Method and apparatus for venting fish

Information

  • Patent Grant
  • 7676982
  • Patent Number
    7,676,982
  • Date Filed
    Wednesday, March 19, 2008
    16 years ago
  • Date Issued
    Tuesday, March 16, 2010
    14 years ago
  • Inventors
  • Examiners
    • Ark; Darren W
    Agents
    • Smith; Ronald E.
    • Smith & Hopen, P.A.
Abstract
A tool for saving the lives of captured fish that are swollen by expanded gases when brought to the surface includes an elongate hollow tube of rigid construction having a sharp cutting edge formed in a distal free end of the tube. A user grasps a proximal end of the tube and punctures a fish at a predetermined location in its body with the sharp cutting edge to allow gases to flow out of the body of the fish until the body returns to a substantially unswollen condition. The fish is conventionally resuscitated prior to release after the gases have been vented. The tube folds into a handle for storage when not in use.
Description
FIELD OF THE INVENTION

This invention relates, generally, to the fishing industry. More particularly, it relates to a method and apparatus that enables survival of fish that are caught and released.


DESCRIPTION OF THE PRIOR ART

Many fish that are caught and found to be protected by law are released as required by law. A fish may be protected because its length is below a legal limit, because it belongs to a protected species, or for other reasons.


Even if a fish is not protected by law, the fisherman or fisherwoman may desire to return the fish to its environment for environmental reasons. However, if a fish is released without treatment of any kind, its survival chances are low. Many fishermen have learned to hold onto a fish as they return it to the water, and to move the fish forwardly and rearwardly to cause water to flow over its gills until the fish revives from the shock of being caught and swims away under its own propulsion.


This technique works for fish that are otherwise healthy. However, when a deep-dwelling fish is brought to the surface, it will be bloated, i.e., swollen because external pressure on the fish at its normal living depth is much less than the pressure on the fish when it is brought to the surface and into the atmosphere. Accordingly, the gases within the fish expand. The eyes of the fish will bulge out and in some cases the stomach of the fish will extend from its mouth.


Moving such a fish back and forth near the water surface in an effort to revive it is fruitless.


There is a need, then, for a treatment method that can enable such fish to survive.


However, in view of the prior art taken as a whole at the time the present invention was made, it was not obvious to those of ordinary skill how the identified needs could be fulfilled.


SUMMARY OF THE INVENTION

The long-standing but heretofore unfulfilled need for a device that saves the lives of deep-dwelling fish that have been brought to the surface is now met by a new, useful, and non-obvious invention.


The inventive structure is a novel tool for saving the lives of captured fish that are swollen by expanded gases when brought to the surface. It includes an elongate hollow tube of rigid construction having a proximal and a distal end and a sharp cutting edge formed in the distal end.


A user grasps the proximal end of the tube and punctures a fish at a predetermined location in its body with the sharp cutting edge until said body returns to a substantially unswollen condition. The fish is resuscitated by a conventional method after the gases have been vented and before being released.


The sharp cutting edge is formed by a bevel formed in the distal end of said tube.


The proximal end of the tube is secured to a handle to facilitate handling of the tube. The handle includes a first part and a second part that confront and abut one another, defining a hollow space between them for receiving the tube when the tube is in its stored configuration.


A pivot pin extends between the first and second parts of the handle at the leading end of the handle and said tube having a bore formed in its proximal end to receive said pivot pin. The tube has a fully deployed position when fully pivoted in a first direction about the pivot pin and a stored position when fully pivoted about the pivot pin in a second direction opposite to the first direction.


The proximal end of the tube is enlarged with respect to a balance of the tube to structurally reinforce the proximal end. The pivot pin extends through the enlarged, structurally reinforced proximal end of the tube.


The second part of the handle has a dished area formed therein to expose a medial extent of the tube when the tube is in the folded, stored configuration so that it can be grasped by a finger or thumb of a user.


A first detent is formed in a trailing end of the handle; it extends into the hollow space between the first and second parts of the handle. The first detent overlies the tube when the tube is in its folded, stored configuration. The first detent is formed of a flexible and resilient material so that the tube transiently displaces the detent when the tube is displaced from its deployed configuration to its stored configuration and from its stored configuration to its deployed configuration. A second detent is formed in a leading end of the handle but in trailing relation to the pivot pin and supplements the function of the first detent. A third detent is formed in a leading end of the handle in leading relation to the pivot pin and also extends into the hollow space between the first and second parts of the handle. The third detent overlies the proximal end of the tube when the tube is in its deployed configuration. The third detent is also formed of a flexible and resilient material so that the tube transiently displaces the first and second detents when the tube is displaced from its deployed configuration to its stored configuration and from its stored configuration to its deployed configuration.


