| Literature DB >> 20098548 |
Abstract
A helical tomotherapy machine combines a straight 6 MV linear accelerator mounted on a ring gantry with CT technology for image-guided intensity-modulated radiation therapy (IMRT) treatment. A fan beam created by the collimator and jaws produces a maximum of 40 x 5 cm(2) field size at the isocenter. The gantry and hence the fan beam rotates at a constant speed while the couch moves linearly into the gantry bore, thus producing a helical delivery. The beam is modulated by a 64-leaf binary multileaf collimator (MLC), which enables IMRT treatment. The linac can be operated at a lower voltage (3.5 MV) and dose rate to produce megavoltage CT images, which are used for image-guided patient setup. We have installed two such units since 2004 and treated more than 2000 patients. The machine comes "precommissioned" from the manufacturer, and the beam characteristics and IMRT plans on phantom are measured and compared with manufacturer's data after acceptance tests are performed on site. Our experience with commissioning the machines and periodic quality assurance with tolerance limits for optimal performance are described.Entities:
Keywords: Beam commissioning; helical tomotherapy; image-guided IMRT; quality assurance
Year: 2009 PMID: 20098548 PMCID: PMC2807140 DOI: 10.4103/0971-6203.56078
Source DB: PubMed Journal: J Med Phys ISSN: 0971-6203
Figure 1Tomotherapy HI ART II machine
Comparison of tomotherapy machine and a conventional linac
| No flattening filter | Has flattening filter |
| Cone beam | Flat beam |
| Beam up to 5 × 40 cm2 | Beam up to 40 × 40 cm2 |
| 85 cm SAD | 100 cm SAD |
| No light field | Has light field |
| Fixed and movable lasers | Fixed lasers |
| Xe detector array | No such detectors |
| MVCT mode for imaging from | kVCT mode for imaging with the |
| same source | additional source |
| Pneumatically driven MLC leaves | Motorized MLC leaves |
| Helical treatment | Fixed gantry or arc therapy |
| Inverse planning only | Forward and inverse planning |
Figure 2Cylindrical on-axis and off-axis targets and cheese phantom setup for measurement. The CT image of the cheese phantom (left) shows an on-axis and two off-axis target structures. The cheese phantom has multiple holes in which A1SL ion chambers can be inserted for simultaneous dose measurement at multiple points as shown on the right
Acceptance tests of a tomotherapy Hi-ART machine
| System start up | - Upon power up the red lasers turn on and move to home position | Functional |
| - Operator station (OS) computer turns on and operator logs in | ||
| - System initializes, couch and laser positions are displayed on position control panel | ||
| System shut down | - Operator station computer turned off, key turned off on the machine and switched off. Red lasers turn off and the power distribution unit is turned off | Functional |
| Manual couch control | - Couch moves up or down and in or out only when the enable button underneath is pressed | Functional |
| DICOM import | - Import of DICOM images (kVCT) and structures to the system and display at the operator and planning station (PS) | Images can be viewed at OS and PS |
| Safety interlock | - Mode switch: Imaging MVCT can not be formed when the mode switch is at treat | Functional |
| - Visual and audible indicators working | ||
| - Door interlock working – checked during MVCT imaging procedure | ||
| - Stop button on position control panel (PCP) working | ||
| - Each emergency stop inside and outside the treatment room and on status control shuts down power to the gantry | ||
| Laser alignment | Verify home positions for movable red lasers where they overlap the fixed overhead green lasers within ±1 mm | Verified |
| Create a MVCT scan procedure for the cylindrical cheese phantom with the dowel at 5 mm position out. Red lasers move from home position to 2, 8 and 4 cm in the X, Y and −Z directions, respectively. | ||
| Dose during MVCT scan is less than 4 cGy | ||
| MVCT images are reconstructed and viewable from Reconstruction tab. | ||
| Lateral and vertical shift for the reference “cross” on the MVCT image is ±1 mm and 5±1 mm, respectively. | ||
| Treatment delivery test | Treatment plans for “on axis” and “off axis” targets on a cheese phantom are delivered. The measured dose at each point is within ± 3% at ± 3 mm of the calculated point. | Verified |
| Interrupted treatment completion test | Two films are exposed sequentially with uninterrupted and interrupted but completed procedures. Visual inspection of the films shows no discontinuity and point dose difference is within 3%. | Verified |
Figure 3 A-CMatch of PDD, cone and penumbra profiles measured on site and at manufacturer's bunker
Figure 4 (A) and (B)Comparison of point dose measurements at on-axis and off-axis targets in a cheese phantom
