EP1921997A2

Biopsy device with replaceable probe and incorporating vibration insertion assist and static vacuum source sample stacking retrieval

Abstract

This record has no abstract on file.

EP1921997A2, drawing sheet 1
Sheet 1 of 47

Term

Term ended

Projected expiry passed 2 August 2026, 0.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

37 claims: 6 independent, 31 dependent

  1. 1
    Claims of equivalent WO 2007019152 A2 [00120] What is Claimed:1. A biopsy device, comprising: a probe assembly, comprising: a probe support structure, a probe attached to the probe support structure and having a side aperture, and a cutter tube slidingly received by the probe and sized to translate across the side aperture;and a hand piece, comprising: a hand piece support structure having a lateral engaging portion operatively configured to receive the probe assembly, a lead screw for cutter translation attached for rotation to the hand piece support structure, and a cutter carriage longitudinally translated by rotation of the lead screw and having an engagement mechanism positioned to engage a proximal portion of the cutter tube.
  2. 18
    20. A biopsy device, comprising:a needle comprising a probe tube defining a cutter lumen, a sample aperture formed in the probe tube communicating with the cutter lumen, and a piercing tip attached to a distal end of the probe tube;a cutter tube received by the probe tube for relative axial translation by the sample aperture to sever tissue prolapsed therein;a motorized mechanism operatively configured to axially translate and rotate the cutter tube;and a control valve responsive to a longitudinal position of the cutter tube to couple the cutter lumen to a pneumatic source.
  3. 28
    31. The biopsy device, comprising:a needle comprising a probe tube defining a cutter lumen, a sample aperture formed in the probe tube communicating with the cutter lumen, and a piercing tip attached to a distal end of the probe tube;a cutter tube received by the probe tube for relative axial translation by the sample aperture to sever tissue prolapsed therein;a motorized mechanism operatively configured to axially translate the cutter tube;and an elongate straw slidingly received into the cutter tube and proximally accessible from the assembled biopsy device for replacement.
  4. 33
    37. A biopsy device, comprising:a hand piece comprising a motorized translation and rotation drive mechanism contained within a housing having an opening;and a disposable probe assembly, comprising: a cover sized for selective engagement within the opening in the hand piece;a probe tube distally attached to and distally extending from the cover;a cutter tube translatably received within the probe tube;and a cutter gear proximally attached to the cutter tube and positioned for rotational and translating engagement to the motorized translation and rotation drive mechanism of the hand piece.
  5. 36
    41. A biopsy device, comprising:a needle comprising a probe tube defining a cutter lumen and a sample aperture formed in the probe tube;a cutter tube received by the probe tube for relative axial translation by the sample aperture to sever tissue prolapsed therein;a storage lumen in communication with a proximal end of the cutter tube;and a vacuum control operatively configured to communicate a vacuum to a proximal end of the storage lumen to retract a tissue sample through the cutter tube and storage lumen.
  6. 37
    42. A biopsy device, comprising:a first probe assembly, comprising: a probe support structure, a probe attached to the probe support structure and having a side aperture, and a cutter tube ' slidingly received by the probe and sized to translate across the side aperture to sever a tissue sample, a sample straw proximally inserted into the cutter tube for capturing a tissue sample contained therein, and an indicator straw proximally inserted into the sample straw longitudinally sized to extend proximally out of the sample straw in relation to a plurality of tissue samples sequentially inserted into the sample straw;a second probe assembly, comprising: a probe support structure, ' a probe attached to the probe support structure and having a side aperture, and y f ttter" : liθyyiBifiigly received by the probe and sized to translate across the side aperture to sever a tissue sample, a storage lumen in communication with a proximal end of the cutter tube, and a vacuum control operatively configured to communicate a vacuum to a proximal end of the storage lumen to retract a tissue sample through the cutter tube and storage lumen;and a hand piece, comprising: a hand piece support structure having a lateral engaging portion operatively configured to engage the probe support structure of a selected one of the first and second the probe assemblies, a lead screw for cutter translation attached for rotation to the hand piece support structure, a cutter carriage longitudinally translated by rotation of the lead screw and having an engagement mechanism positioned to engage a proximal portion of the cutter tube, and a straw carriage longitudinally translated by rotation of the lead screw and having an engagement mechanism positioned to engage the sample straw of the first probe assembly. 43. A method, comprising: inserting a core biopsy needle into tissue;prolapsing tissue into an opening of the core biopsy needle;translating a cutter tube through the core biopsy needle to sever the prolapsed tissue to form a first tissue sample;urging the first tissue sample into a sample lumen that proximally communicates with the cutter tube;retracting the cutter tube;repositioning the core biopsy needle in tissue;prolapsing tissue into the opening of the core biopsy needle;translating the cutter tube through the core biopsy needle to sever the prolapsed tissue to form a second tissue sample;and urging the second tissue sample into the sample lumen into a serial stack with the first tissue sample.