| 1 | IBDF18E1 ;ALB/CJM - ENCOUNTER FORM - PCE DEVICE INTERFACE utilities ;04-OCT-94 | 
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| 2 | ;;3.0;AUTOMATED INFO COLLECTION SYS;**1,3,38,36**;APR 24, 1997 | 
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| 3 | ; | 
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| 4 | GETPI(PI,QLFR,TYPE) ; -- returns information about the package interface | 
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| 5 | ;                    needed to map data to PCE DEVICE INTERFACE | 
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| 6 | ; | 
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| 7 | ; -- input - PI := pointer to the package interface file | 
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| 8 | ;                  MUST be passed by reference | 
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| 9 | ;          QLFR := pointer to the data qualifier | 
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| 10 | ;          TYPE := pointer to file 359.1, applies to hand print fields | 
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| 11 | ; | 
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| 12 | ; -- output  PI :="" if the mapping can not be determined | 
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| 13 | ;            PI(PI,"NODE") | 
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| 14 | ;            PI(PI,"VAL") | 
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| 15 | ;            PI(PI,"TXT") | 
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| 16 | ;            PI(PI,"HDR") | 
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| 17 | ;            PI(PI,"QLFR") | 
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| 18 | ;            PI(PI,"QTY") | 
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| 19 | ;      - if QLFR is passed, also returns PI(PI,QLFR,"IND") | 
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| 20 | ;      - if PI(PI,QLFR,"IND")=1,meaning there is independent mapping | 
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| 21 | ;        info for this qualifier - then also returns PI(PI,QLFR,"NODE")= | 
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| 22 | ;        <the node>,PI(PI,QLFR,"VAL")=<piece for the value>, | 
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| 23 | ;        PI(PI,QLFR,"TXT")=<the piece for txt>,PI(PI,QLFR,"HDR")= | 
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| 24 | ;        <piece for the hdr>, | 
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| 25 | ;        PI(PI,QLFR,"QLFR")=<piece for the qualifier code> | 
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| 26 | ;      - if TYPE is passed , also returns PI(PI,"TYPE",TYPE,"UNIT")= | 
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| 27 | ;        <unit code> and PI(PI,"TYPE",TYPE,"VTYPE")= | 
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| 28 | ;        <vitals type code> | 
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| 29 | ; | 
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| 30 | ;NOTE - it is assumed that entries in the PI() may be left hanging around,and if so they are valid | 
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| 31 | ; | 
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| 32 | N NODE,QNODE,PIECE,IEN | 
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| 33 | I '$G(PI) S PI="" G GETPIQ | 
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| 34 | ; | 
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| 35 | ; -- type of package interface must be for input | 
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| 36 | I $P($G(^IBE(357.6,PI,0)),"^",6)'=1 S PI="" G GETPIQ | 
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| 37 | ; | 
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| 38 | I '$D(PI(PI)) D  Q:'PI "" | 
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| 39 | .S NODE=$G(^IBE(357.6,PI,12)) | 
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| 40 | .S PI(PI,"NODE")=$P(NODE,"^") | 
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| 41 | .S PI(PI,"VAL")=$P(NODE,"^",2) | 
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| 42 | .S PI(PI,"TXT")=$P(NODE,"^",3) | 
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| 43 | .S PI(PI,"HDR")=$P(NODE,"^",4) | 
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| 44 | .S PI(PI,"QLFR")=$P(NODE,"^",5) | 
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| 45 | .S PI(PI,"QTY")=$P(NODE,"^",6) | 
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| 46 | ; | 
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| 47 | ; - if there is a 'PCE DIM PIECE, VARIABLE VALUE' node, execute code to | 
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| 48 | ; - determine value for PCE DIM PIECE, VALUE (since it is variable, it | 
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| 49 | ; - must be asked outside of the above dotted do | 