Quality assurance of a tomotherapy Hi-ART machine
| Daily | Temperature | Gantry temperature control system reads 40°C after machine is turned on. | Radiation |
| QA | Warm up procedure | Beam runs at lower output for 10 min and warms up the components to stable temperature. | Therapist |
| Air Scan | With the couch out of the beam, the machine is run in the imaging mode, which corrects for the detector response. | ||
| Laser check | Green and red lasers fall on top of the marks on walls and floor created during commissioning. | ||
| Green and red lasers coincide at the virtual isocenter in the home position. | |||
| Output check | With a nine-chamber electrometer (Victoreen 7200) output is measured for a 5 × 20 cm2 open field on central axis and two off-axis points on each shoulder of the cone profile, to within ±3%. | ||
| Door Interlock | Machine cancels procedure when the entrance door is opened. | ||
| Weekly QA | Output check | With an A1SL ion chamber and electrometer the output is measured for a 5 × 20 cm2 open field at 1.5 cm depth in solid water in SAD setup (tolerance ±3%). | Physicist |
| Energy check | A 4-cm solid water slab is placed on the previous setup and the ratio of the two readings gives a measure of the beam energy at 5.5 cm depth (tolerance ±2%). | ||
| Laser check | With the cheese phantom, the transverse laser (X-Z plane) localization procedure is performed in which MVCT scans are done. During setup, the red lasers move by 2, 8 and 4 cm in the X, Y and −Z directions, respectively. From the scans and registration of images, the X, Y and Z shifts are within 0 ± 1, 0 ± 1 and 5 ± 1 mm, respectively. | ||
| Monthly | Output check | Same as in weekly QA | Physicist |
| QA | Energy check | Same as in weekly QA | |
| Laser check | Same as in weekly QA | ||
| Virtual isocenter check | With a ready pack film set up horizontally at the virtual isocenter and the green laser line marked on the film, the procedure moves the film 70 cm into the bore and exposes for an open field. The center of the exposure is within ±0.5 mm of the laser line. | ||
| Penumbra profile check | With a ready pack film set up horizontally at isocenter at 1.5 cm depth and SSD of 85 cm in solid water an exposure is made for all open leaves for each beam. The penumbra profiles are measured to within ±1 mm of FWHM at commissioning. | ||
| IMRT plan check | IMRT plans are measured for cylindrical targets in a cheese phantom for on axis and off axis locations to within ±3% for the 1, 2.5 and 5 cm beam. | ||
| Output drift check | With an ion chamber and Tomoelectrometer, an open beam at fixed gantry is sampled for every 100 ms for 10 min. The converted dose rate should be within ±2% of the average value. | ||
| Couch motion | A 40 × 1 cm2 open field is exposed on a film for the gantry at 0° and the couch moving at a constant speed for 20 cm. The optical density scan in the Y-direction should be constant within ±2% for constant speed and output. | ||
| Rotational variation | A procedure to monitor the beam output and energy is carried out by measuring the signal on the monitor chamber of the machine and the xenon detectors with the help of service engineers (tolerance ±2%). | ||
| Safety interlock | As described in the acceptance tests. | ||
| Annual QA | Alignment checks | Jaw shift (tolerance ± 0.3 mm), Y-axis misalignment (tolerance ± 0.5 mm), MLC center – Gantry isocenter alignment (tolerance ± 0.5 mm), Tongue and groove test (tolerance <2%) are checked. | Physicist |
| Beam Characteristics | Water scanning system is set up to measure (1) PDD, (2) Cone profiles and (3) Penumbra profiles at several depths for all the three beam widths and compared with commissioning data. | ||
| Displayed dose rate | Absolute dose output is measured for a set time and dose rate is calculated. This is set as the displayed dose rate at the operator station. | ||
| MVCT images | Tomoimage reconstruction is examined for coarse, normal and fine settings for no artifacts and good contrast resolution. MVCT image dose should be < 4 cGy. | ||
| Output check | With an A1SL ion chamber in water medium, the output is measured for a 5 × 40 cm2 beam at 1.5 cm depth in SAD set up (tolerance ± 2%). | ||
| Energy Check | The ion chamber is moved to a depth of 10 cm in water and the readings taken in SAD set up. The ratio of the readings in the previous step and this is a measure of the energy check (tolerance ± 2%). | ||
| Laser check | Same as in monthly QA | ||
| Virtual isocenter | Same as in monthly QA | ||
| IMRT plans | Same as in monthly QA | ||
| Output drift | Measure over 1000s (drift tolerance within 2%) | ||
| Safety interlocks | Same as described in Acceptance test | ||
| Couch motion | Same as in monthly QA |