[0001] The invention relates to a remote control for a medical apparatus, a system of the
remote control and the medical apparatus, and a method for operating the medical apparatus,
in particular, to a remote control for a medical apparatus having several movable
segments driven in a controlled manner, a system of the remote control and the medical
apparatus, and a method for operating the medical apparatus.
[0002] A remote control for a medical apparatus which controls motions of movable segments
of the medical apparatus is known. For security against unintended use, the remote
control usually includes at least one release switch and several switches for controlling
motions in different directions of the respective movable segments.
EP 2 455 959 A1 discloses such a remote control. However, in particular, in case of an operating
table as the medical apparatus, the number of movable components, i.e., the movable
segments or other movable components of the operating table, increases. Therefore,
the number of the switches actuated by buttons or soft keys of a touch screen increased
and the existing remote controls had the disadvantage that, due to the increased number
of buttons or soft keys, an operation of the operating table became uncomfortable.
Furthermore, an intuitive operation, in particular, an adjustment of a speed of the
motion of the movable components was not provided.
[0003] The invention is based on the object to overcome the above disadvantages and to provide
a remote control for a medical apparatus enabling a comfortable operation of the medical
apparatus in an intuitive manner.
[0004] The object is achieved by a remote control according to claim 1, a system according
to claim 9, and a method according to claim 16. Further developments of the invention
are included in the dependent claims.
[0005] According to an aspect of the invention, a remote control for controlling a medical
apparatus having at least one driven movable component comprises a sensor configured
to detect a position and a motion of the remote control, and at least one release
switch. The remote control is configured to emit a control signal capable of controlling
a motion of the at least one driven movable component according to a motion of the
remote control detected by the sensor when a control of the motion of the at least
one driven movable component is released by actuating the at least one release switch.
[0006] By such a remote control, merely pressing of one button or one soft key for actuating
the release switch is necessary for emitting a specific control signal since, after
the release by the release switch, the control signal is then emitted due to the motion
of the remote control itself.
[0007] In an advantageous implementation of the remote control, the remote control is configured
to emit the control signal according to a direction of the motion of the remote control
detected by the sensor with respect to a position of the remote control when the at
least one release switch is actuated to start the release of the control of the motion
of the at least one driven movable component.
[0008] When the control signal is emitted according to the direction of the motion of the
remote control, an intuitive operation or motion of the movable component is simply
possible by moving the remote control according to a desired motion of the movable
component.
[0009] In a further advantageous implementation of the remote control, the remote control
is configured to emit the control signal according to an amount of the motion of the
remote control.
[0010] By emitting the control signal according to the amount of the motion of the remote
control, a more precise command including characteristics of the motion of the remote
control can be emitted for controlling the medical apparatus easily in an intuitive
manner.
[0011] In a further advantageous implementation of the remote control, the remote control
is configured to emit the control signal according to a speed of the motion of the
remote control.
[0012] By emitting the control signal according to the speed of the motion of the remote
control, also, a more precise command including characteristics of the motion can
be emitted for comfortably controlling the medical apparatus in an intuitive manner.
[0013] According to a further advantageous implementation of the remote control, the remote
control comprises a display configured to detect a location of a contact of an object.
[0014] Such a touch display or touchscreen enables an easy change of soft keys provided
for different medical apparatuses or different configurations of one kind of medical
apparatuses. Moreover, different languages or pictograms for denoting the soft keys
are possible for an easy operation of the remote control.
[0015] In a further advantageous implementation of the remote control, the remote control
comprises a display configured to display a preview of the motion of the at least
one driven movable component according to the control signal.
[0016] By this display, an operator can easily verify the intended motion of the medical
apparatus.
[0017] According to a further advantageous implementation of the remote control, the remote
control has an elongated shape and a first axis parallel to the elongated shape of
the remote control and a second axis perpendicular to the elongated shape of the remote
control, and the remote control is configured to emit the control signal according
to a direction of the motion of the remote control around at least one of the first
axis and the second axis.
