Cart for optical coherence tomography
According to an aspect of the present disclosure, a cart for optical coherence tomography includes a rotary catheter unit; a main body including a receiving member configured to receive the rotary catheter unit; a mobile unit coupled to a lower part of the main body and configured to move the main body on the ground; and a display unit connected to an upper part of the main body and configured to output information generated by the rotary catheter unit. Wherein the display unit is located inside at least two side surfaces of the main body.
1 . A cart for optical coherence tomography, comprising:
a rotary catheter unit;
a main body including a receiving member configured to receive the rotary catheter unit, at least two side surfaces, and an inclined portion having an upwardly extending shape inclined from a first one of the at least two side surfaces and a second one of the at least two side surfaces in a direction facing each other;
a mobile unit coupled to a lower part of the main body and configured to move the main body on the ground; and
a display unit connected to an upper part of the main body and configured to output information generated by the rotary catheter unit, and
wherein the receiving member is disposed on the inclined portion.
2 . The cart for optical coherence tomography of claim 1 ,
wherein the display unit includes:
a first display spaced inward from the first one of the at least two side surfaces of the main body; and
a second display spaced inward from a rear surface of the main body.
3 . A cart for optical coherence tomography, comprising:
a rotary catheter unit;
a main body including a receiving member configured to receive the rotary catheter unit, at least two side surfaces, and an inclined portion having an upwardly extending shape inclined from a first one of the at least two side surfaces and a second one of the at least two side surfaces in a direction facing each other;
a mobile unit coupled to a lower part of the main body and configured to move the main body on the ground; and
a display unit connected to an upper part of the main body and configured to output information generated by the rotary catheter unit,
wherein the display unit includes a first display disposed on one side surface of the inclined portion and a second display disposed on another side surface of the inclined portion.
4 . The cart for optical coherence tomography of claim 3 ,
wherein the second display is provided in parallel with the second one of the at least two side surfaces of the main body.
5 . The cart for optical coherence tomography of claim 1 ,
wherein the mobile unit includes:
a leg portion extending to protrude to the outside of the main body; and
a roller portion coupled to an end portion of the leg portion and roll on the ground.
6 . The cart for optical coherence tomography of claim 1 ,
wherein the at least two side surfaces comprises four side surfaces, and
wherein the mobile unit protrudes to the outside from the four side surfaces of the main body to land on the ground.
7 . The cart for optical coherence tomography of claim 1 , further comprising:
a manipulation unit including a grip portion protruding to the outside from the at least two side surfaces of the main body.
8 . A cart for optical coherence tomography, comprising:
a rotary catheter unit;
a main body including a receiving member configured to receive the rotary catheter unit;
a mobile unit coupled to a lower part of the main body and configured to move the main body on the ground;
a display unit connected to an upper part of the main body and configured to output information generated by the rotary catheter unit; and
a manipulation unit including a grip portion protruding to the outside from one of at least two side surfaces of the main body,
wherein the grip portion includes:
a first cross bar extending at a predetermined height to be spaced apart from the main body; and
a second cross bar extending at a different height from the first cross bar to be spaced apart from the main body.
9 . The cart for optical coherence tomography of claim 8 ,
wherein the grip portion further includes:
a cross connection bar whose both end portions are connected to the first cross bar and the second cross bar, respectively; and
a main body connection bar extending from the first cross bar, the second cross bar or the cross connection bar to be supported by one of the at least two side surfaces of the main body.
10 . The cart for optical coherence tomography of claim 7 ,
wherein the manipulation unit further includes:
an input unit cradle spaced apart from the grip portion and provided on one of the at least two side surfaces of the main body to cradle an input unit.
11 . The cart for optical coherence tomography of claim 7 ,
wherein the manipulation unit is provided around the inclined portion.
12 . The cart for optical coherence tomography of claim 7 ,
wherein the grip portion includes:
a first cross bar extending at a predetermined height to be spaced apart from the first one of the at least two side surfaces of the main body; and
a second cross bar extending at a higher height than the first cross bar to be spaced apart from the second one of the at least two side surfaces of the main body, and wherein the receiving member is located under the second cross bar.
13 . A cart for optical coherence tomography, comprising:
a rotary catheter unit;
a main body including a receiving member configured to receive the rotary catheter unit, and an inclined portion having an upwardly extending shape inclined from a first side surface and a second side surface in a direction facing each other;
a mobile unit coupled to a lower part of the main body and configured to move the main body on the ground; and
a display unit connected to an upper part of the main body and configured to output information generated by the rotary catheter unit,
wherein in a top view of the cart for optical coherence tomography, the center of gravity of the display unit is located in an inner area of the main body, and
wherein the display unit includes a first display disposed on the first side surface of the inclined portion and a second display disposed on the second side surface of the inclined portion.