IP Library Patent Application 10922359
Patent Application
App. No. 10/922,359

Electromagnetic radiation transparent device and method of making thereof

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Quick Facts
Patent No.
US None
App. No.
10/922,359
Abstract

A medical device includes a pattern of electrically conductive material. The pattern of electrically conductive material has an anti-antenna geometrical shape such that the anti-antenna geometrical shape substantially prevents the medical device from creating an imaging artifact and/or substantially allows imaging of a volume within the medical device. The pattern may be formed by multiple “ FIG. 8 ” shaped electrical conductors, multiple “ FIG. 8 ” emulating electrical conductors, multiple sine-wave-like shaped electrical conductors, multiple zig-zag patterned electrical conductors, by multiple electrical conductors, each having sequential conductive loops, and/or a single conductor weaved into a loop mesh. The electrically conductive material may be titanium, tantalum, nitinol, stainless steel, and/or NbZr.

Claims (150)

1 . A medical stent, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents the medical stent from creating an imaging artifact.

2 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

3 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple “ FIG. 8 ” emulating electrical conductors.

4 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

5 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

6 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

7 . The medical stent as claimed in claim 1 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

8 . The medical stent as claimed in claim 7 , wherein said single conductor is sine-wave-like shaped.

9 . The medical stent as claimed in claim 7 , wherein said single conductor is zig-zag patterned.

10 . A medical stent, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially allows imaging of a volume within the stent.

11 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

12 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple “ FIG. 8 ” emulating electrical conductors.

13 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

14 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

15 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

16 . The medical stent as claimed in claim 10 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

17 . The medical stent as claimed in claim 16 , wherein said single conductor is sine-wave-like shaped.

18 . The medical stent as claimed in claim 16 , wherein said single conductor is zig-zag patterned.

19 . A medical stent, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents the medical stent from creating an imaging artifact and substantially allows imaging of a volume within the stent.

20 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

21 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple “ FIG. 8 ” emulating electrical conductors.

22 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

23 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

24 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

25 . The medical stent as claimed in claim 19 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

26 . The medical stent as claimed in claim 25 , wherein said single conductor is sine-wave-like shaped.

27 . The medical stent as claimed in claim 25 , wherein said single conductor is zig-zag patterned.

28 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple “Z”-shaped electrical conductors.

29 . The medical stent as claimed in claim 1 , wherein said pattern is formed by multiple sawtooth shaped electrical conductors.

30 . The medical stent as claimed in claim 7 , wherein said single conductor is “Z”-shaped.

31 . The medical stent as claimed in claim 7 , wherein said single conductor is sawtooth shaped.

32 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple “Z”-shaped electrical conductors.

33 . The medical stent as claimed in claim 10 , wherein said pattern is formed by multiple sawtooth shaped electrical conductors.

34 . The medical stent as claimed in claim 16 , wherein said single conductor is “Z”-shaped.

35 . The medical stent as claimed in claim 16 , wherein said single conductor is sawtooth shaped.

36 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple “Z”-shaped electrical conductors.

37 . The medical stent as claimed in claim 19 , wherein said pattern is formed by multiple sawtooth shaped electrical conductors.

38 . The medical stent as claimed in claim 25 , wherein said single conductor is “Z”-shaped.

39 . The medical stent as claimed in claim 25 , wherein said single conductor is sawtooth shaped.

40 . The medical stent as claimed in claim 1 , wherein said electrically conductive material is tantalum.

41 . The medical stent as claimed in claim 1 , wherein said electrically conductive material is nitinol.

42 . The medical stent as claimed in claim 1 , wherein said electrically conductive material is stainless steel.

43 . The medical stent as claimed in claim 1 , wherein said electrically conductive material is NbZr.

44 . The medical stent as claimed in claim 1 , wherein said electrically conductive material is titanium.

45 . The medical stent as claimed in claim 10 , wherein said electrically conductive material is tantalum.

46 . The medical stent as claimed in claim 10 , wherein said electrically conductive material is nitinol.

47 . The medical stent as claimed in claim 10 , wherein said electrically conductive material is stainless steel.

48 . The medical stent as claimed in claim 10 , wherein said electrically conductive material is NbZr.

49 . The medical stent as claimed in claim 10 , wherein said electrically conductive material is titanium.

50 . The medical stent as claimed in claim 19 , wherein said electrically conductive material is tantalum.

51 . The medical stent as claimed in claim 19 , wherein said electrically conductive material is nitinol.

52 . The medical stent as claimed in claim 19 , wherein said electrically conductive material is stainless steel.

53 . The medical stent as claimed in claim 19 , wherein said electrically conductive material is NbZr.

54 . The medical stent as claimed in claim 19 , wherein said electrically conductive material is titanium.

55 . The medical stent as claimed in claim 1 , further comprising:

non-conductive binding material located at areas where said electrically conductive material produces a cross-over point so as to prevent a short circuit between crossing-over electrically conductive materials.