[0018] In this implementation, easy and unambiguous motions of the remote control are used
for determining the motion of the movable component of the medical apparatus so that
the intuitive operation of the medical apparatus is easily possible and the remote
control can be operated easier.
[0019] In a further advantageous implementation of the remote control, the remote control
is configured to emit the control signal according to the direction of the motion
of the remote control around at least one of the first axis and the second axis if
the motion of the remote control around the at least one of the first axis and the
second axis exceeds a predefined threshold.
[0020] By the emission of the control signal not before exceeding a predefined threshold
of the motion of the remote control around the at least one of the first axis and
the second axis, the remote control can be operated more easily since a motion of
the remote control is not required in a very exact manner and an unintended operation
around one of the first and second axis is quite safe prevented.
[0021] According to a further aspect of the invention, a system of the remote control and
the medical apparatus is provided. The remote control is configured to control the
motion of the at least one driven movable component of the medical apparatus by the
control signal.
[0022] By the provision of this system, the medical apparatus can be comfortably operated
without a need for searching an appropriate button or soft key for operating a specific
motion of the movable component of the medical apparatus.
[0023] In an advantageous implementation of the system, the remote control is configured
to control a direction of the motion of the at least one driven movable component
according to a direction of the motion of the remote control with respect to a position
of the remote control when the at least one release switch starts to release the control
of the motion.
[0024] By this characteristic, the motion of the movable component can be initiated intuitively
so that the operation of the medical apparatus is facilitated.
[0025] In an advantageous implementation of the system, the remote control comprises several
release switches, the medical apparatus comprises several driven movable components
respectively driven by a driving device, and the several release switches are respectively
assigned to a specific motion of one of the driven movable components.
[0026] In such a system, several movable components of the medical apparatus can be controlled
in an easy and intuitive manner. On the one hand, if one movable components performs
several motions, for example, by one release switch, a height adjustment of a tabletop
of an operating table can be released and, by another release switch, tilting of the
tabletop around its longitudinal axis can be released, therefore, the several release
switches release the control of the motions of one movable component. On the other
hand, if merely one motion is executed by one of the driven movable component, the
control of this motion is released, so that the several release switches release the
motions of several driven movable components.
[0027] In a further advantageous implementation of the system, the medical apparatus comprises
at least one driven movable component which performs several motions respectively
driven by a driving device, and the system is configured such that the several motions
are controlled by the remote control when the several motions of the at least one
driven movable component are released by a release button assigned to the at least
one driven movable component, wherein the several motions are controlled according
to motions of the remote control around a first axis parallel to an elongated shape
of the remote control and a second axis perpendicular to the elongated shape of the
remote control.
[0028] In this implementation, easy and unambiguous motions of the remote control are used
for determining the motion of the movable component of the medical apparatus so that
the intuitive operation of the medical apparatus is easily possible and the remote
control can be operated more easily since no further release switches for releasing
the several motions of the at least one driven movable component are necessary.
[0029] In an advantageous implementation of the system, the medical apparatus is configured
as an operating table.
[0030] In particular, an operating table can comprise a large quantity of driven movable
segments for adjusting the position of a patient in a surgical treatment and of other
driven movable components. Moreover, there is a necessity for adjusting the movable
segments during surgery. Therefore, the easy and intuitive operation of the operating
table is a tremendous advantage.
[0031] In a further advantageous implementation of the system, one of the at least one driven
components is formed by a locking device configured to lock a motion of the operating
table by touching a face supporting the operating table.
[0032] By providing this component and by operating this component by means of the remote
control, a position of the operating table before a surgical intervention can be easily
secured and after the surgical intervention, the operating table the secured position
can be easily released in an intuitive manner.
[0033] In a yet further advantageous implementation of the system, one of the at least one
driven components is formed by a wheel of the operating table, wherein the wheel comprises
a drive and the wheel is configured to move the operating table by the drive.
[0034] By the provision of the driven wheel controlled by the remote control, the motion
of the operating table together with the patient into an operating theatre and out
of an operating theatre is easily possible in an easy and intuitive manner of controlling.
