A compact pulsed-laser diode-based photoacoustic tomography (PLD-PAT) system for high-speed in vivo brain imaging in small animals is demonstrated.
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Method Article
A compact pulsed-laser diode-based photoacoustic tomography (PLD-PAT) system for high-speed in vivo brain imaging in small animals is demonstrated.
In vivo small-animal imaging has an important role to play in preclinical studies. Photoacoustic tomography (PAT) is an emerging hybrid imaging modality that shows great potential for both preclinical and clinical applications. Conventional optical parametric oscillator-based PAT (OPO-PAT) systems are bulky and expensive and cannot provide high-speed imaging. Recently, pulsed-laser diodes (PLDs) have been successfully demonstrated as an alternative excitation source for PAT. Pulsed-laser diode PAT (PLD-PAT) has been successfully demonstrated for high-speed imaging on photoacoustic phantoms and biological tissues. This work provides a visualized experimental protocol for in vivo brain imaging using PLD-PAT. The protocol includes the compact PLD-PAT system configuration and its description, animal preparation for brain imaging, and a typical experimental procedure for 2D cross-sectional rat brain imaging. The PLD-PAT system is compact and cost-effective and can provide high-speed, high-quality imaging. Brain images collected in vivo at various scan speeds are presented.
Photoacoustic tomography (PAT) is a hybrid imaging modality that has many applications in both clinical and preclinical studies1,2,3,4,5. In PAT, nanosecond laser pulses irradiate biological tissue. The absorption of incident light by the tissue chromophores leads to a local temperature rise, which then yields pressure waves emitted in the form of sound waves. An ultrasound detector collects the photoacoustic signals at various positions around the sample. The photoacoustic (PA) signals are reconstructed us....
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All animal experiments were performed according to the guidelines and regulations approved by the Institutional Animal Care and Use Committee of Nanyang Technological University, Singapore (Animal Protocol Number ARF-SBS/NIE-A0263).
1. System Description
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The in vivo brain imaging results that demonstrate the capabilities of the described PLD-PAT system are showcased in this section. To demonstrate the high-speed imaging capabilities of the PLD-PAT system, the in vivo brain imaging of two different healthy rats was performed. Figure 2 shows the brain images of a female rat (93 g) at various scan speeds. Figure 2a and b show the photographs of the rat brain before.......
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This work presents a protocol for performing in vivo brain imaging on rats using a PLD-PAT system. The protocol includes a detailed description of the imaging system and its alignment, as well as an illustration of brain imaging on rats. The existing OPO-based PAT systems are expensive and bulky and can provide one cross-sectional image in 5-10 min. The PLD-PAT system is compact, portable, and low-cost and can provide good-quality images in 3 s. The performance of the system was previously studied in phantoms an.......
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The authors have no relevant financial interests in the manuscript and no other potential conflicts of interest to disclose.
The research is supported by the Tier 2 grant funded by the Ministry of Education in Singapore (ARC2/15: M4020238) and the Singapore Ministry of Health's National Medical Research Council (NMRC/OFIRG/0005/2016: M4062012). The authors would like to thank Mr. Chow Wai Hoong Bobby for the machine shop help.
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| Pulsed laser diode | Quantel, France | QD-Q1910-SA-TEC | It is the excitation laser source with specifications 803 nm, 1.4 mJ per pulse, 136 ns pulse, 7 kHz maximum, dimentions : 11.0 x 6.0 x 3.6 cm, weight: ~150 gm |
| Stepper motor with gearbox | LIN Engineering (Servo Dynamics) | Motor: CO-5718-01P, Gearbox: DPL64/1, I = 10 for NEMA 23; power supply PW100-48 | To move the detector holder in a circular geometry. Torque: 2.08 N-m, Rotor inertia: 2.6 kg-cm2 |
| Ultrasonic pulser/receiver | Olympus | 5072PR | To receive, filter and ampligy the PA signal from UST. Its bandwidth is 35 MHz, and gain is ±59 dB. |
| Ultrasound Transducer | Olympus | V306-SU-NK-CF1.9IN/Q4200069 | Ultrasonic sensors used for photoacoustic detection. Central freqency 2.25 MHz, 0.5 in, Cylindrical focus 1.9 inch |
| PCIe DAQ (Data acquisition) Card | GaGe | CSE4227/ A6000610/B0E00610 | 12 bit, 100 Ms/s, 2 channels, 1 Gs on board memory, PCIe x16 interface |
| Rats | In Vivos Pte Ltd, Singapore | NTac:SD, Sprague Dawley / SD | Female, weight 100 ±10g |
| Acrylic water tank | NTU workshop | Custom-made | It contains the water that acts as an acoustic coupling medium between brain and detector |
| Circular Scanner | NTU workshop | Custom-made | Scanner is made out of Alluminum |
| Anesthetic Machine | medical plus pte ltd | Non-Rebreathing Anaesthesia machine with oxygen concentrator. | Supplies oxygen and isoflurane to animal |
| Pulse Oxymeter portable | Medtronic | PM10N with veterinary sensor | Monitors the pulse oxymetry of the animal |
| Ultrasound gel | Progress/parker acquasonic gel | PA-GEL-CLEA-5000 | Clear ultrasound gel |
| Data acqusison software | National Instruments Corporation,Austin,TX,USA) | NI LabVIEW 2015 SP1 | LabVIEW based program was developed in our laboratory for controlling the stepper motor and acquring the PA singnals from the detector |
| Data processing software | Matlab (Mathworks, Natick, MA, USA) | Matlab R2012b | Matlab code for reconstruction of PA images was developed in our lab |
| Temperature controller | LaridTech, MO,USA | MTTC1410 | It will constantly control temperature of the PLD |
| 12 V power supply | Voltcraft | PPS-11810 | To supply operating voltage for PLD |
| Variable power supply | BASETech | BT-153 | To change the laser output power |
| Funtion generator | Funktionsgenerator | FG250D | To change the repetetion rate of the PLD. It will provide TTL signal to synchronize the DAQ with the laser excitation. |
| Animal distributor | In Vivos Pte Ltd, Singapore | Animal distributor that supplies small animals for research purpose. | |
| Animal holder | NTU workshop | Custom-made | Used for holding the animal on its abdomen |
| Breathing mask | NTU workshop | Custom-made | Used along with animal holder to supply anesthesia mixture to the animal |
| Pentobarbital sodium | Valabarb | Used for euthanizing the animal after the expeirment. | |
| Optical diffuser | Thorlabs | DG10-1500 | Used to to make the laser beam homogeneous |
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