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| 50 | S X="",Y=VALUE X $G(^IBE(357.6,PI,21)) I X S PI(PI,"VAL")=X | 
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| 51 | ; | 
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| 52 | ;special rules apply for the VITALS node | 
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| 53 | I PI(PI,"NODE")="VITALS" D  Q:'PI "" | 
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| 54 | .S PI(PI,"VAL")=2 ;the value for the VITALS node goes to piece 2 | 
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| 55 | .; | 
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| 56 | .I 'TYPE D LOGERR^IBDF18E2(35791001,.FORMID,TYPE,$G(VALUE),PI) S PI(PI,"TYPE",+$G(TYPE),"VTYPE")="",PI(PI,"TYPE",+$G(TYPE),"UNIT")="" Q | 
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| 57 | .; | 
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| 58 | .;may have already gotten | 
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| 59 | .I $D(PI(PI,"TYPE",TYPE)) Q | 
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| 60 | .; | 
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| 61 | .S IEN=$O(^IBE(357.6,PI,13,"B",TYPE_";IBE(359.1,","")) | 
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| 62 | .I 'IEN D LOGERR^IBDF18E2(3576001,.FORMID,TYPE,$G(VALUE),PI) S PI(PI,"TYPE",TYPE,"VTYPE")="",PI(PI,"TYPE",TYPE,"UNIT")="" Q | 
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| 63 | .S NODE=$G(^IBE(359.1,TYPE,0)) | 
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| 64 | .S PI(PI,"TYPE",TYPE,"UNIT")=$P(NODE,"^",13) | 
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| 65 | .S PI(PI,"TYPE",TYPE,"VTYPE")=$P(NODE,"^",12) | 
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| 66 | .S PI(PI,"TYPE",TYPE,"DATATYPE")=$P($G(^IBE(359.1,TYPE,10)),"^",1) | 
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| 67 | ; | 
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| 68 | ;if not VITALS, and there is a QLFR, get independent mapping info if not gotten previously | 
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| 69 | I PI(PI,"NODE")'="VITALS",QLFR I '$D(PI(PI,QLFR,"IND")) D  Q:'PI "" | 
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| 70 | .S PI(PI,QLFR,"CODE")=$P($G(^IBD(357.98,QLFR,0)),"^",2) | 
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| 71 | .S IEN=$O(^IBE(357.6,PI,13,"B",QLFR_";IBD(357.98,","")) | 
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| 72 | .I 'IEN D LOGERR^IBDF18E2(3576002,.FORMID,$G(TYPE),$G(VALUE),PI,$G(QLFR)) S PI(PI,QLFR,"IND")=0 Q | 
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| 73 | .S NODE=$G(^IBE(357.6,PI,13,IEN,0)) | 
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| 74 | .S PI(PI,QLFR,"IND")=$P(NODE,"^",3) | 
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| 75 | .Q:'PI(PI,QLFR,"IND") | 
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| 76 | .S QNODE=$P(NODE,"^",4) S:QNODE="" QNODE=PI(PI,"NODE") S PI(PI,QLFR,"NODE")=QNODE | 
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| 77 | .S PIECE=$P(NODE,"^",8) S:('PIECE)&(PI(PI,"NODE")=PI(PI,QLFR,"NODE")) PIECE=PI(PI,"QLFR") S PI(PI,QLFR,"QLFR")=PIECE | 
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| 78 | .; | 
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| 79 | .;if the node isn't different for the qualifier then the value,text,and header can not be mapped independently | 
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| 80 | .I PI(PI,"NODE")=PI(PI,QLFR,"NODE") D | 
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| 81 | ..S PI(PI,QLFR,"VAL")=PI(PI,"VAL"),PI(PI,QLFR,"TXT")=PI(PI,"TXT"),PI(PI,QLFR,"HDR")=PI(PI,"HDR") | 
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| 82 | .E  S PI(PI,QLFR,"VAL")=$P(NODE,"^",5),PI(PI,QLFR,"TXT")=$P(NODE,"^",6),PI(PI,QLFR,"HDR")=$P(NODE,"^",7) | 
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| 83 | .;must at least know the piece to place the returned value | 
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| 84 | .I (PI(PI,QLFR,"NODE")="")!('PI(PI,QLFR,"VAL")) S PI="" | 
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| 85 | ; | 
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| 86 | ;must at least know the node and the piece to place the returned value | 
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| 87 | I 'QLFR I (PI(PI,"NODE")="")!('PI(PI,"VAL")) S PI="" | 
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| 88 | GETPIQ Q PI | 
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| 89 | ; | 
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| 90 | SETTEMP ; -- sets values for the field into TEMP() | 
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| 91 | ;    values are merged for fields that consist of a collection | 
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| 92 | ; | 
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| 93 | ; -- Output   QCODE := <qualifier code> | 