A carrying case holds the tool when the tube is in its folded, stored configuration. The carrying case includes a clip so that the carrying case can be attached to a belt or other item of clothing.


The primary object of this invention is to save the lives of fish that are swollen due to expanded gases in their body when brought to the surface of a body of water.


A closely related object is to accomplish the primary object with a simple tool that is easy to use.


These and other important objects, advantages, and features of the invention will become clear as this description proceeds.


The invention accordingly comprises the features of construction, combination of elements, and arrangement of parts that will be exemplified in the description set forth hereinafter and the scope of the invention will be indicated in the claims.





BRIEF DESCRIPTION OF THE DRAWINGS

For a fuller understanding of the nature and objects of the invention, reference should be made to the following detailed description, taken in connection with the accompanying drawings, in which:



FIG. 1 is an exploded perspective view of the novel structure;



FIG. 2 is a top plan view of the novel structure when the vent tube is in its stored configuration;



FIG. 3A is a top plan view when the vent tube is deployed;



FIG. 3B is a top plan view of an embodiment having a shorter vent tube, for use with small fish;



FIG. 4 is a bottom plan view when the vent tube is in its stored configuration;



FIG. 5 is a first side elevational view when the vent tube is in its stored configuration;



FIG. 6 is a second side view when the vent tube is in its stored configuration;



FIG. 7 is a front elevational view of a first embodiment of the holding case;



FIG. 8 is a rear elevational view of said first embodiment of said holding case;



FIG. 9 is a front elevational view of a second embodiment of the holding case, depicting a closed flap; and



FIG. 10 is a front elevational view of the second embodiment of the holding case, depicting the flap in its open configuration.





DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT

Referring now to FIG. 1, it will there be seen that an illustrative embodiment of the invention is denoted as a whole by the reference numeral 10.


Tool 10 includes a rigid, preferably metallic tube 12 having an external diameter of about an eighth of an inch (0.125□) and an internal diameter a little more than half that, depending upon the thickness of the metal, hard plastic, or other material of which said tube is made.


Tube 12 is beveled at its distal free end as indicated by the reference numeral 14. The preferred angle of bevel is about thirty five degrees (35°) but such angle is not critical.


No further apparatus is required to perform the step of the novel method, although additional apparatus is disclosed hereinafter to facilitate handling of tube 10.


When a protected fish suffering from pressure-drop-induced swelling is found in a net, the fisherman grasps the non-beveled proximal end of the tube and punctures the fish at a location forwardly of the fish's stomach and rearwardly of its head with the sharp distal free end of the tube. It is important not to puncture the stomach. Air under pressure will flow through the tube and escape from the fish, thereby ending the swelling. The fish's eyes and stomach will quickly return to their respective normal positions when the venting process is complete. When the air has stopped flowing, as indicated by the fish's body returning to an unbloated condition and as indicated by the absence of noise caused by air flowing through the tube, then the tube is withdrawn. The small puncture will close because the leading edge of the bevel is sharp and makes a small cut. The elasticity of the fish's body will cause the opening created by the tube to collapse and the small slit will heal quickly after the fish is released. The well-known practice of reviving the fish by manually propelling it through the water is still practiced after the tube is withdrawn from the body of the fish.


The proximal end of tube 12 is structurally enhanced by ensleeving said proximal end within a longitudinally disposed lumen of base 16, said base being enlarged with respect to tube 12 to reinforce its proximal end. Bore 18 that perpendicularly intersects said lumen is formed in tube 12 and base 16.


Handle 20 is provided in two (2) parts, denoted 22 and 24. Enlarged base 16 facilitates the pivotal attachment of tube 12 to handle 20. However, it is within the scope of this invention to pivotally mount tube 12 to handle 20 in the absence of base 16. In that embodiment, bore 18 is still formed in tube 12 but without the reinforcement provided by base 16.


Handle 20 is preferably made of two molded (2) parts 22 and 24 that are secured to one another by any suitable means. In the preferred embodiment, screws or rivets 26 and 28 are used to fasten together the trailing and leading (proximal and distal) ends, respectively, of handle parts 22, 24. Base 18 is dimensioned so that it can fit between said parts 22, 24.


