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DICOM PS3.17 2020a - Explanatory Information​

Page 811​

Attribute​

Tag​

Value​

Comment​

Columns​

(0028,0011)​

32​

This case is a non-square​

 

 

 

image​

Bits Allocated​

(0028,0100)​

32​

 

Pixel Aspect Ratio​

(0028,0034)​

1\1​

 

Float Pixel Padding Value​

(0028,0122)​

-200​

 

Float Pixel Padding Range Limit​

(0028,0124)​

-100​

 

Float Pixel Data​

(7FE0,0008)​

(44 times) -150, -0.1356, 1.317, (28​Forconvenience","isused​

 

 

times) -150, -0.986, 0.4402, -0.0251,​toseparatethevalues,type​

 

 

0.6077, 0.2982, 0.0872, 2.6927,​

is OF​

 

 

2.1434, -0.5543, -0.3014, -150 etc.​

 

Table BBBB.2-2. Example data for the Dimension Organization Module​

Attribute​

Tag​

Value​

Comment​

Dimension Organization Sequence​

(0020,9221)​

 

 

>Dimension Organization UID​

(0020,9164)​

1.2.3.5.6​

Sample UID​

Dimension Organization Type​

(0020,9311)​

3D​

 

Dimension Index Sequence​

(0020,9222)​

1​

 

Item 1​

First Item describing Stack ID​

 

 

>Dimension Index Pointer​

(0020,9165)​

(0020,9056)​

 

>Functional Group Pointer​

(0020,9167)​

(0020,9111)​

 

>Dimension Organization UID​

(0020,9164)​

1.2.3.5.6​

 

>Dimension Description Label​

(0020,9421)​

Stack ID​

 

Item 2​

Second Item describing In-Stack Position Number​

 

>Dimension Index Pointer​

(0020,9165)​

(0020,9057)​

 

>Functional Group Pointer​

(0020,9167)​

(0020,9111)​

 

>Dimension Organization UID​

(0020,9164)​

1.2.3.5.6​

 

>Dimension Description Label​

(0020,9421)​

In-Stack Position Number​

 

Table BBBB.2-3. Example data for the Pixel Measures Macro​

Attribute​

Tag​

Value​

Comment​

Pixel Measures Sequence​

(0028,9110)​

1​

 

>Pixel Spacing​

(0028,0030)​

3.75\3.75​

 

>Slice Thickness​

(0018,0050)​

5​

 

Table BBBB.2-4. Example data for the Frame Content Macro​

Attribute​

Tag​

Value​

Comment​

Frame Content Sequence​

(0020,9111)​

 

 

>Frame Acquisition Number​

(0020,9156)​

1​

 

>Dimension Index Values​

(0020,9157)​

1\15​

 

>Stack ID​

(0020,9056)​

1​

 

>In-Stack Position Number​

(0020,9057)​

15​

 

>Frame Comments​

(0020,9158)​

...​

 

>Frame Label​

(0020,9453)​

...​

 

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Page 812​ DICOM PS3.17 2020a - Explanatory Information​

Table BBBB.2-5. Example data for the Identity Pixel Value Transformation Macro​

Attribute​

Tag​

Value​

Comment​

Pixel Value Transformation Sequence​

(0028,9145)​

 

Single item with fixed values​

>Rescale Intercept​

(0028,1052)​

0​

 

>Rescale Slope​

(0028,1053)​

1​

 

>Rescale Type​

(0028,1054)​

US​

 

Table BBBB.2-6. Example data for the Frame VOI LUT With LUT Macro​

Attribute​

Tag​

Value​

Comment​

Frame VOI LUT Sequence​

(0028,9132)​

 

 

>Window Center​

(0028,1050)​

0​

 

>Window Width​

(0028,1051)​

50​

Covering -25 to 25​

Table BBBB.2-7. Example data for the Real World Value Mapping Macro​

Attribute​

Tag​

Value​

Comment​

Real World Value Mapping Sequence​

(0040,9096)​

 

 

>Double Float Real World Value First Value Mapped​

(0040,9214)​

-16.739​

 

>Double Float Real World Value Last Value Mapped​

(0040,9213)​

21.434​

 

>Real World Value Intercept​

(0040,9224)​

0​

Identity​

 

 

 

transformation​

>Real World Value Slope​

(0040,9225)​

1​

Identity​

 

 

 

transformation​

>Measurement Units Code Sequence​

(0040,08EA)​

 

 

>>IncludeTable8.8-1"CodeSequenceMacroAttributes"​

 

(UCUM, {t}, "t")​

 

>Quantity Definition Sequence​

(0040,9220)​

 

 

>>Include Table 10-2 "Content Item Macro Attributes​

 

(113068, DCM,​

 

Description"​

 

"Student's T-test")​

 

The Palette Color Lookup Table used is the Spring Color Palette (see Figure BBBB.1-3 Resulting Color LUT Spring).​

This can be described as follows through the Palette Color Lookup Table:​

Red has a constant value of 255​

Green has a linear segment that starts at 0 and ends at 255​

Blue has a linear segment that starts at 255 and ends at 0​

Using the Segmented Color Lookup Table all three can be described by a discrete segment with length 1 to specify the starting value​ (0,1,value) followed by a linear segment of length 255 with the end-value (1,255,end-value).​