[0035] According to another aspect of the invention, a method for operating a medical apparatus
by means of a remote control comprises the steps: releasing a control of a motion
of a specific one of driven movable components of the medical apparatus by actuating
a specific release switch of the remote control and controlling a motion of the specific
one of the movable components by moving the remote control with respect to a position
of the remote control when the specific release switch starts to release the control
of the motion of the specific one of the movable components.
[0036] By the provision of this method, the driven movable components of the medical apparatus
can be operated without a need for searching an appropriate button or soft key for
operating a specific motion of the movable component of the medical apparatus.
[0037] In an advantageous implementation of the method, a direction of the motion of the
specific one of the driven movable components is defined by a direction of motion
of the remote control around at least one of an axis parallel to an elongated shape
of the remote control and an axis perpendicular to the elongated shape of the remote
control.
[0038] In this implementation of the method, easy and unambiguous motions of the remote
control are used for determining the motion of the movable component of the medical
apparatus so that the intuitive operation of the medical apparatus is easily possible.
[0039] In a further advantageous implementation of the method, the motion of the specific
one of the driven movable components is stopped when the remote control is moved into
a horizontal position.
[0040] By this implementation, stopping of the motion of the movable components is easily
and intuitively possible.
[0041] Below, the invention is elucidated by means of embodiments referring to the attached
drawings.
[0042] In particular,
- Fig. 1
- shows a system of a remote control in a schematic plan view and of an operating table
in a schematic side view;
- Fig. 2
- shows a starting position and an end position of the remote control in a schematic
side view when the remote control is tilted around an axis perpendicular to an elongated
shape of the remote control for controlling a motion;
- Fig. 3
- shows another starting position and the end position of the remote control in the
schematic side view when the remote control is tilted around the axis perpendicular
to the elongated shape of the remote control for controlling a motion;
- Fig. 4
- shows a starting position and an end position of the remote control in a schematic
front view when the remote control is tilted around an axis parallel to an elongated
shape of the remote control for controlling a motion;
- Fig. 5
- shows another starting position and the end position of the remote control in the
schematic front view when the remote control is tilted around the axis parallel to
the elongated shape of the remote control for controlling a motion;
- Fig. 6
- shows a plan view of the remote control; and
- Fig. 7
- shows a flow chart of a method according to the invention.
[0043] Fig. 1 shows a system 1 according to the invention including a remote control 2 in a schematic
plan view and an operating table as an embodiment of a medical apparatus 3 in a schematic
side view.
[0044] The medical apparatus 3 comprises several movable components, in particular several
movable segments, namely, an entire tabletop 4, and a head plate 4' and a leg plate
4" of the tabletop 4. The medical apparatus 1 further comprises a driven locking device
4'" and a driven wheel 4"".
[0045] The movable segments 4, 4', 4" are respectively driven by at least one driving device
(not shown). The tabletop 4 is moved by a first driving device (not shown) in a vertical
direction depicted by arrow H for adjusting a height of the tabletop 4. Further, the
tabletop 4 is tilted by a second driving device (not shown) into a Trendelenburg position
or an Anti-Trendelenburg position as depicted by arrow T. Furthermore, the tabletop
4 is displaced by a third driving device (not shown) along a longitudinal axis of
the tabletop 4 as depicted by arrow L. The head plate 4' is tilted by a fourth driving
device (not shown) as depicted by arrow T
H and the leg plate 4" is tilted by a fifth driving device (not shown) as depicted
by arrow T
L. Alternatively, the medical apparatus 3 is provided with another number of driven
movable segments 4, 4', 4", wherein at least one driven segment 4, 4', 4" movable
in different directions is provided.
[0046] The driven locking device 4'" comprises jack up stamps as support structures for
securing a sure footing of the medical apparatus 1, i.e. for locking a motion of the
entire operating table by touching a face supporting the operating table, i.e. a floor.
