In vivo accessories for minimally invasive robotic surgery
Surgical accessories are presented in vivo and used by surgical tools in the surgical site to perform additional tasks without the need to remove the tools from the surgical site for tool change or instrument loading. The accessories can be introduced into the surgical site by a dedicated accessory introducer, or can be supported on the body of a surgical tool inserted into the surgical site and be manipulated using another surgical tool in the surgical site. The accessory introducer can be resiliently biased to bias the accessories toward a predetermined position in the surgical site.
1. A robotic surgical system for performing a procedure on a body, the system comprising:
a surgical tool having first and second end effector members, wherein the first and second end effector members are arranged so as to be capable of grasping an object;
a master control device having an actuatable portion, wherein the actuatable portion is operatively coupled with the surgical tool such that specific actuation by a user of the actuatable portion causes the first and second end effector members to grasp the object; and
an input device for accepting an input from the user to cause the first and second end effector members to continue to grasp the object without continuing the specific actuation by the user of the actuatable portion of the master control device.
2. The robotic surgical system of claim 1 , wherein the input device is voice activated by the user.
3. The robotic surgical system of claim 1 , wherein the input device includes a processor programmed to determine when the user intends to cause the first and second end effector members to continue to grasp the object, without continuing the specific actuation of the actuatable portion of the master control device, by processing information of a force being exerted by the user on the master control device.
4. The robotic surgical system of claim 3 , wherein the processor is programmed to determine when the user intends to cause the first and second end effector members to continue to grasp the object, without continuing the specific actuation of the actuatable portion of the master control device, by detecting a threshold closing force being applied by the user on the master control device over a specific period of time.
5. The robotic surgical system of claim 1 , wherein the input device is a mechanism on the master control device.
6. The robotic surgical system of claim 5 , wherein the mechanism is one of a switch, button, and latch.
7. The robotic surgical system of claim 5 , wherein the actuatable portion comprises a pincher formation including first and second pincher elements, wherein the mechanism is a latch locking mechanism, and wherein the latch locking mechanism comprises:
opposing latches on the first and second pincher elements,
a slot on one of the first and second pincher elements, and
a sliding button that slides in the slot, wherein the opposing latches catch when the pincher formation is closed and the sliding button is in a first position in the slot, and wherein the opposing latches do not catch when the pincher formation is closed and the sliding button is in a second position in the slot.
8. The robotic surgical system of claim 1 , further comprising:
means for providing a perceivable indication when the input device accepts an input from the user to cause the end effector members to continue to grasp the object without continuing the specific actuation by the user of the actuatable portion of the master control device.
9. The robotic surgical system of claim 8 , wherein the perceivable indication is one of an audible sound, illumination of a locking light, and illumination of an icon on a display screen.
10. The robotic surgical system of claim 1 , wherein the input device accepts another input from the user to cause the first and second end effector members to discontinue grasping the object without interaction by the user with the actuatable portion of the master control device.