In this particular embodiment, an unthreaded boss 30 is formed integrally with handle part 22 and an internally threaded boss 32 is formed integrally with handle part 24 so that the two (2) bosses confront and abut one another when the handle parts are connected to one another. An externally threaded screw 34 extends through boss 30 and screwthreadedly engages the internal threads of boss 32 to secure the respective trailing ends of said handle parts together.


Bore 18 is formed in the proximal end of tube 12 and in structure-enhancing base 16 about mid-length of base 16. Externally threaded screw 28 extends through bore 18 in normal relation to a longitudinal axis of tube 12. It engages nut 29 which is received in a countersunk recess 29a formed in a bottom wall of handle part 24. A rivet may replace screw 28 and nut 29. A rivet may also supplant screw 26 and it related parts.


Parts 22 and 24 may be generally rectangular or oval; in the depicted embodiment, part 22 is generally oval and a dished area 25 is formed in part 24 to expose the medial part of tube 10 so that it can be grasped by a finger or thumb of a user as best understood in connection with FIG. 2.


Directional arrow 13 in FIGS. 3A and 3B indicates how tube 12 is swung about pivot pin 28 from its stored configuration of FIGS. 1 and 2 to its deployed configuration. The shorter vent tube of the FIG. 3B embodiment is used with relatively small fish.


Advertising material may be provided on the exterior side of handle part 24 is indicated in FIG. 4.


As best understood in connection with FIG. 5, first detents 36a, 36b, second detents 38a, 38b and third detents 40a, 40b are formed integrally with parts 22, 24. Detents 36a, 36b and 38a, 38b are positioned so that they capture tube 12 when said tube is in its stored configuration as depicted in FIG. 5. Opposed detents 40a, 40b holds tube 10 in its deployed position as depicted in FIG. 3. Where parts 22 and 24 are formed of a hard plastic, said detents are flexible and resilient enough to enable a user to force tube 12 past them when positioning said tube in its deployed or stored configuration. The user can hear a clicking sound as tube 12 passes by the detents into said deployed or stored configuration.


The bottom side of tool 10 is closed as depicted in FIG. 6.



FIGS. 7 and 8 depict the front and back, respectively, of a carrying case 50 having a pocket 52 formed on a front side thereof. Pocket 52 has an open top end and is sized to hold tool 10 so that part of said tool is exposed so that it can be grasped and removed from said pocket. Alternatively, tool 10 is easily removed by pressing on the bottom of pocket 52 so that tool 10 slides upwardly and out of said pocket. Swivel clip 54 which may be clipped to a belt or any other convenient item of clothing or other mounting place is connected to holder 50 by a suitable strip of material 56.



FIGS. 9 and 10 depict a second embodiment of carrying case 50. It includes flap 60 which is closed in FIG. 9 and open in FIG. 10. A first hook and loop fastener 62 secured to an underside of flap 60 releasably engages a second, complementary hook and loop fastener 64 secured to an exterior surface of pocket 52 when the flap is closed.


It only takes a few moments to vent a fish using this novel tool. Its use will greatly increase populations of protected fish.


It will thus be seen that the objects set forth above, and those made apparent from the foregoing description, are efficiently attained and since certain changes may be made in the above construction without departing from the scope of the invention, it is intended that all matters contained in the foregoing description or shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.


It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention herein described, and all statements of the scope of the invention that, as a matter of language, might be said to fall therebetween.