56 . The medical stent as claimed in claim 55 , wherein said non-conductive binding material providing structural support to said pattern of electrically conductive material.

57 . The medical stent as claimed in claim 55 , wherein said non-conductive binding material is silicon rubber.

58 . The medical stent as claimed in claim 55 , wherein said non-conductive binding material is a thermoplastic.

59 . The medical stent as claimed in claim 55 , wherein said non-conductive binding material is a thermoset polymer.

60 . The medical stent as claimed in claim 55 , wherein said non-conductive binding material is glass.

61 . The medical stent as claimed in claim 10 , further comprising:

non-conductive binding material located at areas where said electrically conductive material produces a cross-over point so as to prevent a short circuit between crossing-over electrically conductive materials.

62 . The medical stent as claimed in claim 61 , wherein said non-conductive binding material providing structural support to said pattern of electrically conductive material.

63 . The medical stent as claimed in claim 61 , wherein said non-conductive binding material is silicon rubber.

64 . The medical stent as claimed in claim 61 , wherein said non-conductive binding material is a thermoplastic.

65 . The medical stent as claimed in claim 61 , wherein said non-conductive binding material is a thermoset polymer.

66 . The medical stent as claimed in claim 61 , wherein said non-conductive binding material is glass.

67 . The medical stent as claimed in claim 19 , further comprising:

non-conductive binding material located at areas where said electrically conductive material produces a cross-over point so as to prevent a short circuit between crossing-over electrically conductive materials.

68 . The medical stent as claimed in claim 67 , wherein said non-conductive binding material providing structural support to said pattern of electrically conductive material.

69 . The medical stent as claimed in claim 67 , wherein said non-conductive binding material is silicon rubber.

70 . The medical stent as claimed in claim 67 , wherein said non-conductive binding material is a thermoplastic.

71 . The medical stent as claimed in claim 67 , wherein said non-conductive binding material is a thermoset polymer.

72 . The medical stent as claimed in claim 67 , wherein said non-conductive binding material is glass.

73 . The medical stent as claimed in claim 7 , wherein said single conductor is shaped to form a first-loop/direction-changing-pattern/second-loop pattern such that current induced in the first loop of said loop/direction-changing-pattern/loop pattern flows has substantially a same magnitude but opposite direction as current induced in the second loop.

74 . The medical stent as claimed in claim 73 , wherein said first-loop/direction-changing-pattern/second-loop pattern is a first-loop/half-hitch/second-loop pattern such that the direction changing pattern is a half hitch pattern.

75 . The medical stent as claimed in claim 73 , wherein said first-loop/direction-changing-pattern/second-loop pattern is repeated along a length of the medical stent.

76 . The medical stent as claimed in claim 16 , wherein said single conductor is shaped to form a first-loop/direction-changing-pattern/second-loop pattern such that current induced in the first loop of said loop/direction-changing-pattern/loop pattern flows has substantially a same magnitude but opposite direction as current induced in the second loop.

77 . The medical stent as claimed in claim 76 , wherein said first-loop/direction-changing-pattern/second-loop pattern is a first-loop/half-hitch/second-loop pattern such that the direction changing pattern is a half hitch pattern.

78 . The medical stent as claimed in claim 76 , wherein said first-loop/direction-changing-pattern/second-loop pattern is repeated along a length of the medical stent.

79 . The medical stent as claimed in claim 25 , wherein said single conductor is shaped to form a first-loop/direction-changing-pattern/second-loop pattern such that current induced in the first loop of said loop/direction-changing-pattern/loop pattern flows has substantially a same magnitude but opposite direction as current induced in the second loop.

80 . The medical stent as claimed in claim 79 , wherein said first-loop/direction-changing-pattern/second-loop pattern is a first-loop/half-hitch/second-loop pattern such that the direction changing pattern is a half hitch pattern.

81 . The medical stent as claimed in claim 79 , wherein said first-loop/direction-changing-pattern/second-loop pattern is repeated along a length of the medical stent.

82 . An electrically conductive structure, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents creation of an imaging artifact by the electrically conductive structure.

83 . The electrically conductive structure as claimed in claim 82 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

84 . The electrically conductive structure as claimed in claim 82 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

85 . The electrically conductive structure as claimed in claim 82 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

86 . The electrically conductive structure as claimed in claim 82 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

87 . The electrically conductive structure as claimed in claim 82 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

88 . The electrically conductive structure as claimed in claim 87 , wherein said single conductor is sine-wave-like shaped.

89 . The electrically conductive structure as claimed in claim 87 , wherein said single conductor is zig-zag patterned.

90 . A medical device, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents creation of an imaging artifact by the medical device.

91 . The medical device as claimed in claim 90 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

92 . The medical device as claimed in claim 90 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

93 . The medical device as claimed in claim 90 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

94 . The medical device as claimed in claim 90 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

95 . The medical device as claimed in claim 90 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

96 . The medical device as claimed in claim 95 , wherein said single conductor is sine-wave-like shaped.

