Simultaneous pattern-scan placement during sample processing
A laser ablation system, and method, facilitates the execution of user-defined scans (i.e., in which a laser beam is scanned across a sample along a beam trajectory to ablate or dissociate a portion of the sample) and enables the user define additional scans while a scan is being executed.
1. A laser ablation system, comprising:
a sample chamber having an interior within which a sample can be accommodated;
a laser configured to generate a laser beam, wherein the laser beam has parameters suitable for ablating or otherwise dissociating a portion of the sample accommodated within the interior of the sample chamber;
at least one scanning component configured to impart relative movement between the sample and the laser beam;
a user interface configured to display imagery of the sample and enable a user to indicate, based on the displayed imagery, a first region-of-interest of the sample where the sample is to be ablated or otherwise dissociated by the laser beam;
a processor configured to execute instructions to control an operation of at least one of the laser and the at least one scanning component to execute a first scan in the first region-of-interest of the sample and, while executing the first scan, enable a user to indicate, based on the displayed imagery, a second region-of-interest of the sample where the sample is to be ablated or otherwise dissociated by the laser beam to establish a second scan, queue the second scan, and execute the second scan following completion of execution of the first scan; and
memory communicatively coupled to the processor and configured to store the instructions.
2. The system of claim 1 , further comprising an optical microscope system having a field-of-view within a region of the interior of the sample chamber where the sample can be accommodated.
3. The system of claim 2 , wherein the field-of-view encompasses the region of the interior of the sample chamber where the sample can be accommodated.
4. The system of claim 1 , wherein the at least one scanning component includes a motion stage configured to move the sample.
5. The system of claim 1 , wherein the at least one scanning component includes a beam steering optical component configured to move a beam path along which the laser beam can propagate.
6. The system of claim 5 , wherein the beam steering optical component includes at least one mirror galvanometer deflector.