The jack up stamps are lowered for touching the floor and, as the case may be, for
lifting the operating table in order to lock the operating table. For moving the operating
table, the jack up stamps are retracted and there is a gap between the jack up stamps
and the face supporting the operating table. The jack up stamps are driven by a hydraulic
drive. Alternatively, the jack up stamps are driven by electric drives or, further
alternatively, the locking device is not provided, e.g., in case of a stationary operating
table.
[0047] The driven wheel 4"" is provided as a fifth wheel in a center of a chassis of the
operating table additionally to wheels for moving the medical apparatus 1 in corners
of the chassis of the operating table. The fifth wheel comprises a drive and the wheel
moves the operating table by the drive when the wheel contacts the face supporting
the operating table. Alternatively, also one or several of the wheels in the corners
of the chassis of the operating table can be formed as the driven wheel 4"" or, further
alternatively, the driven wheel is not provided, e.g., in case of a stationary operating
table.
[0048] The remote control 2 comprises a sensor 5. The sensor 5 comprises an inclinometer.
Alternatively or additionally, the sensor 5 comprises another type of sensor, e.g.,
an acceleration sensors or a gyroscope combined with a geomagnetic sensor. The sensor
5 detects a position and a motion or an acceleration of the remote control 2.
[0049] Furthermore, the remote control 2 comprises seven release switches 6. The release
switches 6 are respectively assigned to a specific motion of one of the driven movable
segments 4, 4', 4", of the locking device 4"', and of the driven wheel 4"". By a first
one of the release switches 6, the control of the vertical motion of the tabletop
4 can be released, by a second one of the release switches 6, the control of the tilting
of the tabletop 4 into the Trendelenburg position or Anti-Trendelenburg position and
a tilting around a longitudinal axis of the tabletop 4 can be released. A third one
of the release switches 6 releases the control of the displacement of the tabletop
4 in the longitudinal direction of the tabletop 4, a fourth one of the release switches
6 releases the control of the tilting of the head plate 4', and a fifth one of the
release switches 6 releases the control of the tilting of the leg plate 4". A sixth
one of the release switches 6 releases the control of the locking device 4"', i.e.,
initiates lifting or lowering the jack up stamps, and a seventh one of the release
switches releases the control of the driven wheel 4"" for driving the operating table.
In a further alternative embodiment, another number of release switches 6, e.g., according
to a number of motions of the movable components 4, 4', 4", 4"', 4"", merely one release
switch 6, or more than two release switches 6, are provided.
[0050] The remote control 2 has an elongated shape and it has an axis A parallel to the
elongated shape in a X axis direction of the remote control 2 and an axis B perpendicular
to the elongated shape in a Y axis direction of the remote control 2. Alternatively,
the remote control 2 does not have an elongated shape and the axes A and B, if necessary,
are determined by definition.
[0051] The remote control 2 further comprises a communication interface 7. The communication
interface 7 establishes a communication 8 to the medical apparatus 3 in a wireless
manner. Alternatively, the communication interface 7 has a connection cable and establishes
the communication 8 to the medical apparatus 3 in a wired manner.
[0052] By the communication 8, the remote control 2 emits a control signal capable of controlling
the motion of the movable components 4, 4', 4", 4'", 4"" according to a motion of
the remote control 2 detected by the sensor 5 when the control of the motion of the
driven movable components 4, 4', 4", 4'", 4"" is released by actuating the release
switch 6. In particular, the remote control 2 emits the control signal according to
a direction of the motion of the remote control 2 detected by the sensor 5 with respect
to a position of the remote control 2 when the release switch 6 starts to release
the motion. The remote control 2 emits the control signal according to an amount of
the motion of the remote control 2. Additionally, the remote control 2 emits the control
signal according to a speed of the motion of the remote control 2. Alternatively,
the amount and/or the speed of the motion of the remote control 2 are not considered,
and, further alternatively, the direction of the motion is not considered but any
motion is considered for moving the driven movable component 4, 4', 4", 4'", 4"",
e.g., in a reciprocating manner.