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| 94 | ;              PHDR := <header piece> | 
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| 95 | ;              PVAL := <value piece> | 
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| 96 | ;              PTXT := <text piece> | 
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| 97 | ;             PQLFR := <qualifier piece> | 
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| 98 | ;               SUB := <PCE GDI node> | 
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| 99 | ;              NODE := <the value of the node> | 
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| 100 | ;              PLEX := <clinical lexicon piece, for use with diag.> | 
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| 101 | ; | 
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| 102 | N QCODE,PHDR,PVAL,PTXT,PQLFR,SUB,NODE,PLEX,PQTY,SAVEPI | 
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| 103 | S SAVEPI=PI | 
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| 104 | Q:'PI | 
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| 105 | S PI=$$GETPI(.PI,QLFR,TYPE) I 'PI D LOGERR^IBDF18E2(3576003,.FORMID,$G(TYPE),$G(VALUE),SAVEPI,$G(QLFR)) Q | 
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| 106 | ; | 
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| 107 | S QCODE=$S(QLFR:PI(PI,QLFR,"CODE"),1:"") | 
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| 108 | ; | 
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| 109 | ;determine if QCODE should be passed as VALUE | 
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| 110 | I $P($G(^IBE(357.6,PI,20)),"^") N VALUE S VALUE=QCODE | 
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| 111 | ; | 
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| 112 | S PQTY=PI(PI,"QTY") | 
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| 113 | ;mapping info could come from several different sources depending on whether or not a data qualifier is involved or the node=VITALS or ENCOUNTER | 
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| 114 | I QLFR,PI(PI,"NODE")'="VITALS",PI(PI,"NODE")'="ENCOUNTER" I PI(PI,QLFR,"IND") D | 
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| 115 | .S PHDR=PI(PI,QLFR,"HDR"),PVAL=PI(PI,QLFR,"VAL"),PTXT=PI(PI,QLFR,"TXT"),PQLFR=PI(PI,QLFR,"QLFR"),SUB=PI(PI,QLFR,"NODE") | 
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| 116 | E  D | 
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| 117 | .S PHDR=PI(PI,"HDR"),PVAL=PI(PI,"VAL"),PTXT=PI(PI,"TXT"),PQLFR=PI(PI,"QLFR"),SUB=PI(PI,"NODE") | 
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| 118 | ; | 
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| 119 | ;the ENCOUNTER node is treated differently, because there is always just one of them | 
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| 120 | S:SUB'="ENCOUNTER" NODE=$G(TEMP(SUB,$P(FID,"("),+ITEM)) | 
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| 121 | S:SUB="ENCOUNTER" NODE=$G(PXCA("ENCOUNTER")) | 
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| 122 | ; | 
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| 123 | ; -- define clin lex pointer if from data enty  ($d(ibdf(item))) | 
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| 124 | ;    if from scanning clin lex pointer defined in ibdf18e | 
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| 125 | S PLEX=0 I SUB="DIAGNOSIS/PROBLEM" D | 
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| 126 | .S PLEX=3 | 
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| 127 | .I $G(ITEM)'="" I $D(IBDF(ITEM)) S LEX=$P(IBDF(ITEM),"^",5) | 
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| 128 | ; | 
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| 129 | ;the VITALS node is also treated differently | 
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| 130 | I SUB="VITALS" D | 
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| 131 | .I $G(PI(PI,"TYPE",TYPE,"DATATYPE"))="f" S VALUE=+VALUE ; set floating point values to M values | 
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| 132 | .S $P(NODE,"^")=PI(PI,"TYPE",TYPE,"VTYPE"),$P(NODE,"^",3)=PI(PI,"TYPE",TYPE,"UNIT"),$P(NODE,"^",2)=VALUE,$P(NODE,"^",4)=+$G(PXCA("ENCOUNTER")) | 
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| 133 | ;these are nodes other than VITALS and ENCOUNTER | 
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| 134 | E  D | 
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| 135 | .;merge the data into the node | 
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| 136 | .; | 
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| 137 | .; -- for second provider entry put in provider node, always put | 
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| 138 | .;    primary in encounter node | 
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| 139 | .I SUB="ENCOUNTER",PVAL=4,$P(NODE,"^",4) D  Q | 
