Implantable pulse generator with suture holes, methods for implanting the same, and encapsulation of external components in active implantable medical devices
An implantable pulse generator is provided that includes a power source, a wireless communication component configured to facilitate wireless communication with a non-implanted device and pulse-generating circuitry connected to the power source. The pulse-generating circuitry can be configured to identify, based on wireless communication with the non-implanted device, temporal and amplitude characteristics for electrical pulse stimuli and to trigger electrical output stimuli having the temporal and amplitude characteristics. The implantable pulse generation can further include one or more lead connections—each being shaped to engage a lead and electrically connected to the pulse-generating circuitry to enable the lead to deliver at least part of the electrical output stimuli triggered by the pulse-generating circuitry. The implantable pulse generator can further include one or more suture-engagement components, each including one or more holes each having a diameter that is at least 0.1 mm and less than 5 mm.
1 . An implantable pulse generator comprising:
a power source;
a wireless communication component configured to facilitate wireless communication with a non-implanted device, wherein the wireless communication component comprises an antenna that comprises a main body comprising one or more patterned planar conductive elements and a tab comprising a set of conductive terminals electrically connected to one or more leads, wherein each of at least one of the one or more patterned planar conductive elements is positioned on an outer surface of the implantable pulse generator and wherein the antenna is adhesively sealed to the outer surface of the implantable pulse generator;
pulse-generating circuitry connected to the power source; and
one or more lead connections, wherein each lead connection of the one or more lead connections is electrically connected to the pulse-generating circuitry to enable the lead to deliver at least part of an electrical output stimuli triggered by the pulse-generating circuitry.
2 . The implantable pulse generator of claim 1 , further comprising one or more suture engagement components, wherein each suture engagement component of the one or more suture engagement components includes one or more holes each having a diameter that is at least 0.1 mm and less than 5 mm.
3 . The implantable pulse generator of claim 2 , wherein:
a first suture-engagement component of the one or more suture-engagement components includes a first outer portion of the implantable pulse generator, wherein each of one or more first holes extend through, along a depth dimension, the first outer portion; and
a second suture-engagement component of the one or more suture-engagement components includes a second outer portion of the implantable pulse generator, wherein one or more second holes extend through, along the depth dimension the second outer portion, wherein each of the one or more second holes is separated from at least one of the one or more first holes by a separation distance that is at least 90% of a length of the implantable pulse generator, wherein the length of the implantable pulse generator is perpendicular to and longer than each of a depth of the implantable pulse generator and a width of the implantable pulse generator.
4 . The implantable pulse generator of claim 2 , wherein the one or more suture-engagement components are configured such the one or more suture-engagement components include:
at least one first hole, wherein each first hole of the at least one first hole:
is positioned such that a center of the first hole is less than 5 mm from a first edge of the implantable pulse generator; and
has a diameter that is at least 0.1 mm and less than 5 mm; and
at least one second hole, wherein each second hole of the at least one second hole:
is positioned such that a center of the second hole is less than 5 mm from a second edge of the implantable pulse generator, the second edge being opposite from and parallel to the first edge; and
has a diameter that is at least 0.1 mm and less than 5 mm.
5 . The implantable pulse generator of claim 1 , further comprising:
one or more housings, wherein each of the one or more housings at least partly encases:
the power source;
the wireless communication component; and/or
the pulse-generating circuitry
wherein each of the one or more suture-engagement components is attached to at least one of the one or more housings.
6 . The implantable pulse generator of claim 2 , wherein each of the one or more suture-engagement components includes a planar surface, and wherein each of the one or more holes extends through the planar surface.
7 . The implantable pulse generator of claim 2 , wherein each of the one or more suture-engagement components includes a wrapped surface, and wherein each of the one or more holes extends through two opposite portions of the wrapped surface.
8 . The implantable pulse generator of claim 2 , wherein each of the one or more suture-engagement components includes a metallic material.
9 . The implantable pulse generator of claim 2 , wherein the one or more suture-engagement components are configured so as to collectively include at least four holes.
10 . The implantable pulse generator of claim 2 , wherein each suture-engagement component of the one or more suture-engagement components includes one or more holes each having a diameter that is at least 0.5 mm and less than 2.5 mm.
11 . The implantable pulse generator of claim 1 , further comprising:
a can housing that houses the pulse-generating circuitry,
wherein the antenna is positioned such that at least part of the antenna is on a surface of the can housing.
12 . The implantable pulse generator of any one of claims 1-11 , wherein the power source includes a rechargeable battery.
13 . The implantable pulse generator of claim 1 , wherein the pulse-generating circuitry is configured to:
identify, based on wireless communication with the non-implanted device, temporal and
amplitude characteristics for electrical pulse stimuli; and
trigger electrical output stimuli having the temporal and amplitude characteristics.
14 . An implantable pulse generator comprising:
a power source;
pulse-generating circuitry connected to the power source;
one or more lead connections, wherein each lead connection of the one or more lead connections is:
electrically connected to the pulse-generating circuitry to enable the lead to deliver at least part of the electrical output stimuli triggered by the pulse-generating circuitry;
a can housing that houses the pulse-generating circuitry; and
a wireless communication component configured to facilitate wireless communication with a non-implanted device, wherein the wireless communication component comprises an antenna that is positioned such that at least part of the antenna is on a surface of the can housing, the antenna comprising:
a main body; and
a tab, the tab comprising a set of conductive terminals, wherein the set of conductive terminals is electrically connected to one or more leads, and
wherein the antenna is adhesively sealed to the outer surface of the implantable pulse generator.
15 . The implantable pulse generator of claim 14 , wherein the pulse-generating circuitry is configured to:
identify, based on wireless communication with the non-implanted device, temporal and
amplitude characteristics for electrical pulse stimuli; and
trigger electrical output stimuli having the temporal and amplitude characteristics; and wherein the one or more lead connection is shaped to engage a lead.