[0053] By emitting the control signal, the remote control 2 is configured to control the
direction of the motion of the driven movable components 4, 4', 4", 4"', 4"" according
to the direction of the motion of the remote control 2 with respect to a position
of the remote control 2 when the release button 6 starts to release the motion. Furthermore,
the remote control 2 is configured to control a speed of the motion of the driven
movable components 4, 4', 4", 4"', 4"" according to the amount of the motion of the
remote control 2 with respect to the position of the remote control 2 when the release
button 6 starts to release the motion, wherein the speed of the driven movable components
4, 4', 4", 4"', 4"" is the higher the larger the amount of the motion of the remote
control 2 is. By reducing the amount of the motion of the remote control 2, the speed
can be reduced. Optionally, a sensitivity of the remote control 2 can be adjusted.
In case of a high sensitivity, 100% of the speed of the driven movable components
4, 4', 4", 4"', 4"" is achieved upon tilting of the remote control 2 of 30 degrees
around one of the axes A or B. When a mid sensitivity is set, 100% of the speed of
the driven mobile components 4, 4', 4", 4"', 4"" is achieved upon tilting of the remote
control 2 of 35 degrees around one of the axes A or B, and, when a low sensitivity
is set, 100% of the speed of the driven mobile components 4, 4', 4", 4"', 4"" is achieved
upon tilting of the remote control 2 of 45 degrees around one of the axes A or B.
Alternatively, other appropriate values of the amount of tilting can be set.
[0054] Moreover, the remote control 2 is configured to control the speed of the motion of
the driven movable components 4, 4', 4", 4'", 4"" according to the speed of the motion
of the remote control 2, wherein the speed of the motion of the driven movable components
4, 4', 4", 4'", 4"" is the higher the higher the speed of the motion of the remote
control 2 is. In alternative embodiments, the amount and/or the speed of the motion
of the remote control 2 is not considered for the control of the speed of the driven
movable components 4, 4', 4", 4'", 4"".
[0055] According to the manner of tilting the remote control 2, the speed of the motion
can be adjusted between 1 % and 100 % of a nominal speed. Alternatively, an adjusted
speed is fix independently from the manner of tilting the remote control 2.
[0056] The motion of the remote control 2 detected by the sensor 5 is a tilting around the
axis B of the remote control 2 perpendicular to its elongated shape and a tilting
around the longitudinal axis A of the remote control 2 parallel to its elongated shape.
By the detection of the motion around the axis B of the remote control 2 perpendicular
to its elongated shape, the vertical motion of the tabletop 4 and the displacement
motions along the axis L are controlled. By tilting the remote control 2 in one direction,
the tabletop 4 is lifted and, by tilting the remote control in the other direction,
the tabletop 4 is lowered. By the detection of the motion around the axis A of the
remote control 2 parallel to the elongated shape, the tilting motions of the table
top 4, of the head plate 4', and of the leg plate 4" are controlled. In alternative
embodiments, any of the motions are controlled either by detecting the motion around
the axis A of the remote control 2, by detecting the motion around the axis B of the
remote control 2, or by detecting the motion around the axis A and the axis B.
[0057] A combined motion of the remote control 2, i.e., the tilting around the axis B of
the remote control 2 and the tilting around the longitudinal axis A of the remote
control 2 controls several motions respectively driven by a driving device of one
of the movable components 4, 4", 4'", 4"". Upon an actuation of the release switch
6 assigned to the tabletop 4 and a tilting of the remote control 2 around the axis
B, a control signal for approaching the Trendelenburg position or the Anti-Trendelenburg
position is emitted and the motion is performed by the medical apparatus 1, and, simultaneously,
when tilting the remote control 2 around the longitudinal axis A of the remote control
2, a control signal for tilting of the tabletop 4 according to a direction of the
tilting of the remote control 2 is emitted and the motion is performed by the medical
apparatus 1.