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| 140 | ..I QCODE="P",$P(NODE,"^",15)'="P" S PXCA("PROVIDER",$P(NODE,"^",4))=$P(NODE,"^",15),$P(NODE,"^",4)=VALUE,$P(NODE,"^",15)=QCODE Q | 
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| 141 | ..S PXCA("PROVIDER",VALUE)=QCODE Q | 
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| 142 | .; | 
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| 143 | .S NARR=+$G(NARR) ; define Narr for manual data entry | 
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| 144 | .; | 
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| 145 | .;  -- change to add modifiers to visit code selected | 
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| 146 | .; | 
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| 147 | .I $P(NODE,"^",PVAL)="" D | 
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| 148 | .. S:$S(NARR=0:1,1:$P(FID,"(",2)'="N") $P(NODE,"^",PVAL)=VALUE | 
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| 149 | .. ;D MODTEMP | 
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| 150 | .I PTXT S:$P(FID,"(",2)="N"&NARR TEXT=VALUE I $S(NARR=0:$L($P(NODE,"^",PTXT))<$L(TEXT),$P(FID,"(",2)="N":TEXT'="",1:0) S $P(NODE,"^",PTXT)=TEXT | 
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| 151 | .I PHDR I $L($P(NODE,"^",PHDR))<$L(HEADER) S $P(NODE,"^",PHDR)=HEADER | 
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| 152 | .I PQTY S $P(NODE,"^",PQTY)=$G(QUANTITY) | 
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| 153 | .; | 
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| 154 | .; -- insert clin lex pointer into temp arry and re-initialize | 
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| 155 | .I $G(PLEX),$G(LEX) S $P(NODE,"^",PLEX)=LEX | 
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| 156 | .S LEX=0 | 
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| 157 | .; | 
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| 158 | .I QCODE'="" S $P(NODE,"^",PQLFR)=$S($P(NODE,"^",PQLFR)'="":$P(NODE,"^",PQLFR)_","_QCODE,1:QCODE) | 
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| 159 | ; | 
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| 160 | ;- Prevent 'No classification' node from being set in TEMP array | 
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| 161 | ;- (not dynamic) | 
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| 162 | S:SUB'="ENCOUNTER"&(SUB'="IBD NOCLASSIFICATION") TEMP(SUB,$P(FID,"("),+ITEM)=NODE | 
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| 163 | D:SUB="PROCEDURE" MODTEMP | 
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| 164 | ; | 
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| 165 | ;- Set Encounter and 'No classification' nodes into PXCA array | 
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| 166 | S:SUB="ENCOUNTER"!(SUB="IBD NOCLASSIFICATION") PXCA(SUB)=NODE | 
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| 167 | D:SUB="ENCOUNTER" MODTEMP | 
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| 168 | Q | 
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| 169 | MODTEMP ;-- Set up TEMP(SUB,$P(FID,"("),+ITEM, "MODIFIER array | 
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| 170 | ;   the CPT Modifier information is stored in the selection file(357.3) | 
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| 171 | ; | 
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| 172 | ; | 
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| 173 | N MCOUNT,MOD | 
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| 174 | I $D(^IBE(357.3,+$G(SLCTN),3)) D | 
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| 175 | . S MCOUNT=0 | 
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| 176 | . F MOD=0:0 S MOD=$O(^IBE(357.3,SLCTN,3,MOD)) Q:'MOD  D | 
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| 177 | .. S MCOUNT=MCOUNT+1 | 
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| 178 | ..S TEMP(SUB,$P(FID,"("),+ITEM,"MODIFIER",MCOUNT)=$P($G(^IBE(357.3,SLCTN,3,MOD,0)),"^") | 
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| 179 | .S:MCOUNT>0 TEMP(SUB,$P(FID,"("),+ITEM,"MODIFIER",0)=MCOUNT | 
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| 180 | I $D(IBDF(+ITEM,"MODIFIER")) D | 
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| 181 | . S MCOUNT=+$G(TEMP(SUB,$P(FID,"("),+ITEM,"MODIFIER",0)) | 
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| 182 | . S MOD=0 F  S MOD=$O(IBDF(+ITEM,"MODIFIER",MOD)) Q:'MOD  D | 
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| 183 | .. S MCOUNT=MCOUNT+1 | 
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| 184 | .. S TEMP(SUB,$P(FID,"("),+ITEM,"MODIFIER",MCOUNT)=IBDF(+ITEM,"MODIFIER",MOD) | 
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| 185 | . S TEMP(SUB,$P(FID,"("),+ITEM,"MODIFIER",0)=MCOUNT | 
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| 186 | Q | 
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