“Recently, argon beam coagulators have been demonstrated to be effective tissue coagulators. Presently available argon beam coagulators include a flexible cable having a nozzle tip with an opening through which the argon gas flows. The device includes a handle immediately adjacent the nozzle tip for placing the tip in position for tissue coagulation. Within the tip is located a tungsten needle for discharging radiofrequency (RF) current which ionizes the argon gas. The stream of ionized argon, a colorless, odorless, inactive gas, conducts the current to the tissue and blood vessels, while effectively blowing blood away from the vessels and allowing coagulation within vessel walls.”
“A surgical tissue coagulator (A) comprising an elongate, biocompatible, tube (10) having an open distal end (12) and a proximal end (14); means (22) for connecting the proximal end (14) of said tube (10) with a source (24) of an inert, ionizable gas so that a stream of said gas can flow through said tube (10) and exit the distal end (12) of said tube (10); a handle 18 attached to said tube (10) adjacent the proximal end (14) of the tube (10) for maneuvering said tube; a wire (28) within said tube (10) for conducting radiofrequency current, the wire (28) having a distal end (30) for positioning adjacent the distal end (12) of said tube (10), and means (32) at the distal end (30) of said wire (28) for discharging an arc (34) of radiofrequency energy away from the distal end (30) of said wire (28) within said stream of inert gas exiting the distal end (12) of said tube (10) so as to form an ionized gas stream which is capable of coagulating tissue (38) during endoscopic surgery within a patient, the wire (28) having a proximal end (40) opposite the distal end (30) of the wire (28), and means (42) for connecting the proximal end (40) of the wire (28) with a source (44) of radiofrequency energy, characterized in that said tube (10) and said wire (28) are flexible, the tube has further an external diameter of less than about 5 mm, is insertable into a surgical endoscope (16) having a length of at least about 35cm, and in that said handle is adapted for maneuvering said tube (10) within said endoscope (16) while said handle (18) is outside said endoscope (16).” means (22) for connecting the proximal end (14) of said tube (10) with a source (24) of an inert, ionizable gas so that a stream of said gas can flow through said tube (10) and exit the distal end (12) of said tube (10); a handle 18 attached to said tube (10) adjacent the proximal end (14) of the tube (10) for maneuvering said tube; a wire (28) within said tube (10) for conducting radiofrequency current, the wire (28) having a distal end (30) for positioning adjacent the distal end (12) of said tube (10), and means (32) at the distal end (30) of said wire (28) for discharging an arc (34) of radiofrequency energy away from the distal end (30) of said wire (28) within said stream of inert gas exiting the distal end (12) of said tube (10) so as to form an ionized gas stream which is capable of coagulating tissue (38) during endoscopic surgery within a patient, the wire (28) having a proximal end (40) opposite the distal end (30) of the wire (28), and means (42) for connecting the proximal end (40) of the wire (28) with a source (44) of radiofrequency energy, characterized in that said tube (10) and said wire (28) are flexible, the tube has further an external diameter of less than about 5 mm, is insertable into a surgical endoscope (16) having a length of at least about 35cm, and in that said handle is adapted for maneuvering said tube (10) within said endoscope (16) while said handle (18) is outside said endoscope (16).”
“if there is a full insertion of the catheter (i.e. on a very long scope – meaning having to use a lot of centimetres of instrument – usually in a colonoscopy) I use the plastic piece at the end of the probe to feed it in, because there is no part of the catheter that is available to grab. For the same reason, when the probe is fully inserted I hold it by the same piece when manipulating it within the patient during the procedure.”
“(a) The first, overarching principle, is that contained in Art.69 [of the European Patent Convention] itself . . . (b) Article 69 says that the extent of protection is determined by the terms of the claims. It goes on to say that the description and drawings shall be used to interpret the claims. In short the claims are to be construed in context. (c) It follows that the claims are to be construed purposively – the inventor’s purpose being ascertained from the description and drawings. (d) It further follows that the claims must not be construed as if they stood alone – the drawings and description only being used to resolve any ambiguity . . . Purpose is vital to the construction of claims. (e) . . . (f) Nonetheless purpose is not the be-all and end-all. One is still at the end of the day concerned with the meaning of the language used. Hence the other extreme of the Protocol – a mere guideline – is also ruled out by Art.69 itself. It is the terms of the claims which delineate the patentee’s territory. (g) It follows that if the patentee has included what is obviously a deliberate limitation in his claims, it must have a meaning. One cannot disregard obviously intentional elements . . . (h) It also follows that where a patentee has used a word or phrase which, acontextually,might have a particular meaning (narrow or wide) it does not necessarily have that meaning in context . . . (i) It further follows that there is no general “doctrine of equivalents” . . . (j) On the other hand purposive construction can lead to the conclusion that a technically trivial or minor difference between an element of a claim and the corresponding element of the alleged infringement nonetheless falls within the meaning of the element when read purposively. This is not because there is a doctrine of equivalents: it is because that is the fair way to read the claim in context. (k) Finally purposive construction leads one to eschew what Lord Diplock in Catnic [Catnic Components Limited v. Hill & Smith Limited[1982] RPC 183 ] called (at p.243): “The kind of meticulous verbal analysis in which lawyers are too often tempted by their training to indulge”.” “The kind of meticulous verbal analysis in which lawyers are too often tempted by their training to indulge”.”