[0058] The leg section 4" is partitioned along the longitudinal axis of the tabletop 4 and
it comprises a left leg section and a right leg section. Upward or downward motion
of one of the left and right leg sections is actuated upon releasing the control of
the leg section 4" by the respective release switch 6 and upon tilting the remote
control 2 in a respective leftward or rightward direction and upward or downward for
emitting a respective control signal by the remote control 2 and the motion is performed
by the medical apparatus 1.
[0059] Fig 2 shows a starting position and an end position of the remote control 2 in a side view
when the remote control 2 is tilted around the axis B in the Y axis direction (Fig.
1) of the remote control 2 perpendicular to an elongated shape of the remote control
2 for controlling one of the motions. The initial position of the remote control 2
where the release switch 6 is actuated is depicted by dashed lines and the end position
of the remote control 2 is depicted by solid lines. The speed and the direction of
the motion of the driven movable components 4, 4', 4", 4'", 4"", the control of which
is released by actuating the respective release switch 6, are determined by the movement
of the remote control 2 around the axis B. In Fig. 2, in the initial position of the
remote control 2, a Z axis of the remote control 2 is oriented vertically so the remote
control 2 is oriented in a horizontal position.
[0060] Fig. 3 shows another starting position and the end position of the remote control 2 of Fig.
2 in the side view when the remote control 2 is tilted around the axis B perpendicular
to the elongated shape of the remote control 2 for controlling one of the motions.
The initial position of the remote control 2 where the release switch 6 is actuated
is depicted by dashed lines and the end position of the remote control 2 is depicted
by solid lines. This figure shows that the motion of the driven components 4, 4',
4", 4"', 4"" of the medical apparatus 3 is not to be controlled compulsorily starting
from the horizontal position of the remote control 2 but, also, another position is
possible if the release switch 6 is actuated in this position and the remote control
2 is moved in a specific manner in order to control the motion.
[0061] Fig. 4 shows the starting position and the end position of the remote control 2 in a front
view when the remote control 2 is tilted around the axis A in the X axis direction
(Fig. 1) of the remote control 2 parallel to an elongated shape of the remote control
2. The initial position of the remote control 2 where the release switch 6 is actuated
is depicted by dashed lines and the end position of the remote control 2 is depicted
by solid lines. The speed and the direction of the motion of the driven movable components
4, 4', 4", 4"', 4"", the control of which is released by actuating the respective
release switch 6, are determined by the movement of the remote control 2 around the
axis A. In Fig. 4, in the initial position of the remote control 2, the Z axis of
the remote control 2 is oriented vertically so the remote control 2 is oriented in
a horizontal position.
[0062] Fig. 5 shows another starting position and the end position of the remote control 2 of Fig.
4 in the front view when the remote control 2 is tilted around the axis A parallel
to the elongated shape of the remote control 2 for controlling one of the motions.
This figure shows that the motion of the driven components 4, 4', 4", 4'", 4"" of
the medical apparatus 3 is not to be controlled compulsorily starting from the horizontal
position of the remote control 2 but, also, another position is possible if the release
switch 6 is actuated in this position and the remote control 2 is moved in a specific
manner in order to control the motion.
[0063] Referring to Figs 2 to 5, the control signal according to the direction of the motion
of the remote control 2 around at least one of the first axis A and the second axis
B is only emitted if the motion of the remote control 2 around the at least one of
the first axis A and the second axis B exceeds a predefined threshold. In this embodiment,
the threshold is set to 3 degrees. In alternative embodiments, the threshold is set
to other appropriate values, preferably between zero degrees and 6 degrees or no threshold
is set.
[0064] Fig. 6 shows a plan view of the remote control 2. The remote control 2 comprises
a display 10 configured to detect a location of a touch of an object, wherein the
display 10 is commonly denoted as a touchscreen. The object usually is a finger of
an operator, i.e., of an operating room nurse.
