| 1 | LRLNCX  ;DALOI/FS- ROUTINE TO EXTRACT VISTA TEST NAMES FOR LOINC MAPPING;1-FEB-2001 | 
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| 2 | ;;5.2;LAB SERVICE;**232,278**;Sep 27,1994 | 
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| 3 | ;; | 
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| 4 | ; Field Separator = "|" | 
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| 5 | ;LR60 = IEN from ^LAB(60 | 
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| 6 | ;LRSP = SPECIMEN pointer to ^LAB(61 | 
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| 7 | ;LR60N = TEST NAME FOR ^LAB(60 - *? are translated to spaces for RELMA | 
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| 8 | ;LRSPN = SPECIMEN NAME - attempt to get LOINC Abbrv if linked | 
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| 9 | ;LRUNIT = REPORTING UNITS FROM ^LAB(60,IEN,1,LRSP,0) | 
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| 10 | ;1-70|WBC BLD K/cmm | 
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| 11 | ;Capture the output into a text file to import into Relma. | 
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| 12 | ;Remove 1st and last lines before importing into Relma | 
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| 13 | EN ; | 
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| 14 | K ^TMP("LR LOINC",$J),LREND,LRAA | 
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| 15 | D MSG W ! | 
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| 16 | G END:$G(LREND) | 
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| 17 | S LRFS="|",LR60=0,LR60N="" | 
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| 18 | G @LRANS | 
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| 19 | 3 ;Selected all tests | 
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| 20 | 2 ;Selected accession area - screen on LRAA(#) | 
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| 21 | D ASK G END:$G(LREND) | 
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| 22 | F  S LR60N=$O(^LAB(60,"B",LR60N)) Q:LR60N=""  D | 
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| 23 | . S LR60=0 F  S LR60=$O(^LAB(60,"B",LR60N,LR60)) Q:LR60<1  D | 
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| 24 | . . Q:$G(^LAB(60,"B",LR60N,LR60)) | 
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| 25 | . . I '$D(^LAB(60,LR60,0))#2 K ^LAB(60,"B",LR60N,LR60) Q | 
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| 26 | . . Q:$P(^LAB(60,LR60,0),U,3)="N"!($P(^(0),U,3)="")  D OUT | 
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| 27 | Q | 
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| 28 | 1 ;create individual test list. | 
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| 29 | K ^TMP("LR LOINC",$J) | 
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| 30 | S ^TMP("LR LOINC",$J,0)=DT_U_DT_U_"LRLNCX TEST LIST" | 
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| 31 | K DIR | 
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| 32 | S DIR(0)="PO^60:NQEMZ" | 
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| 33 | S DIR("S")="I $L($P(^(0),U,3)),$P(^(0),U,3)'=""N"",$P($P(^(0),U,5),"";"",2)" | 
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| 34 | F  D ^DIR Q:Y<1  S ^TMP("LR LOINC",$J,Y(0,0)_+Y,0)=+Y_U_Y(0,0) | 
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| 35 | I $O(^TMP("LR LOINC",0))'="" D ASK G END:$G(LREND) | 
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| 36 | S LRNX=0 | 
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| 37 | ;W !,$TR($$SITE^VASITE,U,"|")_"|"_$$FMTE^XLFDT($$NOW^XLFDT,1) | 
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| 38 | F  S LRNX=$O(^TMP("LR LOINC",$J,LRNX)) Q:LRNX=""  D | 
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| 39 | . S LR60=$G(^TMP("LR LOINC",$J,LRNX,0)) | 
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| 40 | . Q:'$G(LR60) | 
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| 41 | . I $L($P(LR60,U,2)) S LR60N=$P(LR60,U,2),LR60=+LR60 D OUT | 
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| 42 | G END | 
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| 43 | Q | 
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| 44 | OUT ; | 
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| 45 | I $G(LRAA) S LRNOP=1 D  Q:LRNOP | 
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| 46 | . S LR8=0 F  S LR8=$O(^LAB(60,LR60,8,LR8)) Q:LR8<1!('$G(LRNOP))  D | 
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| 47 | . . I $D(LRAA(+$P($G(^LAB(60,LR60,8,LR8,0)),U,2)))#2 S LRNOP=0 | 
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| 48 | S LRSP=0 F  S LRSP=$O(^LAB(60,LR60,1,LRSP)) Q:LRSP<1  D | 
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| 49 | . S LRSP0=$G(^(LRSP,0)),LR61=$G(^LAB(61,LRSP,0)),LRUNIT=$P(LRSP0,U,7) | 
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| 50 | . S LRSPN=$P(LR61,U),LR64061=$P(LR61,U,9),LRLSPN=$P(LR61,U,8) | 
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| 51 | . K LR64N I LR64061 S LR64N=$P($G(^LAB(64.061,LR64061,0)),U,2) | 