Table BBBB.2-8. Example data for the Palette Color Lookup Table Module​

Attribute​

Tag​

Value​

Comment​

Red Palette Color Lookup Table Descriptor​

(0028,1101)​

256\0\8​

 

GreenPaletteColorLookupTableDescriptor​

(0028,1102)​

256\0\8​

 

Blue Palette Color Lookup Table Descriptor​

(0028,1103)​

256\0\8​

 

Segmented Red Palette Color Lookup Table​

(0028,1221)​

0,1,255,1,255,255​ For convenience "," is used to​

Data​

 

 

separate the values, type is OW​

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DICOM PS3.17 2020a - Explanatory Information​

Page 813​

Attribute​

Tag​

Value​

Comment​

Segmented Green Palette Color Lookup​

(0028,1222)​

0,1,0,1,255,255​

For convenience "," is used to​

Table Data​

 

 

separate the values, type is OW​

Segmented Blue Palette Color Lookup Table​

(0028,1223)​

0,1,255,1,255,0​

For convenience "," is used to​

Data​

 

 

separate the values, type is OW​

300

 

LUT Spring

 

 

 

 

 

 

 

 

250

 

 

 

 

 

 

200

 

 

 

 

 

 

 

 

 

 

 

 

R

150

 

 

 

 

 

G

 

 

 

 

 

 

B

100

 

 

 

 

 

 

50

 

 

 

 

 

 

0

 

 

 

 

 

 

0

50

100

150

200

250

300

Figure BBBB.1-3. Resulting Color LUT Spring​

The values specifying the range to be mapped to the Color LUT are given by the Minimum Stored Value Mapped and the Maximum​ Stored Value mapped.​

Table BBBB.2-9. Example data for the Stored Value Color Range Macro​

Attribute​

Tag​

Value​

Comment​

Minimum Stored Value Mapped​

(0028,1231)​

-16.739​

Corresponds to the first LUT entry​

 

 

 

(255,0,255).​

Maximum Stored Value Mapped​

(0028,1232)​

21.434​

Corresponds to the last LUT entry​

 

 

 

(255,255,0).​

Table BBBB.2-10. Example data for the Parametric Map Frame Type Macro​

Attribute​

Tag​

Value​

Comment​

Parametric Map Frame Type Sequence​

(0040,9092)​

 

 

>Frame Type​

(0008,9007)​

DERIVED\PRIMARY\FMRI\T_TEST​

 

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Page 814​

DICOM PS3.17 2020a - Explanatory Information​

- Standard -​

DICOM PS3.17 2020a - Explanatory Information​

Page 815​

CCCC Populating The Simplified Echo​

Procedure Report Template (Informative)​

This Annex provides guidance to understand and populate the TID 5300 “Simplified Echo Procedure Report” and its sub-templates.​ For implementers familiar with the TID 5200 “Echocardiography Procedure Report”, which is largely replaced by TID 5300, some re-​ lationships and differences are also explained.​

CCCC.1 Structure Overview​

Measurements in this template (except for the Wall Motion Analysis) are collected into one of three containers, each with a specific​ sub-template and constraints appropriate to the purpose of the container.​

•​Pre-coordinated Measurements​

•​Are fully standardized measurements (many taken from the ASE practice guidelines).​

•​Each has a single pre-coordinated standard code that fully captures the semantics of the measurement.​

•​The only modifiers permitted are to indicate coordinates where the measurement was taken, provide a brief display label, and​ indicate which of a set of repeated measurements is the preferred value. Other modifiers are not permitted.​

•​Post-coordinated Measurements​

•​Are measurements for which DICOM has not established pre-coordinated codes, but that are performed with enough regularity​ to merit configuration and capturing the full semantics of the measurement. For example these measurements may include those​ configured on the Ultrasound System by the vendor or user site. Some of these may be variants of the Pre-coordinated Measure-​ ments.​

•​A set of mandatory and conditional modifiers with controlled vocabularies capture the essential semantics in a uniform way.​

•​A single pre-coordinated code is also provided so that when the same type of measurement is encountered in the future, it is not​ necessarytoparseandevaluatethefullconstellationofmodifervalues.Sincethismeasurementhasnotbeenfullystandardized,​ the pre-coordinated code may use a private coding scheme (e.g., from the vendor or user site).​

•​Adhoc Measurements​

•​Are non-standardized measurements that do not merit the effort to track or configure all the details necessary to populate the​ set of modifiers required for a post-coordinated measurement.​

•​The measurement code describes the elementary property measured.​

•​Modifiers provide a brief display label and indicate coordinates where the measurement was taken. Other modifiers are not per-​ mitted.​

CCCC.2 Use Cases​

CCCC.2.1 Use Case 1: Store and Extract Specific Measurement​

TheuserwishestoperformmeasurementsontheUltrasoundSystem,storethemtothePACSandlaterhaveaspecificmeasurement​ (sayABC)automaticallydisplayedintheoverlayorautomaticallyinsertedintoareportpageonthereviewsystem.Thisdoesnotrequire​ the receiver to understand any of the semantics of the measurement.​

CCCC.2.1.1 Configuration​

TheUltrasoundSystemisconfiguredtoencodeaparticularmeasurementusingaspecificpre-coordinatedcode(andcodemeaning).​

- Standard -​

Источник: https://studfile.net/preview/14585770/