[0065] The display 10 displays several operating states 11 of the operating table. These
operating states are, e.g. a status as, e.g., a height, a longitudinal travel or a
Trendelenburg angle, error messages, user information, etc.. Further, the display
10 depicts soft keys 12 having an appearance of usual press buttons. Alternatively,
the soft keys 12 have another appearance. When pressing one of the soft keys 12, one
of the release switches 6 (not shown in Fig. 6) is actuated.
[0066] In a further area of the display 10, an illustration of the medical apparatus 3 is
depicted. The display 10 is further configured to display a preview of the motion
of the at least one driven movable component 4, 4', 4", '", 4"" according to the control
signal so as to depict a live preview of the motions.
[0067] Fig. 7 shows a flow chart of a method according to the invention.
[0068] In use, in a first step S1, the control of a specific one of the motions of the driven
movable components 4, 4', 4", 4'", 4"" of the medical apparatus 3 is released by actuating
a specific release switch 6 of the remote control 2 assigned to the specific motion.
[0069] In a next step S2, the motion of the specific one of the movable components 4, 4',
4", 4"', 4"", 4"" is controlled by moving the remote control 2 with respect to a position
of the remote control 2 when the specific release switch 6 is actuated.
[0070] The direction of the motion of the specific one of the driven movable components
4, 4', 4", 4'", 4"" is defined by the direction of motion of the remote control 2
around the axis B perpendicular to an elongated shape of the remote control 2 and/or
around the axis A parallel to the elongated shape of the remote control 2.
[0071] The remote control 2 emits a stop command for stopping the motion of the driven movable
components 4, 4', 4", 4"', 4"" when the remote control 2 is moved into a horizontal
position so that the motion of the specific one of the driven movable components 4,
4', 4", 4"', 4"" is stopped. This function is not compulsorily and, alternatively,
the motion is stopped when the release switch 6 is not actuated anymore and the release
switch 6 does not release the command anymore. The horizontal position is detected
by the inclinometer or, alternatively, by the acceleration sensor. The acceleration
sensor detects components of acceleration forces in the directions of three axes X,
Y, Z of the remote control 2. If the component of the acceleration force in the direction
of the Z axis of the remote control 2 amounts 1g, the remote control 2 is determined
as being oriented in the horizontal position.
[0072] The invention has been described in conjunction with various embodiments herein.
However, other variations to the disclosed embodiments can be understood and effected
by those skilled in the art in practicing the claimed invention, from a study of the
drawings, the disclosure and the appended claims. Such modifications may involve other
features, which are already known in the art and may be used instead of or in addition
to features already described herein. In the claims, the word "comprising" does not
exclude other elements or steps, and the indefinite article "a" or "an" does not exclude
a plurality.
1. A remote control (2) for controlling a medical apparatus (3) having at least one driven
movable component (4, 4', 4", 4"', 4""), the remote control (2) comprising:
a sensor (5) configured to detect a position and a motion of the remote control (2),
and
at least one release switch (6),
wherein
the remote control (2) is configured to emit a control signal capable of controlling
a motion of the at least one driven movable component (4, 4', 4", 4'", 4"") according
to a motion of the remote control (2) detected by the sensor (5) when a control of
the motion of the at least one driven movable component (4, 4', 4", 4"', 4"") is released
by actuating the at least one release switch (6).
2. The remote control (2) of claim 1, wherein
the remote control (2) is configured to emit the control signal according to a direction
of the motion of the remote control (2) detected by the sensor (5) with respect to
a position of the remote control (2) when the at least one release switch (6) is actuated
to start the release of the control of the motion of the at least one driven movable
component (4, 4', 4", 4"', 4"").
3. The remote control (2) of claim 1 or 2, wherein
the remote control (2) is configured to emit the control signal according to an amount
of the motion of the remote control (2).
4. The remote control (2) of anyone of claims 1 to 3, wherein
the remote control (2) is configured to emit the control signal according to a speed
of the motion of the remote control (2).
5. The remote control (2) of anyone of the preceding claims, wherein
the remote control (2) comprises a display configured to detect a location of a touch
of an object.