97 . The medical device as claimed in claim 95 , wherein said single conductor is zig-zag patterned.

98 . An electrically conductive structure, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially allows imaging of a volume within the electrically conductive structure.

99 . The electrically conductive structure as claimed in claim 98 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

100 . The electrically conductive structure as claimed in claim 98 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

101 . The electrically conductive structure as claimed in claim 98 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

102 . The electrically conductive structure as claimed in claim 98 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

103 . The electrically conductive structure as claimed in claim 98 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

104 . The electrically conductive structure as claimed in claim 103 , wherein said single conductor is sine-wave-like shaped.

105 . The electrically conductive structure as claimed in claim 103 , wherein said single conductor is zig-zag patterned.

106 . An electrically conductive structure, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents creation of an imaging artifact by the medical device and substantially allows imaging of a volume within the electrically conductive structure.

107 . The electrically conductive structure as claimed in claim 106 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

108 . The electrically conductive structure as claimed in claim 106 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

109 . The electrically conductive structure as claimed in claim 106 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

110 . The electrically conductive structure as claimed in claim 106 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

111 . The electrically conductive structure as claimed in claim 106 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

112 . The electrically conductive structure as claimed in claim 111 , wherein said single conductor is sine-wave-like shaped.

113 . The electrically conductive structure as claimed in claim 111 , wherein said single conductor is zig-zag patterned.

114 . A medical device, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially allows imaging of a volume within the medical device.

115 . The medical device as claimed in claim 114 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

116 . The medical device as claimed in claim 114 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

117 . The medical device as claimed in claim 114 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

118 . The medical device as claimed in claim 114 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

119 . The medical device as claimed in claim 114 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

120 . The medical device as claimed in claim 119 , wherein said single conductor is sine-wave-like shaped.

121 . The medical device as claimed in claim 119 , wherein said single conductor is zig-zag patterned.

122 . A medical device, comprising:

a pattern of electrically conductive material;

said pattern of electrically conductive material having an anti-antenna geometrical shape such that said anti-antenna geometrical shape substantially prevents creation of an imaging artifact by the medical device and substantially allows imaging of a volume within the medical device.

123 . The medical device as claimed in claim 122 , wherein said pattern is formed by multiple “ FIG. 8 ” shaped electrical conductors.

124 . The medical device as claimed in claim 122 , wherein said pattern is formed by multiple sine-wave-like shaped electrical conductors.

125 . The medical device as claimed in claim 122 , wherein said pattern is formed by multiple zig-zag patterned electrical conductors.

126 . The medical device as claimed in claim 122 , wherein said pattern is formed by multiple electrical conductors, each having sequential conductive loops.

127 . The medical device as claimed in claim 122 , wherein said pattern is formed by a single conductor weaved into a loop mesh, said loop mesh being formed of two or more sequential “ FIG. 8 ” shaped conductive loop pairs.

128 . The medical device as claimed in claim 127 , wherein said single conductor is sine-wave-like shaped.

129 . The medical device as claimed in claim 127 , wherein said single conductor is zig-zag patterned.

Assignments (6)
CORRECTION OF AN ERROR MADE IN A PREVIOUSLY RECORDED DOCUMENT THAT ERRONEOUSLY AFFECTS APPLICATION NO. 10/922,359. THE ERRONEOUS RECORDATION DATED MAY 7, 2008, IS RECORDED AT REEL/FRAME 020909/0366 Recorded Oct 14, 2008
From: IROQUOIS MASTER FUND, LTD
To: IROQUOIS MASTER FUND, LTD
Reel/Frame 021677/0520 →
CORRECTION OF AN ERROR MADE IN A PREVIOUSLY RECORDED DOCUMENT THAT ERRONEOUSLY AFFECTS APPLICATION NO. 10/922,359. THE ERRONEOUS RECORDATION DATED MAY 7, 2008, IS RECORDED AT REEL/FRAME 020909/0169 Recorded Oct 14, 2008
From: BIOPHAN TECHNOLOGIES, INC.
To: BIOPHAN TECHNOLOGIES, INC.
Reel/Frame 021677/0558 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2008
From: BIOPHAN TECHNOLOGIES, INC.
To: MEDTRONIC, INC.
Reel/Frame 020909/0169 →
RELEASE OF SECURITY INTEREST Recorded May 7, 2008
From: IROQOUIS MASTER FUND, LTD
To: MEDTRONIC, INC.
Reel/Frame 020909/0366 →
SECURITY AGREEMENT Recorded Oct 17, 2006
From: BIOPHAN TECHNOLOGIES, INC.
To: IROQUOIS MASTER FUND LTD.
Reel/Frame 018398/0155 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2004
From: GRAY, ROBERT W.; MACDONALD, STUART G.; HELFER, JEFFREY L.
To: BIOPHAN TECHNOLOGIES INC.
Reel/Frame 015719/0791 →