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| 52 | . S LRSPN=$S($D(LR64N):LR64N,$L(LRLSPN):LRLSPN,1:LRSPN) | 
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| 53 | . D WRT | 
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| 54 | Q | 
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| 55 | WRT ;LR60N [test name] - translate "*" or "?" to spaces | 
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| 56 | W !,$E(LR60_"-"_LRSP_LRFS_$TR(LR60N,"*?"," ")_" "_LRSPN_LRFS_LRUNIT,1,80) | 
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| 57 | Q | 
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| 58 | ASK ; | 
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| 59 | K DIR S DIR(0)="Y",DIR("A")="Ready to Capture" | 
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| 60 | D ^DIR S:$D(DIRUT) LREND=1 | 
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| 61 | Q | 
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| 62 | MSG ; | 
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| 63 | W @IOF | 
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| 64 | W !,"(NOTE) You should use the Add/Edit Topography Specimen HL7 Code" | 
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| 65 | W !,"[LR LOINC LEDI HL7 CODE] option before you proceed." | 
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| 66 | W !," -----    -----     -----     ----" | 
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| 67 | W !,"This option will create a Local Master Observation File (LMOF)" | 
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| 68 | W !,"from your local LABORATORY TEST (#60) file." | 
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| 69 | W !!,"Only 'CH' subscripted test having a dataname and having a type" | 
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| 70 | W !,"of 'BOTH', 'INPUT' or 'OUTPUT' will be extracted." | 
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| 71 | W !,"The LMOF file will use the vertical bar '|' as the field separator." | 
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| 72 | W !,"The 1st. field is the test internal number and internal number" | 
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| 73 | W !,"of the spec. (i.e. 1-72 will represent test 1 and specimen 72)." | 
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| 74 | W !,"The 2nd field contains |test name<SP>specimen." | 
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| 75 | W !,"The 3rd field is the reporting unit only (if any)." | 
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| 76 | W !!,"You will need to capture this printout into a text file." | 
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| 77 | W !,"Using a text editor, remove extraneous lines from the beginning" | 
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| 78 | W !,"and the end of the file so that only extracted test names remain." | 
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| 79 | W !,"Save the edited file. Use this file in the import function of the" | 
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| 80 | W !,"Regenstrief LOINC Mapping Assistant (RELMA)." | 
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| 81 | W !,"Consult the Regenstrief RELMA documentation for specifics." | 
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| 82 | K DIR S DIR(0)="E" D ^DIR S:$D(DIRUT) LREND=1 Q:$G(LREND) | 
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| 83 | SEL ;Select method of extraction | 
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| 84 | K DIR,LRAA | 
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| 85 | S (LRANS,LREND)=0 | 
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| 86 | S DIR(0)="SO^1:Individual single test;2:By Accession Area;3:All Test" | 
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| 87 | S DIR("A")="Select extraction criteria" | 
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| 88 | D ^DIR S:$D(DIRUT) LREND=1 | 
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| 89 | I Y>0 S LRANS=Y | 
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| 90 | I LRANS=2 D | 
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| 91 | . K DIR | 
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| 92 | . S DIR(0)="PO^68:ENZM",DIR("A")="Select accession area " | 
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| 93 | . S DIR("S")="I $P(^(0),U,17)'=""S""" | 
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| 94 | . F  D ^DIR Q:Y<1  D | 
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| 95 | . . S LRAA=Y | 
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| 96 | . . S LRAA(+LRAA)=LRAA,DIR("A")="Select another accession area " | 
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| 97 | Q | 
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| 98 | END ; | 
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| 99 | K DIR,DIRUT,LR60,LR60N,LR61,LR64061,LR64N,LR8,LRAA,LRANS,LREND,LRFS,LRLSPN,LRNOP,LRNX,LRSITE,LRSP,LRSP0,LRSPN,LRUNIT,Y | 
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| 100 | Q | 
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