6. The remote control (2) of anyone of the preceding claims, wherein
the remote control (2) comprises a display configured to display a preview of a motion
of the at least one driven movable component (4, 4', 4", 4'", 4"") according to the
control signal.
7. The remote control (2) of anyone of the preceding claims, wherein
the remote control (2) has an elongated shape, and
a first axis (A) parallel to the elongated shape of the remote control (2) and a second
axis (B) perpendicular to the elongated shape of the remote control (2), wherein
the remote control (2) is configured to emit the control signal according to a direction
of the motion of the remote control (2) around at least one of the first axis (A)
and the second axis (B).
8. The remote control (2) of claim 7, wherein
the remote control (2) is configured to emit the control signal according to the direction
of the motion of the remote control (2) around at least one of the first axis (A)
and the second axis (B) if the motion of the remote control (2) around the at least
one of the first axis (A) and the second axis (B) exceeds a predefined threshold.
9. A system (1) of a remote control (2) of anyone of the preceding claims and a medical
apparatus (3), wherein
the remote control (2) is configured to control the motion of at least one driven
movable component (4, 4', 4", 4"', 4"") of the medical apparatus (3) by the control
signal.
10. The system (1) of claim 9, wherein
the remote control (2) is configured to control a direction of the motion of the at
least one driven movable component (4, 4', 4", 4"', 4"") according to a direction
of the motion of the remote control (2) with respect to a position of the remote control
(2) when the at least one release switch (6) starts to release the control of the
motion.
11. The system (1) of claim 9 or 10, wherein
the remote control (2) comprises several release switches (6),
the medical apparatus (3) comprises several movable components (4, 4', 4", 4"', 4"")
respectively driven by a driving device, and
the several release switches (6) are respectively assigned to a specific motion of
one of the driven movable components (4, 4', 4", 4"', 4"").
12. The system of anyone of claims 9 to 11, wherein
the medical apparatus (3) comprises at least one driven movable component (4, 4',
4", 4'", 4"") which performs several motions respectively driven by a driving device,
and
the system is configured such that the several motions are controlled by the remote
control (2) when the several motions of the at least one driven movable component
(4, 4', 4", 4'", 4"") are released by a release button assigned to the at least one
driven movable component (4, 4', 4", 4"', 4""), wherein the several motions are controlled
according to motions of the remote control (2) around a first axis (A) parallel to
an elongated shape of the remote control (2) and a second axis (B) perpendicular to
the elongated shape of the remote control (2).
13. The system (1) of anyone of claims 9 to 12, wherein
the medical apparatus (3) is configured as an operating table.
14. The system (1) of claim 13, wherein
one of the at least one driven components (4, 4', 4", 4"', 4"") is formed by a locking
device configured to lock a motion of the operating table by touching a face supporting
the operating table.
15. The system (1) of claim 13 or 14, wherein
one of the at least one driven components (4, 4', 4", 4"', 4"") is formed by a wheel
of the operating table, wherein the wheel comprises a drive and the wheel is configured
to move the operating table by the drive.
16. A method for operating a medical apparatus (3) by means of a remote control (2) with
the steps:
releasing a control of a motion of a specific one of driven movable components (4,
4', 4", 4"', 4"") of the medical apparatus (3) by actuating a specific release switch
(6) of the remote control (2), and
controlling a motion of the specific one of the movable components (4, 4', 4", 4"',
4"") by moving the remote control (2) with respect to a position of the remote control
(2) when the specific release switch starts to release the control of the motion of
the specific one of the movable components (4, 4', 4", 4"', 4"").
17. The method of claim 16, wherein
a direction of the motion of the specific one of the driven movable components (4,
4', 4", 4"', 4"") is defined by a direction of motion of the remote control (2) around
at least one of an axis (A) parallel to an elongated shape of the remote control (2)
and an axis (B) perpendicular to the elongated shape of the remote control (2).
18. The method of claim 17, wherein
the motion of the specific one of the driven movable components (4, 4', 4", 4'", 4"")
is stopped when the remote control (2) is moved into a horizontal position.