Claims
  • 1. A tool for saving the lives of captured fish that are swollen by expanded gases when brought to the surface, comprising: an elongate hollow tube of rigid construction having a proximal and a distal end; anda sharp cutting edge formed by a bevel formed in said distal end of said tube;a handle;said proximal end of said tube pivotally secured to said handle to facilitate handling of said tube;said handle including a first part and a second part that confront and abut one another, defining a hollow space between said first part and said second part for receiving said tube when said tube is in a stored configuration;a pivot pin extending between said first and second parts of said handle at a leading end of said handle;said tube having a bore formed in said proximal end to receive said pivot pin;said tube having a deployed position when fully pivoted in a first direction about said pivot pin;said tube having said stored position when fully pivoted about said pivot pin in a second direction opposite to said first direction;a detent formed in a leading end of said handle, in leading relation to said pivot pin;said detent extending into said hollow space between said first and second parts of said handle;said detent overlying said tube when said tube is in said deployed configuration;said detent formed of a flexible and resilient material so that said tube transiently displaces said detent formed in said leading end of said handle when said tube is displaced from said deployed configuration to said stored configuration and from said stored configuration to said deployed configuration;a detent formed in a trailing end of said handle;said detent formed in said trailing end of said handle extending into said hollow space between said first and second parts of said handle;said detent formed in said trailing end of said handle overlying said tube when said tube is in said stored configuration;said detent formed in said trailing end of said handle formed of a flexible and resilient material so that said tube transiently displaces said detent when said tube is displaced from said deployed configuration to said stored configuration and from said stored configuration to said deployed configuration;whereby a user grasps said proximal end of said tube and punctures a fish at a predetermined location in a body of the fish with the sharp cutting edge formed in the distal end of said tube to allow gases to flow out of the body of said fish until said body returns to a substantially unswollen condition; andwhereby said fish is resuscitated after said gases have been vented and before being released.
  • 2. The tool of claim 1, further comprising: said proximal end of said tube being enlarged in three dimensions with respect to a balance of said tube to structurally reinforce and said proximal end;said pivot pin extending through said enlarged, structurally reinforced proximal end of said tube.
  • 3. The tool of claim 1, further comprising: said second part of said handle having a dished area formed therein to expose a medial extent of said tube when said tube is in said stored configuration so that said medial extent of said tube can be grasped by a finger or thumb of a user.
  • 4. The tool of claim 1, further comprising: an other detent formed in a leading end of said handle, in trailing relation to said pivot pin;said other detent formed in said leading end of said handle extending into said hollow space between said first and second parts of said handle;said other detent formed in said leading end of said handle overlying said tube when said tube is in said stored configuration;said other formed in said leading end of said handle and formed of a flexible and resilient material so that said tube transiently displaces said other detent formed in said leading end of said handle when said tube is displaced from said deployed configuration to said stored configuration and from stored configuration to said deployed configuration.
  • 5. The tool of claim 1, further comprising: a carrying case for holding said tool when said tube is in said stored configuration.
  • 6. The tool of claim 5, further comprising: said carrying case including a clip so that said carrying case can be attached to a belt or other item of clothing.
  • 7. The tool of claim 5, further comprising: said carrying case including a pocket for slideably receiving said tool;a flap positioned at a top, open end of said pocket;said flap closing said pocket when said flap is in a first, closed position; andsaid flap opening said pocket when said flap is in a second, open position.
