body of a patient comprising the method steps according to claim 11 and the following step: Subsequent the step of changing the position and/or dimension of the blood vessel by means of a vascular manipulation device: Automatic cannulation of the manipulated blood vessel.
Description
[0082] Further advantages, features and possible applications of the present invention are yielded by the following detailed description of at least one example embodiment and/or by the figures. Unless otherwise described or contextually indicated otherwise, the same reference numerals are substantially used to identify equivalent components in the embodiments. The figures show the following example embodiments of the invention:
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[0091] The detection apparatus has a base platform 7 with an open frame 6 and a treatment chamber 8 for accommodating the body part. The detection apparatus 1 comprises a data processing control device 2 and a vascular structure measuring device 3 for detecting the position and/or dimensions of the blood vessel in the treatment chamber by measuring vascular structure data. The vascular structure measuring device 3 is in the present case an ultrasonic measuring device.
[0092] The detection apparatus 1 additionally comprises a vascular manipulation device 4 configured as a pressing device for changing the dimension of the blood vessel. The pressing device 4 is an inflatable hollow arm cuff 4 and comprises an electrically operated air pump (not shown) to increase the pressure in the hollow arm cuff 4 until a specific blood vessel position and/or thickness is reached. The hollow arm cuff 4 can comprise a force or respectively pressure sensor (not shown) in order to measure the pressure applied by the hollow arm cuff on the body part, here the upper arm, and to stop the vascular manipulation upon an allowable maximum pressure being exceeded.
[0093] The control device 2 is designed to control the vascular manipulation device 4 as a function of the vascular structure data measured by means of the vascular structure measuring device 3. The control device determines from the vascular structure data whether the blood vessel is of a predetermined thickness D2 suitable for a subsequent treatment, in particular an automatic cannulation of said blood vessel at said thickness. The control device 2 is thereby designed to increase the contact pressure in a case of meeting the criterion of the blood vessel's measured thickness D1 being less than D2. The pressure can be increased in incremental steps under continuous measurement by means of the vascular structure measuring device 3. Alternatively or additionally, the increase in pressure can entail a predetermined, larger pressure increase step based on empirical values applied, for example, prior to an incremental increase or reduction of the contact pressure in order to accelerate the success of the blood stemming measure.
[0094] As soon as thickness D2 is detected subsequent the increase (and/or reduction) in the contact pressure on the blood vessel, the change in contact pressure is stopped or, respectively, the contact pressure is regulated such that the measured thickness remains constant at D2, at least for a predetermined or controlled interval of time. A further treatment of the blood vessel, in particular a cannulation, can occur within this time interval.
[0095] Detection apparatus 1a is shown in
[0096] Detection apparatus 1 b is shown in
[0097] Detection apparatus 1c is shown in
[0098] Detection apparatus 1a is shown in
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