Stereotactic radiosurgery in lung cancer
DR.DEBNARAYAN DUTTA, Consultant Radiation Oncologist, Apollo speciality hospital Chennai |
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Radiosurgery is a non-invasive option in early lung cancer. High
dose precise radiosurgery has immense potential. Early data from phase II
studies have shown excellent loco-regional control and survival function.
CyberKnife Radiosurgery in lung cancer has following advantages:
1.
Cyberknife has the unique technology of ‘see and shoot’. In
this technology before each treatment field matching of the target and
‘intra-fraction motion correction’ is done, hence minimal normal lung comes
in the radiation field.
2.
Cyberknife has sub-millimeter treatment accuracy. Margin
(planning target volume) required (where normal lung comes) is minimal around
the target. High dose region volume is minimal with Cyberknife and lung
toxicity is expected to be lower compared with conventional treatment.
3.
Cyberknife has the multiple isocentric technique with
non-coplanar field arrangement, hence have unmatched conformity index
(uniform dose is delivered). Cyberknife use ‘pencil beam’ with multiple small
beamlets delivered from various angles (maximum 1200 different position)
hence ‘penumbra’ margin is less.
4.
As dosimetry is favorable and total dose delivered with
Cyberknife is not higher compared with conventional fraction (usual dose
delivered with Cyberknife 60 Gy/3 fr/ 1 week) there is no expected increase
in lung toxicity with Cyberknife. Phase II prospective studies with
Cyberknife have not shown any increase in radiation induced pneumonitis.
5.
‘STAR trial’ is a multicentric randomized study initiated by
MD Anderson Cancer Centre may provide answer to impact of Cyberknife on lung
toxicity. There are other few ongoing clinical studies with hypofractionated
radiation therapy on lung cancer that will provide useful information in near
future
For more information of successful treatments using cyberknife you may please blog your comments or write to lakshmipriya_b@apollohospitals.com
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Showing posts with label lung cancer with no surgery option. Show all posts
Showing posts with label lung cancer with no surgery option. Show all posts
Tuesday, October 30, 2012
CyberKnife Radiosurgery in lung cancer
Monday, June 11, 2012
Lung metastases treated by CyberKnife at 41 months.
OBJECTIVES:
Based on the reported success of stereotactic body radiotherapy in treating extracranial tumors, we used CyberKnife to treat patients with metastatic lung cancer.
METHODS:
This is a retrospective report of treatment details and outcomes of 35 patients, ranging in age from 33 to 91 years, with 69 histologically proven pulmonary metastases, treated by image-guided robotic stereotactic radiosurgery Tumor volumes ranged from 0.7 mL to 152 mL. Total doses ranged from 5 to 60 Gy delivered in one to four fractions with an equivalent dose range from 6 to 110 Gy NTD delivered in 2-Gy fractions assuming an alpha/beta of 20 Gy.
RESULTS:
All patients tolerated radiosurgery well with fatigue as the main side effect. Grade 3 and grade 4 pulmonary toxic reactions were observed in one patient who had undergone a repeat treatment. Of the 35 treated patients, 27 (77%) were still alive at a median 18-month (range 2-41 mo) follow-up. Local control was 71% with 25 tumors showing a complete response, 16 a partial response, and 7 stable with disease. Eight had progressive disease.
CONCLUSIONS:
The delivery of precisely targeted radiation doses to lung tumors in a hypofractionated fashion is feasible and safe. Image-guided robotic stereotactic radiosurgery of pulmonary metastases with the CyberKnife achieves good rates of local disease control with limited toxicity to surrounding tissues and in many cases may be beneficial for patients for whom surgery is not an option.
Based on the reported success of stereotactic body radiotherapy in treating extracranial tumors, we used CyberKnife to treat patients with metastatic lung cancer.
METHODS:
This is a retrospective report of treatment details and outcomes of 35 patients, ranging in age from 33 to 91 years, with 69 histologically proven pulmonary metastases, treated by image-guided robotic stereotactic radiosurgery Tumor volumes ranged from 0.7 mL to 152 mL. Total doses ranged from 5 to 60 Gy delivered in one to four fractions with an equivalent dose range from 6 to 110 Gy NTD delivered in 2-Gy fractions assuming an alpha/beta of 20 Gy.
RESULTS:
All patients tolerated radiosurgery well with fatigue as the main side effect. Grade 3 and grade 4 pulmonary toxic reactions were observed in one patient who had undergone a repeat treatment. Of the 35 treated patients, 27 (77%) were still alive at a median 18-month (range 2-41 mo) follow-up. Local control was 71% with 25 tumors showing a complete response, 16 a partial response, and 7 stable with disease. Eight had progressive disease.
CONCLUSIONS:
The delivery of precisely targeted radiation doses to lung tumors in a hypofractionated fashion is feasible and safe. Image-guided robotic stereotactic radiosurgery of pulmonary metastases with the CyberKnife achieves good rates of local disease control with limited toxicity to surrounding tissues and in many cases may be beneficial for patients for whom surgery is not an option.
For more information you may blog your comments or write to lakshmipriya_b@apollohospitals.com
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