  • 8. The tool of claim 7, further comprising: a first hook and loop fastener secured to an underside of said flap;a second hook and loop fastener, complementary to said first hook and loop fastener, secured to an exterior surface of said pocket;whereby said flap is releasably secured in said first, closed position when said first hook and loop fastener engages said second hook and loop fastener.
US Referenced Citations (131)
Number Name Date Kind
80756 Miller Aug 1868 A
297375 Freund Apr 1884 A
358312 Weck Feb 1887 A
430299 Rand Jun 1890 A
444094 Drabble Jan 1891 A
445380 Philip Jan 1891 A
573475 Muller Dec 1896 A
578043 Pascoe Mar 1897 A
580235 Strum Apr 1897 A
613698 Martin Nov 1898 A
653807 Hofstetter Jul 1900 A
787064 Welter Apr 1905 A
824867 Houghton Jul 1906 A
837370 Yeaton Dec 1906 A
883648 Landers Mar 1908 A
987355 Godwin Mar 1911 A
1150387 Roberts Aug 1915 A
1259335 Acton Mar 1918 A
1475301 Hartleb Nov 1923 A
1485253 Devlin Feb 1924 A
1825077 Lawrence Sep 1931 A
2050194 Pflueger Aug 1936 A
2370958 Hellier Mar 1945 A
2414911 Temple Jan 1947 A
2571590 Logic Oct 1951 A
2749653 Patrowsky et al. Jun 1956 A
2786528 Wick Mar 1957 A
2929432 Funk et al. Mar 1960 A
RE24902 Dillard Dec 1960 E
3050896 Parker Aug 1962 A
3076457 Copen Feb 1963 A
3154985 Hermanns Nov 1964 A
3277893 Clark Oct 1966 A
3349821 Moeller Oct 1967 A
3352013 Fuller et al. Nov 1967 A
3382577 Rieder May 1968 A
3395704 Frey et al. Aug 1968 A
3403466 Young Oct 1968 A
3419924 Archibald Jan 1969 A
3448520 Fuller et al. Jun 1969 A
3797112 Paulson Mar 1974 A
3825961 Klein Jul 1974 A
4073083 Davis Feb 1978 A
4118881 McFarlane Oct 1978 A
4127957 Bourquin et al. Dec 1978 A
4129955 Schommer Dec 1978 A
4403797 Ragland, Jr. Sep 1983 A
4590702 Chestnutt May 1986 A
4674220 Bearce et al. Jun 1987 A
4706403 Reynolds Nov 1987 A
4713886 Ikeda Dec 1987 A
4833817 Silverthorn May 1989 A
4914853 Swindle Apr 1990 A
4915631 Robinson et al. Apr 1990 A
5099579 Chadwick Mar 1992 A
5119585 Camp Jun 1992 A
5136744 Allsop et al. Aug 1992 A
5250066 Lambert Oct 1993 A
5259399 Brown Nov 1993 A
5274948 Harrison et al. Jan 1994 A
5283920 Plummer Feb 1994 A
5307586 Palmer May 1994 A
5548917 Holwadel Aug 1996 A
5557874 Pietrandrea et al. Sep 1996 A
5581834 Collins Dec 1996 A
5600914 Tatar Feb 1997 A
5784830 Brumfield Jul 1998 A
5967012 Dummer et al. Oct 1999 A
5983555 Biel Nov 1999 A
6026607 Bukowski Feb 2000 A
6038808 Bergeron et al. Mar 2000 A
6065238 Carter et al. May 2000 A
6182541 Anderson et al. Feb 2001 B1
6205698 Richards Mar 2001 B1
6223441 Parsons May 2001 B1
6305118 Wacha Oct 2001 B1
6393756 Forney et al. May 2002 B1
6397513 Reed Jun 2002 B1
6421949 Schytte Jul 2002 B1
6434878 Milton Aug 2002 B1
6550177 Epple, Jr. Apr 2003 B1
6560913 Liao May 2003 B1
6625920 Rockwell Sep 2003 B1
6676638 Takagi et al. Jan 2004 B2
6679199 Bankston Jan 2004 B2
6681513 Hill Jan 2004 B2
6715804 Beers Apr 2004 B2
6769212 Grayson Aug 2004 B2
6802094 Seber et al. Oct 2004 B2
6846302 Shemesh et al. Jan 2005 B2
6880252 Drake Apr 2005 B1
6884237 Asbaghi Apr 2005 B2
6898891 Needham May 2005 B1
6926696 Mohammed Aug 2005 B2
7076910 Xifra Jul 2006 B1
7080423 Seber et al. Jul 2006 B2
7127922 Khounsombath et al. Oct 2006 B2
7146667 Elsener Dec 2006 B2
7223259 Marshall et al. May 2007 B2
7296354 Van Deursen et al. Nov 2007 B2
7325312 Janich Feb 2008 B1
7393344 Mohammed Jul 2008 B2
7407492 Gurtner Aug 2008 B2
7412914 Al-Majed Aug 2008 B2
7434350 Gomez et al. Oct 2008 B1
7444779 Hei Nov 2008 B2
7478497 Otsuka et al. Jan 2009 B2
7481137 Johnson Jan 2009 B1
20010016713 Takagi et al. Aug 2001 A1
20020004652 Asbaghi Jan 2002 A1
20020017048 Lam Feb 2002 A1
20020082560 Yang Jun 2002 A1
20020082564 Pham Jun 2002 A1
20030029075 Hebard Feb 2003 A1
20030163091 Bush et al. Aug 2003 A1
20040025408 Newman, Sr. Feb 2004 A1
20050105286 Dallas et al. May 2005 A1
20060195062 Gremel Aug 2006 A1
20070078403 Millerd Apr 2007 A1
20070089355 Burgett Apr 2007 A1
20070173772 Liversidge Jul 2007 A1
20070199229 Carder et al. Aug 2007 A1
20080110077 Callaway May 2008 A1
20080154217 Carrez et al. Jun 2008 A1
20080177235 DiBiasi Jul 2008 A1
20080236019 Gollahon Oct 2008 A1
20080301998 Gallo Dec 2008 A1
20090025273 Gauger Jan 2009 A1
20090069751 Curtis et al. Mar 2009 A1
20090105661 Chevallier et al. Apr 2009 A1
20090149836 Teachout et al. Jun 2009 A1